IP Library Granted Patent US 9,537,183
Granted Patent B2
US 9,537,183 · App. 14/739,007 · Granted Jan 3, 2017

Automatic water control system for open ditch drainage

Inventors: Timothy William Appelboom (Cary, NC); Chad Poole (Bellhaven, NC); Mohamed Abdelmoneim Youssef (Cary, NC); George M. Chescheir (Chapel Hill, NC); Richard Wayne Skaggs (Raleigh, NC)
Assignee: Custom Water Management Solutions, LLC
H01M10/465E02B7/28E02B7/36
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Quick Facts
Patent No.
US 9,537,183
App. No.
14/739,007
Granted
Jan 3, 2017
Kind
B2
Abstract

An automatic water control system for open ditch drainage includes a drainage control apparatus that is designed to be disposed in a drainage ditch and to control the water level in the drainage ditch, as well as the water table level in the field.

Claims (42)

1. A drainage control apparatus configured to be disposed in a drainage ditch adjacent a field wherein the drainage control apparatus controls the level of water in the drainage ditch, the drainage control apparatus comprising:

a frame structure;

a weir plate supported by the frame structure and adapted to extend across at least a portion of the drainage ditch;

an opening formed in the weir plate for permitting water to flow through the opening in the weir plate;

a pair of spaced apart vertical guide rails supported directly or indirectly by the weir plate in the vicinity of the opening in the weir plate;

a gate including two side edges, an upper edge, a lower edge, a front and a back moveably mounted in the vertical guide rails adjacent the opening in the weir plate and moveable between open and closed positions for opening and closing the opening in the weir plate;

each guide rail including a main body and a finger;

a pair of vertical seals unattached to the gate and held in the guide rails;

each guide rail engaging one of the vertical seals and clamping the vertical seal in place in the guide rail; and

a transverse seal separate from the vertical seals and disposed across the back of the gate between the upper and lower edges of the gate for preventing water from flowing through the opening in the weir plate and past the transverse seal when the gate assumes the closed position.

2. The drainage control apparatus of claim 1 wherein the vertical guide rails are mounted to a mounting plate disposed between the vertical guide rails and the weir plate or directly to the weir plate, and wherein the transverse seal is sandwiched between the back of the gate and the mounting plate or the weir.

3. The drainage control apparatus of claim 2 wherein there is provided a groove transversely across the back of the gate and wherein the transverse seal is disposed in said groove and is sandwiched between the mounting plate and gate or between the gate and the weir plate.

4. The drainage control apparatus of claim 2 wherein there is provided a bottom member that extends in the vicinity of a lower portion of the opening in the weir plate and wherein the bottom member extends underneath the lower edge of the gate when the gate assumes the closed position and wherein there is provided a lower transverse seal supported by the bottom member and disposed between the bottom member and the lower edge of the gate when the gate assumes the closed position.

5. The drainage control apparatus of claim 1 wherein the opening in the weir plate comprises a cutout formed in an upper portion of the weir, and wherein the gate is moveable up and down adjacent the cutout and wherein the gate assumes a closed position when the gate assumes an upper position.

6. The drainage control apparatus of claim 1 wherein the gate is disposed on a downstream side of the weir plate and wherein there is provided a screening device disposed adjacent an upstream side of the weir plate where the screening device aligned with the opening in the weir plate.

7. The drainage control apparatus of claim 1 wherein the gate is automatically controlled and the drainage control apparatus comprises an actuator operatively connected to the gate for moving the gate between the open and closed positions; and a battery supported in the frame structure and operatively connected to the actuator for supplying power to the actuator.

8. The drainage control apparatus of claim 1 wherein there is provided a cutting edge along a lower edge of the gate for cutting trash or debris.

9. The drainage control apparatus of claim 1 wherein the drainage control apparatus includes one or more weir plates with at least two vertically spaced openings formed therein, an upper opening and a lower opening; and wherein there is one gate disposed adjacent each opening and moveable vertically with respect to the opening for allowing water to flow through the openings.

10. The drainage control apparatus of claim 9 wherein one gate moves between an upper closed position and a lower open position; and wherein the other gate moves between a lower closed position and an upper open position.

11. A drainage control apparatus configured to be disposed in a drainage ditch adjacent a field wherein the drainage control apparatus controls the level of water in the drainage ditch, the drainage control apparatus comprising:

a frame structure;

one or more weir plates supported by the frame structure and adapted to extend across at least a portion of the drainage ditch;

at least two vertically spaced openings formed in the one or more weir plates including an upper opening and a lower opening;

a pair of gates with each gate disposed adjacent one of the openings and moveable vertically with respect to the opening for allowing water to flow through the openings;

wherein one gate moves between an upper closed position and a lower open position and the other gate moves between a lower closed position and an upper open position;

a pair of spaced apart vertical guide rails supported directly or indirectly by the weir plate in the vicinity of each of the openings;

each gate including two side edges, a front and a back and moveably mounted in the vertical guide rails adjacent one of the openings;

an elongated vertical seal disposed generally between each side edge of each of the gates and an adjacent vertical guide rail; and

a transverse seal secured across the back of the gate or preventing water from flowing through the opening in the weir plate and past the transverse seal when the gate assumes the closed position.

12. A control system for controlling moisture conditions in a field for growing a crop wherein the field is adjacent a drainage ditch, the control system comprising:

a drainage control apparatus configured to be disposed in the drainage ditch;

the drainage control apparatus including a drainage opening and a gate moveably mounted adjacent the drainage opening for opening and closing the drainage opening and permitting water to flow from an upstream side of the drainage control apparatus to a downstream side of the drainage control apparatus;

an actuator for moving the gate between open and closed positions;

a controller operatively connected to the actuator for controlling the actuator and the movement of the gate;

a field water level sensor configured to be disposed in the field for measuring the water table level in the field;

the field water table level sensor being operatively connected to the controller for directing signals representative of the water table level in the field to the controller;

a ditch water level sensor configured to be disposed in the drainage ditch for measuring the water level in the drainage ditch upstream of the drainage control apparatus;

the ditch water level sensor being operatively connected to the controller for directing signals representative of the water level in the ditch upstream of the drainage control apparatus to the controller; and

wherein said controller includes programmed control logic and based on the programmed control logic and the signals received from the field water table level sensor and the ditch water level sensor , the controller controls the gate and the flow of water through the drainage opening in the drainage control apparatus.

13. The control system of claim 12 further including one or more soil moisture sensors configured to measure the moisture content in one or more crop root zones in the field, and wherein the soil moisture sensors are operatively connected to the controller for directing signals to the controller that are representative of the moisture content in the one or more crop root zones in the field.

14. The control system of claim 12 wherein the controller is operatively connected to an irrigation source for supplying water, and based on the programmed control logic and signals supplied by one or more of said sensors, the controller is operative to activate and deactivate the irrigation source.

15. The control system of claim 12 further including one or more moisture sensors configured to measure the moisture content in one or more crop root zones in the field and wherein the one or more soil moisture sensors are operatively connected to the controller for directing signals to the controller that are representative of the moisture content in the one or more crop root zones in the field; and wherein the controller is operatively connected to an irrigation source for supplying water, and based on the programmed control logic and the signals supplied by one or more said sensors, the controller is operative to activate and deactivate said irrigation source.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 21, 2016
From: APPELBOOM, TIMOTHY WILLIAM; SKAGGS, RICHARD WAYNE; CHESCHEIR, GEORGE M.; YOUSSEF, MOHAMED ABDELMONEIM; POOLE, CHAD
To: CUSTOM WATER MANAGEMENT SOLUTIONS, LLC
Reel/Frame 038971/0164 →
Continuity (2)
Provisional Application 62012451 · Jun 16, 2014
Related Publication 20150361630A1 · Dec 17, 2015