Controller-operated vertical farming system using transportable modules
The present invention is a vertical farming system including a set of transportable farming modules, each module having a plurality of vertically arranged farming tiers. Each tier includes a distinct aqueous input, a distinct aqueous drain output, and a distinct aqueous overflow output.
1. A vertical farming system comprising:
a set of transportable farming modules, each module having a plurality of vertically arranged farming tiers, wherein each tier comprises:
a distinct aqueous input configured to receive an aqueous nutrient solution,
a grow trough having a drain hole coupled to a distinct aqueous drain output, and an aqueous overflow hole, distinct from the drain hole, coupled to a distinct aqueous overflow output, and
wherein:
the overflow hole is located higher than the drain hole in the grow trough;
the distinct aqueous overflow output is coupled to the distinct aqueous drain output; and
for each tier other than a bottom tier, the distinct aqueous drain output is coupled to the distinct aqueous input of a tier immediately below the given tier.
2. The vertical farming system according to claim 1 , wherein the drain hole of each tier includes a normally closed valve that is electronically operated.
3. The vertical farming system according to claim 2 , wherein the vertical farming system comprises a controller, coupled to the normally closed valve, configured to control a level of the aqueous nutrient solution in the trough of each tier by actuating the normally closed valve.
4. The vertical farming system according to claim 3 , wherein the controller is configured to control the level of the aqueous nutrient solution in the trough of a given tier independently of any other tier of the plurality of tiers.