Vertical farming watering system
A watering system for a vertical farming facility, having a stackable growth module having a load bearing frame to allow the growth module to be arranged in a self-supporting stack of other modules in a vertical farming facility. The growth module supports a vertically arranged growth board for supporting plants grown in the vertical farming facility where the plants grow in a horizontal direction out from the growth board. The growth board has: a porous growth medium; a watering trough extending along an upper edge of the growth board which is provided with holes for distributing water into the growth medium; a water collection trough extending along a lower edge of the growth board arranged to collect water exiting the growth medium; and a valve provided in the water collection trough arranged to permit water to flow out of the water collection trough when the valve is open and to prevent water from flowing out of the collection trough when the valve is closed.
1 . A watering system for a vertical farming facility, comprising:
a framework structure comprising upright members and a storage volume comprising storage columns arranged in rows between the upright members;
a grid rail system arranged across the top of framework structure on which a plurality of container handling vehicles may operate;
a stackable growth module having a load bearing frame to allow the growth module to be arranged in a self-supporting stack of other modules within the storage columns of the framework structure, wherein the growth module comprises a vertically arranged growth board for supporting plants grown in the vertical farming facility where the plants grow in a horizontal direction out from the growth board, the growth board comprising:
a porous growth medium;
a watering trough extending along an upper edge of the growth board which is provided with holes for distributing water into the growth medium;
a water collection trough extending along a lower edge of the growth board arranged to collect water exiting the growth medium; and
a valve provided in the water collection trough arranged to permit water to flow out of the water collection trough when the valve is open and to prevent water from flowing out of the collection trough when the valve is closed,
wherein the growth module is configured to cooperate with a module immediately below in the stack, so that when the growth module is lowered onto the module below the valve of the growth module is caused to open and when the stackable module is lifted from the stack the valve is caused to close, wherein the valve comprises a sealing member that seats into or otherwise seals an opening in the bottom of the collection trough,
wherein the frame of the stackable growth module is a modular frame comprising side support members, the side support members having upper and lower load transferring edge surfaces for transferring load down the stack, the upper edge surfaces of the stackable growth module comprising notches for engagement by a gripper mechanism of a module handling device of the vertical farming facility, wherein the side support members are provided with a vertical guide, in the form of a slot, for supporting the growth board in a vertical configuration within the stackable growth module, and wherein the side support members are “I” shaped;
wherein the watering system comprises a water tank module with a water tank within a frame of the water tank module, the frame of the water tank module being configured to be stacked on top of growth modules in a stack, and wherein the water tank module has a valve that is arranged to be opened by an actuator provided on a growth module below when the water tank module has been placed on top of the stack, and wherein the actuator is a pin extending from a watering trough of the growth module below, the pin being positioned to be in vertical alignment with the valve of the water tank module above when the water tank module has been added to the stack;
wherein the water tank module is portable and can be moved around using a module handling vehicle or other lifting device.
2 . The watering system according to claim 1 , wherein the actuator of the growth module is arranged to cooperate with the sealing member of a module above, such that the actuator of a lower module is configured to push up the sealing member of the valve of the module immediately above as the module above is lowered onto the stack, thereby causing the valve of the stackable module above to open and release water to the module below.
3 . The watering system according to claim 1 , wherein the stackable growth module comprises engagement recesses for engaging with a gripper mechanism of a module handling device of the vertical farming facility.
4 . The watering system according to claim 1 , wherein the growth board comprises a cross-member having a plate-shaped body and a wall extending around a periphery of the plate-shaped body, and wherein each of the watering trough and water collection trough are an integrated part of the wall of the cross-member.
5 . The watering system according to claim 4 , wherein the upper and lower load transferring edge surfaces extend the full length or width of a grid opening in the grid rail system of the framework structure.
6 . The watering system according to claim 1 wherein the sealing member comprises a ball.
7 . The watering system according to claim 1 , wherein the water tank is held between two side support members, said side support members comprising upper and lower load transferring edge surfaces, the upper edge surfaces being provided with recesses arranged to be engaged by a gripping mechanism of a module handling device of the vertical farming facility.
8 . The watering system according to claim 1 , wherein the watering system comprises a spacer module that is configured to be placed at a base of the stack in order to support growth modules stacked on top, and thereby space the growth modules above from a floor of the vertical farming facility.
9 . The watering system according to claim 8 , wherein the spacer module comprises a drainage nozzle and an actuator arranged to open the valve of a lowermost growth module when stacked on top of the spacer module, to allow water exiting the lowermost growth module of the growth modules stacked on the spacer module to be collected.
10 . The watering system according to claim 9 , wherein the water collected via the drainage nozzle of the spacer module is recycled for use in the vertical farm.
11 . The watering system according to claim 1 , wherein the grid rail system comprises a first set of parallel rails arranged to guide movement of the container handling vehicles in a first direction X across the top of the framework structure, and a second set of parallel rails arranged perpendicular to the first set of rails to guide movement of the container handling vehicles in a second direction Y which is perpendicular to the first direction X.