A01G27/008

DEEP WATER CULTURE HYDROPONIC SYSTEM
20210321584 · 2021-10-21 ·

The specification discloses a DWC hydroponic system that includes a plurality of grow tanks, a circulation pump, a nutrient supply line fluidly connecting the outlet of the circulation pump to the grow tanks, and a tank drain line fluidly connected to the grow tanks. Each of the grow tanks is fluidly connected in parallel between the nutrient supply line and the tank drain line. The system further includes a pump suction line fluidly connected to the inlet of the circulation pump, and a plurality of bridge connectors each fluidly connecting the tank drain line to the pump suction line in accordance with a defined pattern. The DWC system may further include a nutrient supply fluidly connected to the circulation pump intake through a valve arrangement.

Wall mounted agricultural assembly
11140835 · 2021-10-12 · ·

A wall mounted agricultural assembly includes a first planter and a second planter below the first planter, and a water supply arrangement that includes a fluid supply delivering fluid from a fluid supply to the first and second planters and a first valve configured to allow or prevent fluid flow to the planters, and a second valve configured to prevent or allow fluid to bypass the planters.

DRAINAGE DEVICE AND SYSTEM FOR PLANT POTS
20210307266 · 2021-10-07 ·

A drainage device, system and arrangement for a plant pot, including: (a) a tray adapted to receive drainage fluid from the plant pot; (b) a cover for the drainage tray, the cover being permeable and adapted for a base of the plant pot to stand thereon, further adapted for the drainage fluid from the plant pot to pass there-through, into the tray; (c) an outlet port disposed in a sidewall of the tray; and (d) a drainage tube connected to the outlet port, the drainage tube adapted to provide a conduit for conveying the drainage fluid out of the tray.

PLATE-SHAPED STRUCTURE, A RESERVOIR AND A METHOD
20210307260 · 2021-10-07 ·

The invention relates to a plate-shaped structure for cultivating one or more plants. The plate-shaped structure (1) may optionally collect moisture from the atmosphere and comprises a generally flat upper surface (30) provided with a cavity (31, 32, 33) for holding plant material. The cavity has a sidewall (41, 42, 43) and a bottom portion (51, 52, 53). Further, the bottom portion includes an aperture. In use, the plate shaped structure can cover a reservoir (10) or can be placed on the soil. Optionally, the plate-shaped structure comprises a drain opening (35) with a floating cap and a covering cap so as to allow moisture to flow through the drain opening while minimizing evaporation. Further, the plate-shaped structure may have a cap structure (84) at its periphery for clampingly receiving the upwardly extending exterior sidewall of the reservoir. The plate-shaped structure can be fixed to the reservoir using protrusions (57 a-c, 58a-c) traversing corresponding openings.

Systems and methods for watering a seed tray

A watering station includes a robotic watering device having a first swing arm having a first end opposite a second end, a rotatable robot arm rotatably coupled to a second end of the first swing arm, a first motor configured to pivot the first swing arm, a second motor configured to rotate the rotatable robot arm with respect to the first swing arm, and pump outlets positioned on the rotatable robot arm, one or more pumps fluidly coupled to the pump outlets positioned on the rotatable robot arm, and a fluid reservoir, where the one or more pumps comprises an inlet and an outlet, and the one or more pumps are fluidly coupled to the fluid reservoir such that when activated the one or more pumps draw fluid from the fluid reservoir and disperse a predetermined amount of fluid out the pump outlets.

Plant containment system having two-position valve

A plant growing, transportation, display, and maintenance system including a plant pot and corresponding container having a selectable valve that controls the flow of liquid into and out of the container.

PLANT CULTIVATION SYSTEM, CONTROLLER, AND PLANT CULTIVATION METHOD

A plant cultivation system includes: a first sensor configured to output a sensor signal corresponding to an amount of water in a plant; a second sensor configured to output a sensor signal corresponding to a measurement value of an environment condition; and a controller, wherein the controller is configured to, by using a sensor signal from the first sensor obtained by the first sensor measuring a plant to be cultivated and a sensor signal from the second sensor obtained by the second sensor measuring an environment for cultivating the plant to be cultivated, control a specific environment parameter corresponding to the environment condition and measured by the second sensor, in a cultivation environment for the plant to be cultivated.

CLOSED LOOP SELF-WATERING SUB-IRRIGATION PLANTER
20210251162 · 2021-08-19 ·

A closed loop sub-irrigation self-watering planter of unitary construction amendable to additive or subtractive manufacturing. A three-dimensional outer mold line decorative flowerpot fused to a structural strength and moisture air lattice barrier, that is fused to a self-watering inner mold line sub irrigated planter. A divider divides an upper space of the planter for soil and a lower space for a water reservoir, wherein a conduit extends from the reservoir through the divider to an open end of the upper space, wherein the reservoir can be filled through the conduit. A soil opening in the divider communicates soil in the upper space with soil compacted in the second portion. A drain hole near an upper portion of the reservoir results in all water from the reservoir to pass through saturation holes in the second portion into the compacted soil therein for leaching into the soil of the upper spaced.

Plant Water Feeder
20210235642 · 2021-08-05 ·

A disclosed plant watering structure comprises of a reservoir partially filled with water, one tube supplying water from the reservoir to a watering plant, another tube which allows air to the water in the reservoir. Adjusting the distance between the end of this tube and the bottom of the reservoir, creates a balance of pressure in the system, which allows water flow into the plant only when the plant needs watering.

SMART GARDEN STATIONS
20210289724 · 2021-09-23 ·

A smart garden station for remotely managing growth and health of indoor plants is disclosed. The smart garden station comprises of a first container mounted on a panel and a second container inserted into the first container onto which a growing medium is disposed for planting seeds/plants. A set of sensors constantly monitor and communicate environment related data around the garden station to a remote electronic device. The remote electronic device generates a set of instructions to provide ideal environmental conditions at the garden station based on the received data. A processing unit receives these instructions and manages environmental conditions around the garden station. The processing unit controls the environment by primarily controlling the watering unit, the lighting unit, and the ventilation unit. These components modulate water content in growing medium and the temperature/humidity around the garden station to provide an optimal environment for the growth and health of the plants.