HYRDOPONICS
20180310499 ยท 2018-11-01
Inventors
Cpc classification
Y02P60/21
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
A01G31/06
HUMAN NECESSITIES
International classification
Abstract
The invention relates to a planter forming part of a hydroponic system. The planter includes a longitudinal body defining at least two longitudinally extending liquid channels and at least two plant holders defined in the body, the plant holders spaced on the outer circumference of the longitudinal body, each one of the at least two plant holders in fluid flow communication with one of the at least two longitudinally extending liquid channels.
Claims
1. A planter comprising: a longitudinal body defining at least two longitudinally extending liquid channels; and at least two plant holders defined in the body, the plant holders spaced on the outer circumference of the longitudinal body, each one of the at least two plant holders in fluid flow communication with one of the at least two longitudinally extending liquid channels, in which a first plant holder of the at least two plant holders is in fluid flow communication with a first longitudinally extending liquid channel of the at least two longitudinally extending liquid channels, and in which a second plant holder of the at least two plant holders is in fluid flow communication with a second longitudinally extending liquid channel of the at least two longitudinally extending liquid channels.
2. The planter of claim 1, in which the longitudinal body includes a longitudinal conduit which is internally divided to define the at least two longitudinally extending liquid channels.
3. The planter of claim 2, in which the at least two plant holders are located on opposed sides of the longitudinal body.
4. The planter of claim 3, in which each plant holder includes an inlet opening and an outlet opening, which is in flow communication with its corresponding liquid channel, and in which the inlet opening is located above the outlet opening to permit gravitational liquid flow into the plant holder through the inlet opening and liquid flow from the plant holder through the outlet opening.
5. The planter of claim 1, in which the at least two plant holders are alternatively spaced on opposed sides over the length of the longitudinal body, and in which each of the plant holders are in fluid flow communication with a different one of the longitudinally extending liquid channels.
6. The planter of claim 1, in which the longitudinal body includes connecting formations at the ends of the longitudinal body, the connecting formations are shaped and dimensioned to fit into corresponding connection formations of corresponding planters, and the connecting formations include: liquid channel connecting formations for connecting the liquid channels of adjacent planter bodies together; or gas channel connecting formations for connecting the gas channels of adjacent planter bodies together.
7. The planter of claim 1, in which the planter includes at least one longitudinally extending gas channel, the gas channel having gas outlets spaced along its length.
8. The planter of claim 1, in which the planter includes an external attachment formation associated with each plant holder for attaching a plant support, the attachment formation is located below the plant holder mouth, and the plant support is in the form of a creeper trellis arranged to support a creeper plant, planted in the plant holder when it grows from the plant holder mouth.
9. The planter of claim 1, in which the planter includes planting inserts shaped and dimensioned to fit into mouths of the at least two plant holders, and in which the planting inserts are selected from any one or more of: a seedling tray, a planting tray and a seeding clip.
10. The planter of claim 9, in which the seedling tray is in the form of a cylindrical body, shaped to the shape of the plant holder and includes an inlet opening indexed with the inlet opening of the plant holder, the seedling tray includes a planar base cut in sections to provide drainage slits to permit liquid drainage without flushing seedlings from the seedling tray.
11. The planter of claim 9, in which the planting tray is in the form of a cylindrical body shaped to the shape of the plant holder and includes an inlet opening indexed with the inlet opening of the plant holder, the planting tray includes a planar base cut in sections to provide drainage slits to permit liquid drainage without flushing seedlings from the seedling tray.
12. The planter of claim 9, in which the seeding clip has a planar body for closing the planter mouth and provided with a downwardly projecting plate having a slot shaped to engage the stem of a plant.
13. A planter tower comprising: a plurality of planters connected together to form an elongate upright planter with plant holders extending from the sides of the planter tower, at least one planter of the plurality of planters comprising: a longitudinal body defining at least a portion of two longitudinally extending liquid channels; and at least two plant holders defined in the body, the plant holders spaced on the outer circumference of the longitudinal body, each one of the at least two plant holders in fluid flow communication with one of the at least two longitudinally extending liquid channels, in which a first plant holder of the at least two plant holders is in fluid flow communication with a first longitudinally extending liquid channel of the at least two longitudinally extending liquid channels, and in which a second plant holder of the at least two plant holders is in fluid flow communication with a second longitudinally extending liquid channel of the at least two longitudinally extending liquid channels.
14. The planter tower of claim 13, which includes at least one end member, shaped and dimensioned to connect onto an end of the plurality of planters connected together.
15. The planter tower of claim 14, in which the planter tower includes two end members, a top end member for connecting to the top end of the plurality of planters and a bottom end member for connecting to the bottom end of the plurality of planters.
16. The planter tower of claim 15, in which: the top end member is in the form of an intake closure attached at a top end of a plurality of inter-connected planters for directing liquid into the two longitudinally extending liquid channels and for directing gas into the at least one longitudinally extending gas channel; or the bottom end member is in the form of an outlet closure attached at a bottom end of a plurality of inter-connected planters for directing liquid from the two longitudinally extending liquid channels and for directing gas from the at least one longitudinally extending gas channel.
17. A hydroponic greenhouse comprising: an array of planter towers arranged in parallel spaced rows, the rows being provided with a top liquid and gas supply line, connected via an intake closure to a top of each of the planter towers, the rows further being provided with a bottom liquid and gas collection line, connected via an outlet closure to a bottom of each of the planter towers, at least one of the plant towers including a planter comprising: a longitudinal body defining at least a portion of two longitudinally extending liquid channels; and at least two plant holders defined in the body, the plant holders spaced on the outer circumference of the longitudinal body, each one of the at least two plant holders in fluid flow communication, in which a first plant holder of the at least two plant holders is in fluid flow communication with a first longitudinally extending liquid channel of the at least two longitudinally extending liquid channels, and in which a second plant holder of the at least two plant holders is in fluid flow communication with a second longitudinally extending liquid channel of the at least two longitudinally extending liquid channels; a liquid circulation system, connected to the liquid supply lines and the liquid collection lines; and a gas circulation system, connected to the gas supply lines and the gas collection lines.
18. The hydroponic greenhouse of claim 17, in which gas outlets of the planters, are directed to the outsides of the planter bodies, the gas outlets being directed at plants in an adjacent planter tower.
19. The hydroponic greenhouse of claim 17, in which the greenhouse includes a partially closed enclosure, which is provided with any one or more of: air conditioners, high pressure fans, dampers, coiled coolers for recirculation of the liquid or gas from the liquid collection lines to the liquid supply lines or alternatively gas supply lines, geothermal heater/coolers, heat pumps, humidity controllers and infra-red controllers.
20. The hydroponic greenhouse of claim 17, in which the greenhouse is provided with a nutrient supply dosing pump connected to the liquid circulation system for dosing nutrients into the liquid circulation system or is provided with a filtering arrangement connected to the liquid circulation system for filtering the liquid in the liquid circulation system.
Description
DRAWINGS
[0046] In the drawings:
[0047]
[0048]
[0049]
[0050]
[0051]
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[0055]
EMBODIMENT OF THE INVENTION
[0056] In
[0057] The longitudinal body 12 defines two longitudinally extending liquid channels 14.1 and 14.2 as shown in
[0058] The planter 10 includes two plant holders 16, 18 defined on the outer circumference of the longitudinal body. As can be seen in
[0059] As can be seen in
[0060] As can be seen in
[0061] In
[0062] Importantly the operative lower end of the longitudinal body 12 of the planter 10 has a spigot formation 22, for fitting into a socket formation 20 on an operative upper end of a longitudinal body 12 of a corresponding planter 10 installed below the former planter.
[0063] As can be seen in
[0064] As can be seen in
[0065] The planter 10 further includes a longitudinally extending gas channel 24. The gas channel 24 has outlets spaced along its length. In particular, the gas channel 24 has outlets 26 that open to the outside of the planter body 12 (see
[0066] As can be seen in
[0067] The planter 10 also has external attachment formations in the form of apertures 34, for holding wire, line or cables that can provide additional structural strength to the planter assembly 50 or to provide a structure onto which creepers can grow.
[0068] Each planter 10 also includes planting inserts (as shown in
[0069] In
[0070] In
[0071] In
[0072]
[0073] The planter tower 50 is provided with two end members 52, as best shown in
[0074] The end members 52 have dual liquid conduits 54, 56 indexed to match the longitudinally extending liquid channels 14.2, 14.1. The end members 52 also each has a gas conduit 58 indexed to match the gas channel 24 extending through the planters.
[0075] The end members 52 each has a body with two sides, an upper side which is provided with a socket formation 52.1 and a bottom side which is provided with a spigot formation 52.2 for fitting onto matched spigot-22 and socket-20 formations on the ends of the longitudinal body 12 of the planters 10. The upper and bottom sides further includes a recessed cradle formation for receiving a top liquid and gas supply line (as shown in
[0076] In this example the planter tower 50 includes a top end member 52 for connecting to the top end of the plurality of planters 10.1, 10.2 and a bottom end member 52 for connecting to the bottom end of the plurality of planters 10.1, 10.2. The top end member 52 and bottom end member 52 are identical in shape and dimension, but function as an intake closure 52 and outlet closure 52 respectively.
[0077] The intake closure 52 attached at a top end of a plurality of interconnected planters, being operable to direct liquid into the two longitudinally extending liquid channels 14.1, 14.2 and for directing gas into the longitudinally extending gas channel 24.
[0078] The outlet closure 52 attached at a bottom end of a plurality of interconnected planters, being operable to direct liquid out from the two longitudinally extending liquid channels 14.1, 14.2.
[0079] The liquid channels 14.1, 14.2 and gas channel 24 extend over the length of the inter-connected planters 10.
[0080] The bottom side of the end members 52 also includes a catchment tray 57 on the outer perimeter of the end members. When the end member 52 is used as a bottom end member, the catchment tray 57 is operable to receive overflow liquid from the planter tower 50.
[0081] As can be seen in
[0082]
[0083] The rows being provided with a top liquid and gas supply line 102, connected via an intake closure 52 to a top of each of the planter towers 50. The rows are further provided with a bottom liquid and gas collection line 103, connected via an outlet closure 52 to a bottom of each of the planter towers 50.
[0084] The hydroponic greenhouse 100 includes a liquid circulation system (not shown), connected to the liquid supply lines 102 and the liquid collection lines 103 and a gas circulation system (not shown), connected to the gas supply lines 102 and the gas collection lines 103.
[0085] In this example the top liquid and gas supply line 102 includes a 50 mm to 65 mm diameter plastic outer pipe, onto which the top end members 52 of each planter tower 50 in the row is attached. The 50 mm to 65 mm diameter plastic outer pipe includes interspaced apertures through which liquid and gas is fed into the planter towers 50. The top end members (inlet closures) 52 are secured to the pipe via connectors. In this example the connectors are in the form of cable ties (not shown), which are threaded through connector apertures 59 on the end members 52.
[0086] In this example the bottom liquid and gas collection line 103 includes a 110 mm to 160 mm diameter plastic outer pipe, onto which the bottom end members (outlet closures) 52 of each planter tower 50 in the row is attached. The 110 mm to 160 mm diameter plastic outer pipe includes interspaced apertures through which liquid and gas is received from the planter towers 50. The bottom end members 52 are secured to the pipe via connectors. In this example the connectors are in the form of cable ties (not shown), which are threaded through connector apertures 59 on the end members 52.
[0087] The hydroponic greenhouse includes a partially closed enclosure (not shown), which is provided with any one or more of: air conditioners, high pressure fans, dampers, coiled coolers for recirculation of the liquid or gas from the liquid collection lines to the liquid supply lines or alternatively gas supply lines, geothermal heater/coolers, heat pumps, humidity controllers and infra-red controllers.
[0088] The hydroponic greenhouse is also provided with a nutrient supply dosing pump (not shown) connected to the liquid circulation system for dosing nutrients into the liquid circulation system.
[0089] The hydroponic greenhouse is further provided with a filtering arrangement (not shown) connected to the liquid circulation system for filtering the liquid in the liquid circulation system.
[0090] The inventors are of the opinion that the invention as described provides a new planter, a planter tower and a hydroponic greenhouse.