US20050145716A1 - Irrigation device and system - Google Patents
Irrigation device and system Download PDFInfo
- Publication number
- US20050145716A1 US20050145716A1 US11/057,202 US5720205A US2005145716A1 US 20050145716 A1 US20050145716 A1 US 20050145716A1 US 5720205 A US5720205 A US 5720205A US 2005145716 A1 US2005145716 A1 US 2005145716A1
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- United States
- Prior art keywords
- hose
- soaker
- canceled
- soaker hose
- support
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Abandoned
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- 0 CC1C=*CC1 Chemical compound CC1C=*CC1 0.000 description 1
- QYCGHFOTMYKMIY-UHFFFAOYSA-N CC1CC(C2)C2CC1 Chemical compound CC1CC(C2)C2CC1 QYCGHFOTMYKMIY-UHFFFAOYSA-N 0.000 description 1
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Classifications
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G25/00—Watering gardens, fields, sports grounds or the like
- A01G25/02—Watering arrangements located above the soil which make use of perforated pipe-lines or pipe-lines with dispensing fittings, e.g. for drip irrigation
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10S—TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10S138/00—Pipes and tubular conduits
- Y10S138/08—Bent shaped retained
Definitions
- the present invention is directed to an irrigation device and irrigation system. More specifically, the present invention is directed to a weep or tear type irrigation device and irrigation system.
- hoses made of a flexible plastic or rubber hose material having a male connector on one end and a female connector at an opposite end.
- This hose material is made to be water impenetrable so that water does not leak from the hose as it passes from one end to the other, and serves as a conduit for conveying water from point A to point B.
- Another conventional hose available is a soaker type hose having a male connector at one end and female connector at an opposite end.
- the hose material of the soaker type hose is purposely configured, constructed, designed or otherwise selected so that water passes through the wall of the hose when water is fed into one end of the hose and the opposite end of the hose is plugged or blocked.
- the conventional soaker hose is a flexible hose that can be bent into various shapes, and is typically utilized above ground. For example, the soaker hose can be threaded around plants and bushes of a planting bed.
- the conventional hoses and sprinkling devices do not conserve valuable or precious water with a large percentage being lost to runoff, drainage and/or evaporation into the air.
- the present invention provides a significant improvement over the conventional hoses and sprinklers to provide irrigation water from a remote water source directly to the roots of the plants while preventing runoff, drainage and/or evaporation waste of the water.
- the present invention is directed to an improved irrigation device.
- a second object of the present invention is to provide an improved irrigation device including a flexible soaker hose in combination with a support for holding the flexible soaker hose in a substantially fixed configuration.
- a third object of the present invention is to provide an irrigation device including a flexible soaker hose in combination with a support connected to the flexible soaker hose to allow the configuration of the flexible soaker hose to be changed from one substantially fixed configuration to another substantially fixed configuration.
- a fourth object of the present invention is to provide an irrigation device including a flexible soaker hose connected to a bendable support configured to allow the flexible soaker hose to be changed from one substantially fixed configuration to another substantially fixed configuration.
- a fifth object of the present invention is to provide an irrigation device including a flexible soaker hose provided with a bendable support disposed therein.
- a sixth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal conduit disposed therein.
- a seventh object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal conduit or wire therein.
- An eighth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable support disposed within the wall of tile soaker hose.
- a ninth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal support incorporated within the wall of the soaker hose.
- a tenth object of the present invention is to provide an irrigation system including a water source and a soaker hose connected to the water source and a support connected to the soaker hose to hold the flexible soaker hose in a substantially fixed configuration.
- An eleventh object of the present invention is to provide an irrigation system including a water source, a soaker hose connected to the water source, and a bendable support connected to the soaker hose to allow the flexible soaker hose to be changed from a substantially fixed configuration to another substantially fixed configuration.
- a twelfth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a support configured for holding the flexible soaker hose in a substantially fixed configuration.
- a thirteenth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a bendable support configured for holding the flexible soaker hose in a substantially fixed configuration.
- a fourteenth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a bendable metal support configured for holding the flexible soaker hose in a substantially fixed configuration.
- the present invention is directed to an irrigation device. More specifically, tile present invention is directed to an irrigation device configured to direct water to the roots of plants and minimize the loss of water to runoff, drainage and/or evaporation.
- the irrigation device according to the present invention can be utilized to irrigate plants, bushes, shrubs, trees, crops and any other type of plant in need of irrigation.
- the irrigation device according to the present invention is utilized above ground to minimize the installation time, and in some applications the removal time necessary for unassembly (i.e. for example when used with annual crops).
- the irrigation device according to the present invention can also be utilized below ground, and for example can be buried under the soil or placed within a shallow narrow trench and then buried.
- the irrigation device according to the present invention is configured to be situated or located near the roots or root bulbs of the plants.
- a preferred embodiment utilizes a ring, hoop, or hook type configuration to at least partially or preferably totally encompass the roots or root bulbs of the plants to be irrigated.
- the hook type configuration is particularly preferred, since the irrigation device can be installed even around tall plants such as tall shrubs or trees, and is especially easy to install and uninstall.
- the irrigation device can be straight, snake-shaped, curved to fit around and/or between a row of plants.
- the irrigation device utilizes a soaker hose in combination with a support.
- the support is configured to hold the flexible soaker hose in a substantially fixed configuration.
- the support is configured to support the flexible soaker hose in various or different substantially fixed configurations to allow flexibility in the application thereof.
- the irrigation device includes a flexible soaker hose in combination with a support configured to allow the flexible soaker hose to be configured in almost an infinite substantially fixed and different configurations to allow for various types of installations or applications thereof.
- the support is a separate piece or component added, inserted, incorporated or otherwise affiliated with the flexible soaker hose in some manner.
- a bendable support in particular a bendable metal support disposed within the flexible soaker hose or connected external to the flexible soaker hose are particularly desirable embodiments.
- the bendable support is partially or fully incorporated into the wall of the flexible soaker hose to make a substantially integrated construction.
- the bendable support is embedded fully within the wall of the flexible soaker hose so that it is not exposed on the inner surface or outer surface wall of the soaker hose. In this manner, the bendable support would be protected from the environment and/or water contained within the soaker hose during use and/or storage.
- one or more separate bendable metal wires and/or a metal mesh can be incorporated within tile wall of the soaker hose to provide the bendable nature to the soaker hose.
- the bendable metal wire and/or metal mesh is inserted between one or more layers during the construction of the soaker hose, which is then later cut to length.
- the present invention is directed to an irrigation system for watering plants.
- the irrigation system according to the present invention incorporates at least one irrigation device according to the present invention.
- a plurality of irrigation devices according to the present invention are incorporated into the irrigation system according to the present invention.
- the irrigation system according to the present invention includes a water source and at least one irrigation device according to the present invention connected to the water source.
- the water source for example, can be a faucet (internal or external) of a residence or building, a connection with a water well, a connection to a water pump fluidly connected to a water supply such as a lake, stream, river, a water tank or any other suitable or convenient water source.
- the irrigation system according to the present invention includes a supply hose connecting to the water source to at least one irrigation device according to the present invention.
- the supply hose is not a soaker or weep type hose, but instead is made of a hose material substantially impermeable to water. In this manner, water is substantially conveyed from the water source to at least one irrigation device according to the present invention without any water loss therebetween.
- the supply hose is provided with one or more connectors to allow for quick and/or releasably connection with at least one irrigation device according to the present invention.
- the supply hose can be provided with one or more male and/or female hose connectors to couple with a male or female hose connector of the irrigation device according to the present invention.
- the supply hose is provided with a plurality of separate hose connections spaced apart along the length of the supply hose.
- the hose connections can be equally spaced, randomly spaced or spaced in some preferred pattern for various installations and/or applications.
- the hose connectors can be moved along the length of the supply hose and/or plugged off again to provide a wide variety of installations and/or applications thereof.
- the irrigation system according to the present invention can be provided with an in line plant food feeder at the water source and/or along the length of the supply hose to allow plant feeding to occur at the irrigation devices according to the present invention.
- the irrigation system according to the present invention can be also provided with a timer at the water source and/or along the length of the supply hose that can automatically turn on or turn off the irrigation system based on a preselected time sequence and/or activated due to daylight according to a preprogrammed routine.
- FIG. 1 is a perspective view of an embodiment of the irrigation device according to the present invention.
- FIG. 2 is a top planar view of the irrigation device shown in FIG. 1 .
- FIG. 3A is a cross-sectional view of the irrigation device as indicated in FIG. 1 .
- FIG. 3B is across-sectional view of another embodiment of the irrigation device according to the present invention.
- FIG. 4 is a top planar of a bendable support configured to be disposed within the irrigation device shown in FIGS. 1-3 .
- FIG. 5 is a top planar of a further embodiment of the irrigation device according to the present invention.
- FIG. 6 is a cross-sectional view of a further embodiment of an irrigation device according to the present invention.
- FIG. 7 is a cross-sectional view of an even further embodiment of the irrigation device according to the present invention.
- FIG. 8 is a cross-sectional view of another further embodiment of the irrigation device according to the present invention.
- FIG. 9 is a top planar diagrammatic view of an irrigation system according to the present invention.
- FIG. 10 is a perspective view of an irrigation device in combination with a water reservoir according to the present invention.
- FIG. 11 is a top planar view of a sheet containing three (3) supports which can be separate therefrom for making different size supports for the irrigation device according to the present invention.
- FIG. 1 An irrigation device 10 according to the present invention is shown in FIG. 1 .
- the irrigation device 10 is configured to have a hook-type configuration as shown to allow the irrigation device 10 to be slipped around a plant P.
- the irrigation device 10 can be a hoop, ring, or spiral irrigation device in configuration.
- the irrigation device 10 includes a flexible soaker hose 12 having a hose connection 14 (e.g. male type or female type) at one end, and a plug 16 at an opposite end.
- the plug 16 can be replaced by crimping the end of the flexible soaker hose 12 , for example, with a metal fastener and/or by heat welding.
- a supply hose 18 is releasably connected to the irrigation device 10 via the hose connection 14 .
- the hose 18 can be provided, for example, with a male type or female type hose connector to cooperate with the hose connection 14 of the irrigation device 110 .
- the irrigation device 10 is placed around the plant P so as to direct water directly to the root or root bulb of the Plant.
- the supply hose 18 is preferably a non-water permeable hose connected to a source of water (e.g. a faucet, water tank, water reservoir, water pump) so that no water is lost between the water source and the connection with the irrigation device 10 .
- a source of water e.g. a faucet, water tank, water reservoir, water pump
- Water enters the irrigation device 10 through the hose connection 14 and reaches the plug 16 , at which point water pressure builds up within the irrigation device 10 , and the flexible soaker hose 12 begins to release water in a gradual controlled manner along the entire length of the flexible soaker hose 12 .
- the water will permeate through the wall portion of the flexible soaker hose 12 , and weep mainly down into the soil with very little loss due to runoff, drainage and/or evaporation.
- the irrigation device 10 is shown above ground, however, the irrigation device 10 can be located partially or fully below ground.
- the flexible soaker hose is sufficiently flexible so that a support is needed or required to maintain the flexible soaker hose in a particular substantially fixed configuration.
- the support can be located inside the soaker hose 12 , outside tile soaker hose 12 and/or in the wall portion of the soaker hose 12 .
- a bendable metal support 20 preferably made of copper, aluminum, bronze, galvanized steel or other suitable metal being sufficiently malleable and resistant to corrosion can be positioned within the flexible soaker hose 12 , and the combination is bent into a specific configuration such as the hook-type configuration shown in FIGS. 1 and 2 . In this configuration, the bendable metal support 20 will have the configuration as shown in FIG. 4 when located within the flexible soaker hose 12 .
- the bendable metal support can be conduit, as shown, or can have any other suitable configuration (e.g. bar, plate, wire, mesh, bar, stranded, spring or combination of different types of bendable metal sections connected together).
- a bendable metal support 20 ′ can be applied external to the flexible soaker hose 12 , for example, by use of adhesive and/or heat bonding.
- a water impermeable coating or layer 21 is provided on an upper portion of the flexible soaker hose 12 to only allow water to weep or soak out of a lower portion of the flexible soaker hose 12 to direct water only in the direction of the roots or root bulb of the plant being watered.
- the layer 21 may be applied before or after the flexible soaker hose 12 is bent into a particular substantially fixed configuration.
- the layer 21 can be substantially rigid or flexible depending on applications.
- a substantially rigid layer applied after bending the flexible soaker hose 12 can be partially or fully responsible for holding the substantially fixed configuration of the irrigation device 10 .
- the bendable support 20 is configured to hold the flexible soaker hose 12 in a substantially fixed configuration as shown in FIGS. 1 and 2 (i.e. hook-type configuration). Further, the support 20 is preferably a bendable support to allow the irrigation device 10 to be bendable from one substantially fixed configuration to another substantially fixed configuration (i.e. from hook-type configuration to a spiral-type configuration), as shown in FIG. 2 . Further, the shape of the irrigation device 10 call be changed from a substantially circular shape to an oblong, rectangular, triangular or other suitable shape.
- the irrigation device 10 ′ utilizes an external support 22 having a plurality of separate lug or anchors 24 for securing the flexible soaker hose 12 to the external support 22 .
- the external support 22 can be configured to be substantially rigid or substantially flexible.
- the external support 22 can be a plastic injection molded article having integrally molded lugs 24 or separate metal fasteners for securing the flexible soaker hose 12 thereto.
- the irrigation device 10 ′ can be installed above ground, partially in the ground or below ground.
- one or more supports are provided within the wall of the flexible hose 22 .
- the supports can be substantially rigid to hold the flexible soaker hose in one substantially fixed configuration, or bendable to allow the flexible soaker hose to be bent from one configuration to another configuration.
- the supports 20 ′′ are disposed within the wall portion of the soaker hose 12 ′′.
- the supports 20 ′′ are shown as having circular-cross sections, however, other cross-sectional shapes and/or sizes call be utilized.
- the supports 20 ′′ can be substantially rigid (e.g. made of tempered metal, rigid plastic, fiberglass, kevlar, carbon fiber, or other suitable composites), or can be configured to be bendable (e.g. made of malleable metal such as copper, aluminum, bronze, galvanized steel).
- the supports 20 ′′ can be tailored to be somewhat rigid and somewhat bendable by making them from composite materials (e.g. malleable metal strands in combination with kevlar or fiberglass fibers).
- the supports 20 ′′′ are more slender but wider so that they can be further embedded within the wall of the flexible soaker hose 12 ′′′, to prevent corrosion thereof.
- the cross-sectional configuration including the cross-sectional shape and/or size, will dictate various characteristics regarding tile bendable nature of the soaker hose 12 ′′′, and can be varied for different applications.
- a support 20 ′′′ is shown as a wire or fiber mesh integrated as a unit or layer within the wall thickness of the soaker hose 12 ′′′.
- FIG. 9 An irrigation system 30 according to the present invention is shown in FIG. 9 .
- the irrigation system 30 utilizes one or more irrigation devices 10 according to the present invention.
- a water impermeable supply hose 32 is provided with a plurality of separate hose connectors 34 coupled with variable flow valves 36 (e.g. shut off valves) along the length of the supply hose 32 .
- variable flow valves 36 e.g. shut off valves
- a pair of hose connectors 34 are located along the length of the supply hose 32 , however, individual hose connectors 34 can be located along tie supply hose 32 .
- the irrigation device 10 on the right-hand side of FIG. 9 car be replaced with another supply hose 32 having one or more irrigation devices, for example, to double, triple, etc. the size of the system.
- one or more of the installed irrigation devices 10 can be disconnected from the supply hose 32 with the particular hose connector 34 in the shut off position to prevent water leakage therefrom.
- various configurations can be arranged with regards to the irrigation devices 10 being positioned along the length and/or on either side of the supply hose 32 depending on the desired location of the plants to be planted, or the location of existing plants.
- Tile location of the irrigation devices 10 along the length of the supply hose can be equal distance (i.e. three sets on the right-hand side of supply hose 32 ) or variably spaced (i.e. three sets of irritations devices 10 along the left-hand side of supply hose 32 ).
- the supply hose 32 is provided with a hose connector 38 .
- the supply hose 32 can be provided with an in-line nutrient feeder 40 (e.g. plant food) and/or all in-line timer 42 capable of turning on and turning off the water to the supply hose 32 on a preset interval or preprogrammed intervals.
- in-line nutrient feeder 40 e.g. plant food
- all in-line timer 42 capable of turning on and turning off the water to the supply hose 32 on a preset interval or preprogrammed intervals.
- the hose connectors 34 are configured to be movable to additional various points along the supply hose 32 , or can be configured to even be slidable to any position along the supply hose 32 to allow exact positioning of the irrigation devices 10 relative to the plants to be watered.
- an in-line water reservoir 44 is connected to the irrigation device 10 .
- the water reservoir 44 is provided with an air vent 46 to allow air to escape as water is added to the water reservoir 44 , and to allow air to enter the water reservoir 44 when the water level is dropping therein.
- the air vent can be deleted or a valve (e.g. a one way valve) can be provided to create air pressure above the water level.
- water is supplied to the water reservoir 44 via the supply hose 18 . As the height of the water within tie water reservoir 44 continues to rise, a sufficient pressure head is created to force water into the irrigation device 10 .
- the water reservoir 44 When the water reservoir 44 is filled, the water supply to the supply hose 18 is turned off, and water is allowed to drain from the water reservoir 44 continuously into tile irrigation device 10 over a period of time (e.g. from hours to days depending on the configuration of the water reservoir 44 and irrigation device 10 ).
- the water reservoir 44 is provided with a gauge for detecting tile level of water within the water reservoir 44 which can automatically signal an electrically operated controlled valve cutting off the supply of water from the supply hose 18 into the water reservoir 44 .
- This type of system would allow for intermittent water supply, for example, from a pump supplied by a pond or lake and run only on an intermittent basis.
- water is both stored at or near the plant while irrigation is slowly occurring.
- the water reservoir can be provided with a closure, for example, a fill 48 and cap 50 to allow water to be added from another hose, bucket, funnel (e.g. rain collector) alternatively or in addition to the hose 18 .
- hose 18 may be removed and plugged off.
- a hand operated air pump 52 can be provided to the water reservoir to allow air pressure to be applied within the water reservoir when the air vent 46 and hose 18 are plugged off to assist flow through the irrigation device 10 .
- a variable or multiple size support 100 for use with the embodiment shown in FIG. 5 , is shown in FIG. 11 .
- the support 10 for example, is a sheet (e.g. metal and/or plastic and/or ceramic) having three (3) different size hoop shaped supports 102 , 104 and 106 disposed therein.
- the support 100 is configured so that the supports 102 , 104 and 106 break away from the support 100 and themselves so that a particular size support for a particular application can be selected.
- the supports 102 , 104 and 106 are provided with pairs of through holes 108 to allow attachment of a flexible soaker hose 12 , the same or similar to that shown in FIG. 5 .
- a plurality of separate lugs or anchors 110 are supplied for securely connecting the flexible soaker hose 12 to the supports 102 , 104 and 106 .
- the anchors 110 are provided with protrusions 112 (e.g. hooks or barbs) provided on legs 114 to cooperate with the lower edges of the through holes 108 during assembly.
- the supply hose 18 is coupled to the faucet (as shown) and the irrigation device 10 .
- the faucet is opened and water flows along the water impermeable supply hose 18 to the irrigation device 10 until it reaches the plug 16 .
- the water will continue to flow to the plug 16 until more or less the pressure within the water supply hose 18 is reached.
- the flexible soaker hose 12 will begin to weep allowing for a very slight controlled flow therefrom into the ground.
- the upper surface of the flexible soaker hose 12 can potentially be sealed or covered with a water impermeable layer so that only water drains from a lower portion of the flexible soaker hose.
- this particular irrigation device and irrigation system is highly efficient with regards to preventing the loss of water to the environment minimizing the amount of water consumption to effectively irrigate plants.
Abstract
The present invention is directed to an irrigation device and irrigation system. More specifically, the present invention is directed to a weep or tear type irrigation device and irrigation system.
Description
- The present invention is directed to an irrigation device and irrigation system. More specifically, the present invention is directed to a weep or tear type irrigation device and irrigation system.
- Currently, there exists a wide variety of different devices and systems for irrigating lawns, flower beds, bushes, trees, crops and various other types of plants.
- There exists conventional garden hoses made of a flexible plastic or rubber hose material having a male connector on one end and a female connector at an opposite end. This hose material is made to be water impenetrable so that water does not leak from the hose as it passes from one end to the other, and serves as a conduit for conveying water from point A to point B. Another conventional hose available is a soaker type hose having a male connector at one end and female connector at an opposite end. The hose material of the soaker type hose is purposely configured, constructed, designed or otherwise selected so that water passes through the wall of the hose when water is fed into one end of the hose and the opposite end of the hose is plugged or blocked. The conventional soaker hose is a flexible hose that can be bent into various shapes, and is typically utilized above ground. For example, the soaker hose can be threaded around plants and bushes of a planting bed.
- There exists many versions of water sprinklers for directing water into the air to then fall upon the ground and irrigate same. However, most above ground and below ground sprinkler systems waste a large percent of the water supplied that never reaches the roots of plants requiring watering.
- Specifically, the conventional hoses and sprinkling devices do not conserve valuable or precious water with a large percentage being lost to runoff, drainage and/or evaporation into the air.
- The present invention provides a significant improvement over the conventional hoses and sprinklers to provide irrigation water from a remote water source directly to the roots of the plants while preventing runoff, drainage and/or evaporation waste of the water.
- The present invention is directed to an improved irrigation device.
- A second object of the present invention is to provide an improved irrigation device including a flexible soaker hose in combination with a support for holding the flexible soaker hose in a substantially fixed configuration.
- A third object of the present invention is to provide an irrigation device including a flexible soaker hose in combination with a support connected to the flexible soaker hose to allow the configuration of the flexible soaker hose to be changed from one substantially fixed configuration to another substantially fixed configuration.
- A fourth object of the present invention is to provide an irrigation device including a flexible soaker hose connected to a bendable support configured to allow the flexible soaker hose to be changed from one substantially fixed configuration to another substantially fixed configuration.
- A fifth object of the present invention is to provide an irrigation device including a flexible soaker hose provided with a bendable support disposed therein.
- A sixth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal conduit disposed therein.
- A seventh object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal conduit or wire therein.
- An eighth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable support disposed within the wall of tile soaker hose.
- A ninth object of the present invention is to provide an irrigation device including a soaker hose provided with a bendable metal support incorporated within the wall of the soaker hose.
- A tenth object of the present invention is to provide an irrigation system including a water source and a soaker hose connected to the water source and a support connected to the soaker hose to hold the flexible soaker hose in a substantially fixed configuration.
- An eleventh object of the present invention is to provide an irrigation system including a water source, a soaker hose connected to the water source, and a bendable support connected to the soaker hose to allow the flexible soaker hose to be changed from a substantially fixed configuration to another substantially fixed configuration.
- A twelfth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a support configured for holding the flexible soaker hose in a substantially fixed configuration.
- A thirteenth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a bendable support configured for holding the flexible soaker hose in a substantially fixed configuration.
- A fourteenth object of the present invention is to provide an irrigation system including a water source, a supply hose connected to the water source, and at least one irrigation device connected to the supply hose, the irrigation device including the combination of a soaker hose and a bendable metal support configured for holding the flexible soaker hose in a substantially fixed configuration.
- The present invention is directed to an irrigation device. More specifically, tile present invention is directed to an irrigation device configured to direct water to the roots of plants and minimize the loss of water to runoff, drainage and/or evaporation.
- The irrigation device according to the present invention can be utilized to irrigate plants, bushes, shrubs, trees, crops and any other type of plant in need of irrigation. Preferably, the irrigation device according to the present invention is utilized above ground to minimize the installation time, and in some applications the removal time necessary for unassembly (i.e. for example when used with annual crops). However, the irrigation device according to the present invention can also be utilized below ground, and for example can be buried under the soil or placed within a shallow narrow trench and then buried.
- The irrigation device according to the present invention is configured to be situated or located near the roots or root bulbs of the plants. A preferred embodiment utilizes a ring, hoop, or hook type configuration to at least partially or preferably totally encompass the roots or root bulbs of the plants to be irrigated. The hook type configuration is particularly preferred, since the irrigation device can be installed even around tall plants such as tall shrubs or trees, and is especially easy to install and uninstall. In another preferred embodiment, the irrigation device can be straight, snake-shaped, curved to fit around and/or between a row of plants.
- The irrigation device according to the present invention utilizes a soaker hose in combination with a support. Specifically, the support is configured to hold the flexible soaker hose in a substantially fixed configuration. In a more preferred embodiment, the support is configured to support the flexible soaker hose in various or different substantially fixed configurations to allow flexibility in the application thereof. In a most preferred embodiment, the irrigation device includes a flexible soaker hose in combination with a support configured to allow the flexible soaker hose to be configured in almost an infinite substantially fixed and different configurations to allow for various types of installations or applications thereof.
- In a preferred embodiment, the support is a separate piece or component added, inserted, incorporated or otherwise affiliated with the flexible soaker hose in some manner. For example, a bendable support, in particular a bendable metal support disposed within the flexible soaker hose or connected external to the flexible soaker hose are particularly desirable embodiments.
- In other embodiments, the bendable support is partially or fully incorporated into the wall of the flexible soaker hose to make a substantially integrated construction. Preferably, the bendable support is embedded fully within the wall of the flexible soaker hose so that it is not exposed on the inner surface or outer surface wall of the soaker hose. In this manner, the bendable support would be protected from the environment and/or water contained within the soaker hose during use and/or storage. For example, one or more separate bendable metal wires and/or a metal mesh can be incorporated within tile wall of the soaker hose to provide the bendable nature to the soaker hose. In a preferred embodiment, the bendable metal wire and/or metal mesh is inserted between one or more layers during the construction of the soaker hose, which is then later cut to length.
- The present invention is directed to an irrigation system for watering plants. Preferably, the irrigation system according to the present invention incorporates at least one irrigation device according to the present invention. Preferably, a plurality of irrigation devices according to the present invention are incorporated into the irrigation system according to the present invention.
- The irrigation system according to the present invention includes a water source and at least one irrigation device according to the present invention connected to the water source. The water source, for example, can be a faucet (internal or external) of a residence or building, a connection with a water well, a connection to a water pump fluidly connected to a water supply such as a lake, stream, river, a water tank or any other suitable or convenient water source.
- In a preferred embodiment, the irrigation system according to the present invention includes a supply hose connecting to the water source to at least one irrigation device according to the present invention. Preferably, the supply hose is not a soaker or weep type hose, but instead is made of a hose material substantially impermeable to water. In this manner, water is substantially conveyed from the water source to at least one irrigation device according to the present invention without any water loss therebetween.
- In a more preferred embodiment, the supply hose is provided with one or more connectors to allow for quick and/or releasably connection with at least one irrigation device according to the present invention. For example, the supply hose can be provided with one or more male and/or female hose connectors to couple with a male or female hose connector of the irrigation device according to the present invention. In a most preferred embodiment, the supply hose is provided with a plurality of separate hose connections spaced apart along the length of the supply hose. For example, the hose connections can be equally spaced, randomly spaced or spaced in some preferred pattern for various installations and/or applications. In some embodiments, the hose connectors can be moved along the length of the supply hose and/or plugged off again to provide a wide variety of installations and/or applications thereof.
- The irrigation system according to the present invention can be provided with an in line plant food feeder at the water source and/or along the length of the supply hose to allow plant feeding to occur at the irrigation devices according to the present invention. In addition, the irrigation system according to the present invention can be also provided with a timer at the water source and/or along the length of the supply hose that can automatically turn on or turn off the irrigation system based on a preselected time sequence and/or activated due to daylight according to a preprogrammed routine.
-
FIG. 1 is a perspective view of an embodiment of the irrigation device according to the present invention. -
FIG. 2 is a top planar view of the irrigation device shown inFIG. 1 . -
FIG. 3A is a cross-sectional view of the irrigation device as indicated inFIG. 1 . -
FIG. 3B is across-sectional view of another embodiment of the irrigation device according to the present invention. -
FIG. 4 is a top planar of a bendable support configured to be disposed within the irrigation device shown inFIGS. 1-3 . -
FIG. 5 is a top planar of a further embodiment of the irrigation device according to the present invention. -
FIG. 6 is a cross-sectional view of a further embodiment of an irrigation device according to the present invention. -
FIG. 7 is a cross-sectional view of an even further embodiment of the irrigation device according to the present invention. -
FIG. 8 is a cross-sectional view of another further embodiment of the irrigation device according to the present invention. -
FIG. 9 is a top planar diagrammatic view of an irrigation system according to the present invention. -
FIG. 10 is a perspective view of an irrigation device in combination with a water reservoir according to the present invention. -
FIG. 11 is a top planar view of a sheet containing three (3) supports which can be separate therefrom for making different size supports for the irrigation device according to the present invention. - An
irrigation device 10 according to the present invention is shown inFIG. 1 . - The
irrigation device 10 is configured to have a hook-type configuration as shown to allow theirrigation device 10 to be slipped around a plant P. In an alternative embodiment for relatively short height plants, theirrigation device 10 can be a hoop, ring, or spiral irrigation device in configuration. - The
irrigation device 10 includes aflexible soaker hose 12 having a hose connection 14 (e.g. male type or female type) at one end, and aplug 16 at an opposite end. As an alternative, theplug 16 can be replaced by crimping the end of theflexible soaker hose 12, for example, with a metal fastener and/or by heat welding. Asupply hose 18 is releasably connected to theirrigation device 10 via thehose connection 14. Thehose 18 can be provided, for example, with a male type or female type hose connector to cooperate with thehose connection 14 of theirrigation device 110. - As shown in
FIG. 1 , theirrigation device 10 is placed around the plant P so as to direct water directly to the root or root bulb of the Plant. Specifically, thesupply hose 18 is preferably a non-water permeable hose connected to a source of water (e.g. a faucet, water tank, water reservoir, water pump) so that no water is lost between the water source and the connection with theirrigation device 10. Water enters theirrigation device 10 through thehose connection 14 and reaches theplug 16, at which point water pressure builds up within theirrigation device 10, and theflexible soaker hose 12 begins to release water in a gradual controlled manner along the entire length of theflexible soaker hose 12. The water will permeate through the wall portion of theflexible soaker hose 12, and weep mainly down into the soil with very little loss due to runoff, drainage and/or evaporation. Theirrigation device 10 is shown above ground, however, theirrigation device 10 can be located partially or fully below ground. - The flexible soaker hose is sufficiently flexible so that a support is needed or required to maintain the flexible soaker hose in a particular substantially fixed configuration. The support can be located inside the
soaker hose 12, outsidetile soaker hose 12 and/or in the wall portion of thesoaker hose 12. As shown inFIG. 3A , abendable metal support 20, preferably made of copper, aluminum, bronze, galvanized steel or other suitable metal being sufficiently malleable and resistant to corrosion can be positioned within theflexible soaker hose 12, and the combination is bent into a specific configuration such as the hook-type configuration shown inFIGS. 1 and 2 . In this configuration, thebendable metal support 20 will have the configuration as shown inFIG. 4 when located within theflexible soaker hose 12. The bendable metal support can be conduit, as shown, or can have any other suitable configuration (e.g. bar, plate, wire, mesh, bar, stranded, spring or combination of different types of bendable metal sections connected together). - As shown in
FIG. 3B , abendable metal support 20′ can be applied external to theflexible soaker hose 12, for example, by use of adhesive and/or heat bonding. Optionally or alternatively, a water impermeable coating orlayer 21 is provided on an upper portion of theflexible soaker hose 12 to only allow water to weep or soak out of a lower portion of theflexible soaker hose 12 to direct water only in the direction of the roots or root bulb of the plant being watered. Thelayer 21 may be applied before or after theflexible soaker hose 12 is bent into a particular substantially fixed configuration. Thelayer 21 can be substantially rigid or flexible depending on applications. A substantially rigid layer applied after bending theflexible soaker hose 12 can be partially or fully responsible for holding the substantially fixed configuration of theirrigation device 10. - The
bendable support 20 is configured to hold theflexible soaker hose 12 in a substantially fixed configuration as shown inFIGS. 1 and 2 (i.e. hook-type configuration). Further, thesupport 20 is preferably a bendable support to allow theirrigation device 10 to be bendable from one substantially fixed configuration to another substantially fixed configuration (i.e. from hook-type configuration to a spiral-type configuration), as shown inFIG. 2 . Further, the shape of theirrigation device 10 call be changed from a substantially circular shape to an oblong, rectangular, triangular or other suitable shape. - In an alternative embodiment, as shown in
FIG. 5 , theirrigation device 10′ utilizes anexternal support 22 having a plurality of separate lug or anchors 24 for securing theflexible soaker hose 12 to theexternal support 22. Theexternal support 22 can be configured to be substantially rigid or substantially flexible. For example, theexternal support 22 can be a plastic injection molded article having integrally molded lugs 24 or separate metal fasteners for securing theflexible soaker hose 12 thereto. Again, theirrigation device 10′ can be installed above ground, partially in the ground or below ground. - In alternative embodiments, as shown in Figures 0.6-8, one or more supports are provided within the wall of the
flexible hose 22. Depending upon the application, the supports can be substantially rigid to hold the flexible soaker hose in one substantially fixed configuration, or bendable to allow the flexible soaker hose to be bent from one configuration to another configuration. - In the embodiment shown in
FIG. 6 , four (4) equally spaced supports 20″ are disposed within the wall portion of thesoaker hose 12″. The supports 20″ are shown as having circular-cross sections, however, other cross-sectional shapes and/or sizes call be utilized. The supports 20″ can be substantially rigid (e.g. made of tempered metal, rigid plastic, fiberglass, kevlar, carbon fiber, or other suitable composites), or can be configured to be bendable (e.g. made of malleable metal such as copper, aluminum, bronze, galvanized steel). Alternatively, thesupports 20″ can be tailored to be somewhat rigid and somewhat bendable by making them from composite materials (e.g. malleable metal strands in combination with kevlar or fiberglass fibers). - In the embodiment shown in
FIG. 7 , thesupports 20′″ are more slender but wider so that they can be further embedded within the wall of theflexible soaker hose 12′″, to prevent corrosion thereof. The cross-sectional configuration including the cross-sectional shape and/or size, will dictate various characteristics regarding tile bendable nature of thesoaker hose 12′″, and can be varied for different applications. - In the embodiment shown in
FIG. 8 , asupport 20′″ is shown as a wire or fiber mesh integrated as a unit or layer within the wall thickness of thesoaker hose 12′″. - An
irrigation system 30 according to the present invention is shown inFIG. 9 . Preferably, theirrigation system 30 utilizes one ormore irrigation devices 10 according to the present invention. Specifically, a waterimpermeable supply hose 32 is provided with a plurality ofseparate hose connectors 34 coupled with variable flow valves 36 (e.g. shut off valves) along the length of thesupply hose 32. As shown inFIG. 9 , a pair ofhose connectors 34 are located along the length of thesupply hose 32, however,individual hose connectors 34 can be located alongtie supply hose 32. As an alternative to the embodiment shown, theirrigation device 10 on the right-hand side ofFIG. 9 car be replaced with anothersupply hose 32 having one or more irrigation devices, for example, to double, triple, etc. the size of the system. - In the embodiment shown in
FIG. 9 , one or more of the installedirrigation devices 10 can be disconnected from thesupply hose 32 with theparticular hose connector 34 in the shut off position to prevent water leakage therefrom. Thus, various configurations can be arranged with regards to theirrigation devices 10 being positioned along the length and/or on either side of thesupply hose 32 depending on the desired location of the plants to be planted, or the location of existing plants. Tile location of theirrigation devices 10 along the length of the supply hose can be equal distance (i.e. three sets on the right-hand side of supply hose 32) or variably spaced (i.e. three sets ofirritations devices 10 along the left-hand side of supply hose 32). - The
supply hose 32 is provided with ahose connector 38. Optionally, thesupply hose 32 can be provided with an in-line nutrient feeder 40 (e.g. plant food) and/or all in-line timer 42 capable of turning on and turning off the water to thesupply hose 32 on a preset interval or preprogrammed intervals. - In a more advanced embodiment, the
hose connectors 34 are configured to be movable to additional various points along thesupply hose 32, or can be configured to even be slidable to any position along thesupply hose 32 to allow exact positioning of theirrigation devices 10 relative to the plants to be watered. - In the embodiment shown in
FIG. 10 , an in-line water reservoir 44 is connected to theirrigation device 10. The water reservoir shown as a separate component from the irrigation device, however, in another embodiment these two separate components are constructed or made as a single unit. Thewater reservoir 44 is provided with anair vent 46 to allow air to escape as water is added to thewater reservoir 44, and to allow air to enter thewater reservoir 44 when the water level is dropping therein. Alternatively, the air vent can be deleted or a valve (e.g. a one way valve) can be provided to create air pressure above the water level. In use, water is supplied to thewater reservoir 44 via thesupply hose 18. As the height of the water withintie water reservoir 44 continues to rise, a sufficient pressure head is created to force water into theirrigation device 10. When thewater reservoir 44 is filled, the water supply to thesupply hose 18 is turned off, and water is allowed to drain from thewater reservoir 44 continuously intotile irrigation device 10 over a period of time (e.g. from hours to days depending on the configuration of thewater reservoir 44 and irrigation device 10). In a more advanced embodiment, thewater reservoir 44 is provided with a gauge for detecting tile level of water within thewater reservoir 44 which can automatically signal an electrically operated controlled valve cutting off the supply of water from thesupply hose 18 into thewater reservoir 44. This type of system would allow for intermittent water supply, for example, from a pump supplied by a pond or lake and run only on an intermittent basis. Thus, in this particular embodiment water is both stored at or near the plant while irrigation is slowly occurring. - Optionally, the water reservoir can be provided with a closure, for example, a
fill 48 andcap 50 to allow water to be added from another hose, bucket, funnel (e.g. rain collector) alternatively or in addition to thehose 18. In some applications,hose 18 may be removed and plugged off. As a further option, a hand operatedair pump 52 can be provided to the water reservoir to allow air pressure to be applied within the water reservoir when theair vent 46 andhose 18 are plugged off to assist flow through theirrigation device 10. - A variable or
multiple size support 100, for use with the embodiment shown inFIG. 5 , is shown inFIG. 11 . Thesupport 10, for example, is a sheet (e.g. metal and/or plastic and/or ceramic) having three (3) different size hoop shapedsupports support 100 is configured so that thesupports support 100 and themselves so that a particular size support for a particular application can be selected. - The
supports holes 108 to allow attachment of aflexible soaker hose 12, the same or similar to that shown inFIG. 5 . A plurality of separate lugs or anchors 110 are supplied for securely connecting theflexible soaker hose 12 to thesupports anchors 110 are provided with protrusions 112 (e.g. hooks or barbs) provided onlegs 114 to cooperate with the lower edges of the throughholes 108 during assembly. - In the embodiment shown in
FIG. 1 , thesupply hose 18 is coupled to the faucet (as shown) and theirrigation device 10. The faucet is opened and water flows along the waterimpermeable supply hose 18 to theirrigation device 10 until it reaches theplug 16. The water will continue to flow to theplug 16 until more or less the pressure within thewater supply hose 18 is reached. Theflexible soaker hose 12 will begin to weep allowing for a very slight controlled flow therefrom into the ground. The upper surface of theflexible soaker hose 12 can potentially be sealed or covered with a water impermeable layer so that only water drains from a lower portion of the flexible soaker hose. In this manner, water from a remote source is transported directly to tile plant without any waste via the waterimpermeable hose 18, and then controllably released to the roots of the plants with a minimum loss due to water runoff, drainage and/or evaporation into the air. Thus, this particular irrigation device and irrigation system according to the present invention is highly efficient with regards to preventing the loss of water to the environment minimizing the amount of water consumption to effectively irrigate plants.
Claims (39)
1. (canceled)
2. (canceled)
3. (canceled)
4. (canceled)
5. (canceled)
6. (canceled)
7. (canceled)
9. (canceled)
10. (canceled)
11. (canceled)
12. (canceled)
14. (canceled)
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16. (canceled)
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18. (canceled)
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20. (canceled)
21. (canceled)
22. (canceled)
23. (canceled)
24. (canceled)
25. (canceled)
26. An irrigation device, comprising:
a flexible soaker hose including a soaker hose flow passageway configured for accommodating water flow through and along a length of said soaker hose, said soaker hose having an open end and a closed end;
a bent support extending continuously along a substantial length of said soaker hose and disposed within said soaker hose flow passageway of said soaker hose, said bent support configured to maintain said soaker hose in a substantially fixed bent configuration during use, said bent support being sized to be less than an inner surface of said soaker hose to provide an annular-like flow passageway between an outer surface of said bent support and an inner surface of said soaker hose, said bent support having a hook-type configuration including a straight portion connected to and extending radially outwardly from a circular-shaped open hoop portion, said bend support being configured to allow said circular-shaped open hoop portion to be changed from one substantially fixed circular bent configuration to another substantially fixed circular bent configuration; and
a hose connector connected to said open end of said soaker hose, and located adjacent an end of said straight portion of said bent support.
27. A device according to claim 26 , wherein said bent support extends along the entire length of said soaker hose.
28. A device according to claim 26 , wherein said bent support is configured to allow said irrigation device to be further bent so that said closed end overlaps said open end of said soaker hose.
29. A device according to claim 26 , wherein said bent support is a further bendable support located within said soaker hose to allow said circular-shaped open hoop portion to be further bent closed.
30. A device according to claim 26 , wherein said bent support is a bendable metal support including at least one selected from the group consisting of a conduit, bar, plate, wire, mesh, stranded and spring.
31. A device according to claim 30 , wherein said bendable metal support is made from one selected from the group consisting of copper, copper alloy, bronze, aluminum, aluminum alloy, steel, steel alloy and galvanized steel.
32. A device according to claim 26 , including at least one hose connection connected to said soaker hose.
33. A device according to claim 26 , wherein said closed end of said soaker hose is plugged.
34. A device according to claim 26 , wherein an upper portion of said soaker hose is configured to be water impermeable to allow water to only soak through and out of a lower portion of said soaker hose.
35. An irrigation system, comprising:
a water supply;
at least one flexible soaker hose configured to be connected to said water supply, said soaker hose including a soaker hose flow passageway configured for accommodating water flow through and along a length of said soaker hose, said soaker hose having an open end and a closed end; and
a bent support extending continuously along a substantial length of said soaker hose and disposed within said soaker hose flow passageway of said soaker hose, said bent support configured to maintain said soaker hose in a substantially fixed bent configuration during use, said bent support being sized to be less than an inner surface of said soaker hose to provide an annular-like flow passageway between an outer surface of said bent support and an inner surface of said soaker hose, said bent support having a hook-type configuration including a straight portion connected to and extending radially outwardly from a circular-shaped open hoop portion, said bend support being configured to allow said circular-shaped open hoop portion to be changed from one substantially fixed circular bent configuration to another substantially fixed circular bent configuration; and
a hose connector connected to said open end of said soaker hose, and located adjacent an end of said straight portion of said bent support.
36. A system according to claim 35 , including a supply hose connected to said soaker hose.
37. A system according to claim 36 , wherein said supply hose is made of hose material configured not to leak.
38. A system according to claim 36 , wherein a plurality of said soaker hose is connected to said supply hose.
39. A system according to claim 38 , wherein said supply hose is provided with a plurality of hose connections and said soaker hoses are each provided with a hose connection to allow said soaker hoses to be releasably connected to said supply hose.
40. A device according to claim 36 , wherein said bent support is a bendable metal support including at least one selected from the group consisting of a conduit, bar, plate, wire, mesh, stranded and spring.
41. A device according to claim 40 , wherein said bendable metal support is made from one selected from the group consisting of copper, copper alloy, bronze, aluminum, aluminum alloy, steel, steel alloy and galvanized steel.
Priority Applications (1)
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US11/057,202 US20050145716A1 (en) | 2002-03-22 | 2005-02-15 | Irrigation device and system |
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US10/102,872 US6901698B2 (en) | 2002-03-22 | 2002-03-22 | Irrigation device and system |
US11/057,202 US20050145716A1 (en) | 2002-03-22 | 2005-02-15 | Irrigation device and system |
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Cited By (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US20080271366A1 (en) * | 2006-06-26 | 2008-11-06 | Toh Products Llc | Composite tube having drip irrigation applications |
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Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US7690549B1 (en) * | 2003-06-18 | 2010-04-06 | Owensby Howard S | Purge line for welding backup |
US7063276B2 (en) * | 2004-03-23 | 2006-06-20 | Agri-Inject, Inc. | System for uniform dispersal of agricultural chemicals |
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US7207138B1 (en) | 2004-10-13 | 2007-04-24 | Hauser James R | Gravity feed irrigation apparatus |
US20090159726A1 (en) * | 2006-06-26 | 2009-06-25 | Toh Products Llc | Drip tape loop with mat application |
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US8166704B1 (en) * | 2009-04-30 | 2012-05-01 | Sydlowski Russell L | Plant watering device |
ES1070735Y (en) * | 2009-06-30 | 2010-01-18 | Porec Irrigation Systems S L | IRRIGATION DEVICE |
ES1072174Y (en) * | 2010-03-24 | 2010-08-26 | Bandm Activities S L | "IRRIGATION DEVICE FOR EXUDATION AND / OR DRIPPING, APPLICABLE TO MACETS AND FOREIGN GROUND PLANTATIONS". |
US9138757B2 (en) | 2011-11-21 | 2015-09-22 | Harvey Wayne McLarty | Portable irrigation device and method of use |
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US9901038B2 (en) * | 2012-10-29 | 2018-02-27 | Stephen Jay Akana | Plant manipulator |
US9468165B2 (en) * | 2013-06-18 | 2016-10-18 | The Patent Store Llc | Irrigation device |
US9093000B2 (en) * | 2013-12-03 | 2015-07-28 | Design Display Group, Inc. | Product centric merchandiser |
WO2015155763A1 (en) * | 2014-04-09 | 2015-10-15 | Roots Sustainable Agricultural Technologies Ltd. | Heat delivery system and method |
US10973504B2 (en) * | 2014-08-05 | 2021-04-13 | Paulino Edwardo Goco | Retractor suction catheter |
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US20160290536A1 (en) * | 2015-10-14 | 2016-10-06 | Shell Oil Company | Hydraulic tubing system |
US9999894B2 (en) * | 2016-05-04 | 2018-06-19 | Robert W Becktell | Tree and shrub sprinkler apparatus |
US20170332561A1 (en) * | 2016-05-20 | 2017-11-23 | Jeff Martin | Garden Spring |
USD862641S1 (en) * | 2017-10-06 | 2019-10-08 | Russell S. Smith, Sr. | Irrigation device |
CN108157131B (en) * | 2017-12-29 | 2020-04-24 | 临泽县晟康绿色农业科技开发有限公司 | Agricultural drip irrigation equipment capable of preventing water and soil loss and water evaporation |
WO2021077197A1 (en) * | 2019-10-22 | 2021-04-29 | Harvest Hub Ltd. | Plant-growing apparatus with gas cavity |
IT202100028538A1 (en) * | 2021-11-10 | 2023-05-10 | Irritec S P A | Dripping ring for watering plants |
US20230165201A1 (en) * | 2021-12-01 | 2023-06-01 | William James Hausauer | Pot with integrated irrigation |
CN116530399B (en) * | 2023-07-06 | 2023-09-15 | 崇信县林果产业开发有限责任公司 | Water-saving irrigation device for apple planting |
Citations (16)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US652141A (en) * | 1896-12-30 | 1900-06-19 | Karl Heinrich Raupp | Acetylene-gas burner. |
US1484575A (en) * | 1922-04-29 | 1924-02-19 | Neal P Shulin | Discharge member for use in irrigating systems |
US3032357A (en) * | 1960-05-19 | 1962-05-01 | Sidney J Shames | Flexible shower arm |
US3227408A (en) * | 1964-09-11 | 1966-01-04 | Kenneth M Reed | Soaker hose clamp and support |
US3301515A (en) * | 1965-05-03 | 1967-01-31 | Gerbracht Vernon | Soaker hose holder |
US3361363A (en) * | 1965-10-22 | 1968-01-02 | Robert S. Babington | Watering device |
US3402741A (en) * | 1965-06-21 | 1968-09-24 | Yurdin Alfred | Self-supporting, bendable, shape retaining discharge conduit |
US3876146A (en) * | 1973-12-06 | 1975-04-08 | Manuel Pacheco | Automatic plant waterer and fertilizing system |
US4010898A (en) * | 1975-07-21 | 1977-03-08 | Williams David M | Irrigation method and apparatus |
US4327775A (en) * | 1977-05-09 | 1982-05-04 | The Gates Rubber Company | Formable hose with a reformable insert |
USD303913S (en) * | 1987-10-19 | 1989-10-10 | Leap Earl J | Tree soaker |
US5285968A (en) * | 1992-09-10 | 1994-02-15 | Mcsheehy William H | Water distribution yoke for tree cultivation |
US5894866A (en) * | 1997-07-31 | 1999-04-20 | Dayco Products, Inc. | Garden hose assembly having holding means adapted to be coiled around an associated support and method of making same |
US6260769B1 (en) * | 1999-09-28 | 2001-07-17 | Allen E. Hoover | Irrigation assembly |
US6568610B1 (en) * | 2000-08-12 | 2003-05-27 | K. C. Ericksen | Flexible lawn and garden spray wand |
USD481103S1 (en) * | 2003-04-17 | 2003-10-21 | Edwin J. West | Tree and shrub soaker ring |
Family Cites Families (27)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US865355A (en) * | 1907-04-19 | 1907-09-10 | Irving Callmann | Spraying device. |
US2277864A (en) * | 1940-09-03 | 1942-03-31 | Dayton Pump & Mfg Co | Means and method of coiling hose |
US2755985A (en) * | 1954-10-18 | 1956-07-24 | Franklyn J Finegan | Irrigating apparatus |
US2998028A (en) * | 1957-07-30 | 1961-08-29 | Rohde Adolf Ernst | Flexible tube or hose |
US2954194A (en) * | 1960-04-01 | 1960-09-27 | Alfano Gustave | Guide and holder for flat, perforated garden hose |
US3134233A (en) * | 1960-11-14 | 1964-05-26 | Stanton R Morrison | Method of irrigation |
US3482785A (en) * | 1968-02-16 | 1969-12-09 | Richard D Chapin | Tube positioner with flow regulating means |
US3972757A (en) * | 1974-09-16 | 1976-08-03 | Uniroyal Inc. | Manufacture of vulcanized elastomeric hose |
US4016677A (en) * | 1975-05-07 | 1977-04-12 | Helmut Julinot | Air pulsed hydroponic unit |
JPS5531083U (en) * | 1978-08-23 | 1980-02-28 | ||
US4235561A (en) * | 1979-02-12 | 1980-11-25 | Glen Peterson | Subterranean irrigation means and system |
JPS62151121A (en) * | 1985-09-12 | 1987-07-06 | 砂研株式会社 | Plant culture method |
US4843757A (en) * | 1986-04-18 | 1989-07-04 | Hara Jr James C O | Root ball watering device |
US4763842A (en) * | 1987-02-04 | 1988-08-16 | Bill D. McCarthy | Water drip device for irrigation |
DE3806973A1 (en) * | 1988-03-03 | 1989-09-14 | Wolfgang Dr Ing Staender | Plant-supply system |
US5148628A (en) * | 1989-07-14 | 1992-09-22 | Wulkowicz Robert M | Irrigation and percolation method and apparatus |
SU1697634A1 (en) * | 1990-01-15 | 1991-12-15 | Всесоюзное Научно-Производственное Объединение По Механизации Орошения "Радуга" | Furrow irrigation apparatus |
US5069388A (en) * | 1990-03-12 | 1991-12-03 | Aquapore Moisture Systems | Porous pipe landscape system |
US5246254A (en) * | 1992-11-13 | 1993-09-21 | Francis X. LoJacono, Sr. | Anti-kinking device for garden hoses |
US5768824A (en) * | 1995-05-05 | 1998-06-23 | Matz; Warren W. | Lawn and garden edging system |
MX9504141A (en) * | 1995-09-28 | 1997-03-29 | Ind De Mangueras Reforzadas S | Reinforced hose with polyester core polyvinyl threaded plait. |
US5755383A (en) * | 1996-07-17 | 1998-05-26 | Joseph; John S. | Automatic sprinkler garden edging system |
US6023883A (en) * | 1997-07-22 | 2000-02-15 | Bacon, Jr.; Benjamin E. | Drip irrigator |
US6036104A (en) * | 1998-12-18 | 2000-03-14 | Shih; Chao-Chang | Irrigation system |
US5956893A (en) * | 1999-01-15 | 1999-09-28 | Harrison; Patricia Jessica | Plant irrigation table |
US6079156A (en) * | 1999-05-17 | 2000-06-27 | Colovic; Alex J. | Self-watering planter employing capillary action water transport mechanism |
US6453607B1 (en) * | 1999-11-03 | 2002-09-24 | Eldridge Helwick, II | Root-level plant watering and feeding device |
-
2002
- 2002-03-22 US US10/102,872 patent/US6901698B2/en not_active Expired - Fee Related
-
2005
- 2005-02-15 US US11/057,202 patent/US20050145716A1/en not_active Abandoned
Patent Citations (16)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US652141A (en) * | 1896-12-30 | 1900-06-19 | Karl Heinrich Raupp | Acetylene-gas burner. |
US1484575A (en) * | 1922-04-29 | 1924-02-19 | Neal P Shulin | Discharge member for use in irrigating systems |
US3032357A (en) * | 1960-05-19 | 1962-05-01 | Sidney J Shames | Flexible shower arm |
US3227408A (en) * | 1964-09-11 | 1966-01-04 | Kenneth M Reed | Soaker hose clamp and support |
US3301515A (en) * | 1965-05-03 | 1967-01-31 | Gerbracht Vernon | Soaker hose holder |
US3402741A (en) * | 1965-06-21 | 1968-09-24 | Yurdin Alfred | Self-supporting, bendable, shape retaining discharge conduit |
US3361363A (en) * | 1965-10-22 | 1968-01-02 | Robert S. Babington | Watering device |
US3876146A (en) * | 1973-12-06 | 1975-04-08 | Manuel Pacheco | Automatic plant waterer and fertilizing system |
US4010898A (en) * | 1975-07-21 | 1977-03-08 | Williams David M | Irrigation method and apparatus |
US4327775A (en) * | 1977-05-09 | 1982-05-04 | The Gates Rubber Company | Formable hose with a reformable insert |
USD303913S (en) * | 1987-10-19 | 1989-10-10 | Leap Earl J | Tree soaker |
US5285968A (en) * | 1992-09-10 | 1994-02-15 | Mcsheehy William H | Water distribution yoke for tree cultivation |
US5894866A (en) * | 1997-07-31 | 1999-04-20 | Dayco Products, Inc. | Garden hose assembly having holding means adapted to be coiled around an associated support and method of making same |
US6260769B1 (en) * | 1999-09-28 | 2001-07-17 | Allen E. Hoover | Irrigation assembly |
US6568610B1 (en) * | 2000-08-12 | 2003-05-27 | K. C. Ericksen | Flexible lawn and garden spray wand |
USD481103S1 (en) * | 2003-04-17 | 2003-10-21 | Edwin J. West | Tree and shrub soaker ring |
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US20080271366A1 (en) * | 2006-06-26 | 2008-11-06 | Toh Products Llc | Composite tube having drip irrigation applications |
JP2012065636A (en) * | 2010-09-22 | 2012-04-05 | Hideo Sasagawa | Flexible tube nozzle |
KR200454293Y1 (en) * | 2011-01-27 | 2011-06-29 | 김상원 | Flowerpot Water Supply |
JP2013046600A (en) * | 2011-04-11 | 2013-03-07 | Techno Kankyo Kiki Kk | Mist sprinkling device |
US10537073B2 (en) | 2012-05-24 | 2020-01-21 | Rain Bird Corporation | Conduit with connector and assembly thereof |
WO2017003861A1 (en) * | 2015-06-29 | 2017-01-05 | Stingray Watering System, LLC | Plant irrigation device |
CN107920481A (en) * | 2015-06-29 | 2018-04-17 | 斯廷拉伊供水系统有限责任公司 | plant irrigating device |
US10328663B2 (en) | 2015-06-29 | 2019-06-25 | Stingray Watering System, LLC | Plant irrigation device |
US11058073B2 (en) | 2015-06-29 | 2021-07-13 | Stingray Watering System, LLC | Plant irrigation device |
US11744194B2 (en) | 2015-06-29 | 2023-09-05 | Stingray Watering System, LLC | Plant irrigation device |
CN105766557A (en) * | 2016-03-15 | 2016-07-20 | 福建省邵武市二都国有林场 | Dendrobium candidum sprinkler irrigation device and cultivation method |
CN106106043A (en) * | 2016-08-26 | 2016-11-16 | 河南绿普森农林科技有限公司 | A kind of gutta-percha tree knaur water watering device |
US11388867B2 (en) * | 2016-12-16 | 2022-07-19 | Agriburbia, LLC | Systems and methods for enhanced production and management of agricultural yields |
US11203023B2 (en) | 2019-12-20 | 2021-12-21 | Stephen D. Shoap | Modular fluid spray nozzles and related systems and methods |
Also Published As
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US20030177695A1 (en) | 2003-09-25 |
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Legal Events
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