IP Library › Granted Patent US 10,687,484
Granted Patent B1
US 10,687,484 · App. 16/687,364 · Granted Jun 23, 2020

Irrigation system

Inventor: Christopher Guy Williams (Spokane, WA)
A01G25/092
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Quick Facts
Patent No.
US 10,687,484
App. No.
16/687,364
Granted
Jun 23, 2020
Kind
B1
Abstract

A fully automated irrigation system to irrigate regular and irregular shapes of land. The system includes a water delivery pipe assembly configured to travel laterally while irrigating adjacent to a stationary row of spaced access valves supplied by a water main. The system includes a single coupler automated connector configured to supply water to the water delivery pipe assembly. The connector includes a swing arm mounted to and hydraulically connected to the water delivery pipe assembly. The connector includes a valve coupler mounted to the swing arm, the valve coupler configured to raise and lower relative to the swing arm to selectively access water from the water main via the spaced access valves. The connector includes a swing arm length regulator enabling substantially horizontal coupler travel relative to the swing arm. A water conveyance of the connector operably flows water between the valve coupler and the swing arm and maintains connection between the valve coupler and the swing arm during the raise, lower and horizontal travel of the coupler.

Claims (35)

1. An apparatus configured to supply water to a linear-move water delivery pipe assembly, the apparatus comprising:

a valve coupler;

a swing arm configured to pivotably forward the valve coupler along a water main, the swing arm pivotably mounted to and hydraulically connected to the delivery pipe assembly and having an outer end remote from the delivery pipe assembly, wherein the valve coupler is mounted to the outer end of the swing arm and configured to selectively access water from the water main, the valve coupler further configured to be raised and lowered to achieve a next access of the water main;

a swing arm length regulator mounted to the swing arm outer end and configured to accommodate a varying distance between the valve coupler's access to a stationary water main and linear-move travel of the delivery pipe assembly, the regulator enabling substantially horizontal coupler travel parallel to an axis through a length of the swing arm, and wherein the raise and lower of the valve coupler is relative to the swing arm length regulator;

a water conveyance configured to operably flow water between the valve coupler and the swing arm and to maintain connection between the valve coupler and the swing arm during the raise, lower and horizontal travel of the coupler; and

wherein the water conveyance comprises at least two of a rigid conduit and at least one of a flexible conduit.

2. The apparatus of claim 1 wherein the at least two of a rigid conduit comprises a curved conduit.

3. The apparatus of claim 2 wherein the water conveyance further comprises at least one of a conduit hinge configured to relieve load from one of the at least one flexible conduit.

4. The apparatus of claim 1 wherein the water conveyance further comprises a conduit hinge configured to relieve load from one of the at least one flexible conduit.

5. The apparatus of claim 1 wherein the water conveyance further comprises at least one of an offset hinge configured to relieve load from one of the at least one flexible conduit.

6. The apparatus of claim 1 wherein the water conveyance is configured to reside mostly on a side of the valve coupler away from the delivery pipe, the conveyance further comprising a flow router attached to the valve coupler to reroute upward water flow to a direction away from the delivery pipe.

7. The apparatus of claim 1 wherein the water conveyance is configured to reside mostly on a side of the valve coupler toward the delivery pipe, the conveyance further comprising flow router attached to the valve coupler to reroute upward water flow to a direction toward the delivery pipe and a flow router attached to the swing arm to reroute upward water flow in the conveyance into a top pipe of the swing arm.

8. The apparatus of claim 1 wherein the at least one flexible conduit comprises three flexible conduits and the conveyance further comprises three hinges, each hinge configured to relieve load from a respective one of the three flexible conduits.

9. The apparatus of claim 8 and wherein at least one of the three hinges comprises an offset hinge.

10. The apparatus of claim 8 and wherein the at least two of a rigid conduit comprises at least one of a curved conduit.

11. The apparatus of claim 8 wherein the water conveyance is configured to reside mostly on a side of the valve coupler toward the delivery pipe, the conveyance further comprising a flow router attached to the valve coupler to reroute upward water flow to a direction toward the delivery pipe and a flow router attached to the swing arm to redirect upward water flow in the conveyance into the swing arm.

12. The apparatus of claim 1 and wherein the swing arm length regulator comprises a trolley and the raise and lower of the valve coupler is also relative to the trolley and wherein the water conveyance connection between the valve coupler and the swing arm is maintained via the trolley.

13. The apparatus of claim 3 and wherein the swing arm length regulator comprises a trolley and the raise and lower of the valve coupler is also relative to the trolley and wherein the water conveyance connection between the valve coupler and the swing arm is maintained via the trolley.

14. The apparatus of claim 4 and wherein the swing arm length regulator comprises a trolley and the raise and lower of the valve coupler is also relative to the trolley and wherein the water conveyance connection between the valve coupler and the swing arm is maintained via the trolley.

15. The apparatus of claim 8 and wherein the swing arm length regulator comprises a trolley and the raise and lower of the valve coupler is also relative to the trolley and wherein the water conveyance connection between the valve coupler and the swing arm is maintained via the trolley.

16. An apparatus configured to supply water to a linear-move water delivery pipe assembly, the apparatus comprising:

a valve coupler;

a swing arm configured to pivotably forward the valve coupler along a water main, the swing arm pivotably mounted to and hydraulically connected to the delivery pipe assembly and having an outer end remote from the delivery pipe assembly, wherein the valve coupler is mounted to the outer end of the swing arm and configured to selectively access water from the water main, the valve coupler further configured to be raised and lowered to achieve a next access of the water main;

a swing arm length regulator mounted to the swing arm outer end and configured to accommodate a varying distance between the valve coupler's access to a stationary water main and linear-move travel of the delivery pipe assembly, the regulator enabling substantially horizontal coupler travel parallel to an axis through a length of the swing arm, and wherein the raise and lower of the valve coupler is relative to the swing arm length regulator;

a water conveyance configured to operably flow water between the valve coupler and the swing arm; and

wherein the water conveyance comprises a flexible conduit connected between the valve coupler and the swing arm and residing substantially inside a hose cage with one end of the hose cage attached to the valve coupler and the other end attached to the swing arm.

17. An apparatus configured to supply water to a linear-move water delivery pipe assembly, the apparatus comprising:

a valve coupler;

a swing arm configured to pivotably forward the valve coupler along a water main, the swing arm pivotably mounted to and hydraulically connected to the delivery pipe assembly and having an outer end remote from the delivery pipe assembly, wherein the valve coupler is mounted to the outer end of the swing arm and configured to selectively access water from the water main, the valve coupler further configured to be raised and lowered to achieve a next access of the water main;

a swing arm length regulator mounted to the swing arm outer end and configured to accommodate a varying distance between the valve coupler's access to a stationary water main and linear-move travel of the delivery pipe assembly, the regulator enabling substantially horizontal coupler travel parallel to an axis through a length of the swing arm, and wherein the raise and lower of the valve coupler is relative to the swing arm length regulator;

a water conveyance configured to operably flow water between the valve coupler and the swing arm; and

wherein the swing arm length regulator comprises a trolley and the raise and lower of the valve coupler is also relative to the trolley and wherein the water conveyance is further configured to maintain a connection between the valve coupler and the swing arm via the trolley during the raise, lower and horizontal travel of the coupler.

18. The apparatus of claim 17 wherein the water conveyance comprises at least two of a rigid conduit and at least one of a flexible conduit.

19. The apparatus of claim 17 wherein the water conveyance comprises at least two of a rigid conduit configured to reside between the swing arm and the trolley.

20. The apparatus of claim 17 wherein the valve coupler includes a coupler body and the water conveyance is configured attached to the coupler body and extending there from in a substantially upward direction.

Continuity (3)
Continuation In Part 15086570 · Mar 31, 2016
Continuation In Part 14210488 · Mar 14, 2014
Provisional Application 61852349 · Mar 15, 2013
Cited By (1)
US 12,721,287