IP Library Granted Patent US 10,232,395
Granted Patent B2
US 10,232,395 · App. 13/744,588 · Granted Mar 19, 2019

Multi-nozzle rotary sprinkler

Inventors: Gary Klinefelter (Eden Prairie, MN); Ivan Tony Haugen (Savage, MN)
Assignee: Irrigreen, Inc.
B05B12/006B05B1/14B05B1/30B05B3/021B05B3/0454B05B12/08B05B12/085B05B12/124
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Quick Facts
Patent No.
US 10,232,395
App. No.
13/744,588
Granted
Mar 19, 2019
Kind
B2
Abstract

A rotary sprinkler comprises a nozzle head and at least 8 nozzles supported by the nozzle head. The nozzles are configured to discharge water streams at substantially the same velocity, but to different radial distances from the nozzle head. Each water stream produces a spray pattern that overlaps at least one adjoining spray pattern.

Claims (83)

1. A rotary sprinkler comprising:

a first nozzle comprising a first nozzle fluid pathway including a central axis, an inlet, an outlet, a first length measured from the inlet to the outlet along the central axis, and a first interior diameter at the outlet;

a second nozzle comprising a second nozzle fluid pathway including a central axis, an inlet, an outlet, a second length measured from the inlet to the outlet along the central axis that is less than the first length, and a second interior diameter at the outlet that is less than the first interior diameter; and

a third nozzle comprising a third nozzle fluid pathway including a central axis, an inlet, an outlet, a third length measured from the inlet to the outlet along the central axis that is less than the second length, and a third interior diameter at the outlet that is less than the second interior diameter;

wherein:

the first nozzle is configured to discharge a first water stream a first distance;

the second nozzle is configured to discharge a second water stream a second distance, which is less than the first distance;

the third nozzle is configured to discharge a third water stream a third distance, which is less than the second distance;

the velocities of the first, second and third water streams are approximately the same over a pressure range at the inlet spanning at least 20psi;

the first, second and third nozzles are each supported by a nozzle head that rotates about a vertical axis;

the central axis at the outlet of the first nozzle fluid pathway is oriented at a first angle relative to a horizontal plane, which is perpendicular to the vertical axis;

the central axis at the outlet of the second nozzle fluid pathway is oriented at a second angle relative to the horizontal plane;

the central axis at the outlet of the third nozzle fluid pathway is oriented at a third angle relative to the horizontal plane;

the first angle is greater than the second angle; and

the second angle is greater than the third angle.

2. The rotary sprinkler of claim 1 , wherein:

the first, second and third water streams respectively produce first, second and third spray patterns;

the first spray pattern overlaps a distal portion of the second spray pattern; and

the second spray pattern overlaps a distal portion the third spray pattern.

3. The rotary sprinkler of claim 2 , wherein the spray patterns provide substantially uniform watering per unit length in radial distance from the head.

4. The rotary sprinkler of claim 1 , wherein:

the second length is approximately 65-85% of the first length; and

the third length is 65-85% of the second length.

5. The rotary sprinkler of claim 1 , further comprising:

a main water inlet configured to receive a flow of water from a water supply line; and

a fluid flow path connecting the main water inlet to the inlets of the first, second and third nozzles.

6. The rotary sprinkler of claim 5 , wherein the fluid flow path comprises:

a first fluid flow path connecting the water inlet to the inlet of the first nozzle;

a second fluid flow path connecting the water inlet to the inlet of the second nozzle;

a third fluid flow path connecting the water inlet to the inlet of the third nozzle;

a first valve configured to control a flow of water through the first fluid flow path responsive to signals received from a controller;

a second valve configured to control a flow of water through the second fluid flow path responsive to signals received from a controller; and

a third valve configured to control a flow of water through the third fluid flow path responsive to signals received from a controller.

7. The rotary sprinkler of claim 5 , further comprising:

a valve configured to control a flow of water through the fluid flow path;

a memory;

a flow rate mapping of water flow rates to valve positions for given pressures in the fluid flow path stored in the memory; and

a controller comprising a processor configured to adjust the valve position based on the flow rate mapping.

8. The rotary sprinkler of claim 7 , wherein:

the sprinkler comprises a sensor that generates a signal indicative of a pressure in the fluid flow path, or a flow rate of a water flow through the fluid flow path; and

the controller is configured to adjust the valve position based on the signal from the sensor and the flow rate mapping.

9. The rotary sprinkler of claim 1 , further comprising a fourth nozzle, a fifth nozzle, a sixth nozzle, a seventh nozzle, and an eighth nozzle, each of which is configured to discharge a water stream having substantially the same velocity as the first, second and third water streams over a pressure range at the inlet spanning at least 20 psi, and traveling a different distance than the other water streams.

10. A rotary sprinkler comprising:

a first nozzle comprising a first nozzle fluid pathway including a central axis, an inlet, an outlet, a first length measured from the inlet to the outlet along the central axis, and a first interior diameter at the outlet;

a second nozzle comprising a second nozzle fluid pathway including a central axis, an inlet, an outlet, a second length measured from the inlet to the outlet along the central axis that is less than the first length, and a second interior diameter at the outlet that is less than the first interior diameter; and

a third nozzle comprising a third nozzle fluid pathway including a central axis, an inlet, an outlet, a third length measured from the inlet to the outlet along the central axis that is less than the second length, and a third interior diameter at the outlet that is less than the second interior diameter;

wherein:

the first nozzle is configured to discharge a first water stream a first distance;

the second nozzle is configured to discharge a second water stream a second distance, which is less than the first distance;

the third nozzle is configured to discharge a third water stream a third distance, which is less than the second distance;

the first, second and third nozzles are each supported by a nozzle head that rotates about a vertical axis;

the central axis at the outlet of the first nozzle fluid pathway is oriented at a first angle relative to a horizontal plane, which is perpendicular to the vertical axis;

the central axis at the outlet of the second nozzle fluid pathway is oriented at a second angle relative to the horizontal plane;

the central axis at the outlet of the third nozzle fluid pathway is oriented at a third angle relative to the horizontal plane;

the first angle is greater than the second angle;

the second angle is greater than the third angle; and

the velocities of the first, second and third water streams are approximately the same.

11. The rotary sprinkler of claim 10 , wherein:

the first, second and third water streams respectively produce first, second and third spray patterns;

the first spray pattern overlaps a distal portion of the second spray pattern; and

the second spray pattern overlaps a distal portion the third spray pattern.

12. The rotary sprinkler of claim 11 , wherein the spray patterns provide substantially uniform watering per unit length in radial distance from the head.

13. The rotary sprinkler of claim 10 , wherein:

the second length is approximately 65-85% of the first length; and

the third length is 65-85% of the second length.

14. The rotary sprinkler of claim 10 , further comprising:

a main water inlet configured to receive a flow of water from a water supply line; and

a fluid flow path connecting the main water inlet to the inlets of the first, second and third nozzles.

15. The rotary sprinkler of claim 14 , wherein the fluid flow path comprises:

a first fluid flow path connecting the water inlet to the inlet of the first nozzle;

a second fluid flow path connecting the water inlet to the inlet of the second nozzle;

a third fluid flow path connecting the water inlet to the inlet of the third nozzle;

a first valve configured to control a flow of water through the first fluid flow path responsive to signals received from a controller;

a second valve configured to control a flow of water through the second fluid flow path responsive to signals received from a controller; and

a third valve configured to control a flow of water through the third fluid flow path responsive to signals received from a controller.

16. The rotary sprinkler of claim 14 , further comprising:

a valve configured to control a flow of water through the fluid flow path;

a memory;

a flow rate mapping of water flow rates to valve positions for given pressures in the fluid flow path stored in the memory; and

a controller comprising a processor configured to adjust the valve position based on the flow rate mapping.

17. The rotary sprinkler of claim 16 , wherein:

the sprinkler comprises a sensor that generates a signal indicative of a pressure in the fluid flow path, or a flow rate of a water flow through the fluid flow path; and

the controller is configured to adjust the valve position based on the signal from the sensor and the flow rate mapping.

Assignments (4)
SECURITY INTEREST Recorded Sep 4, 2025
From: IRRIGREEN, INC.
To: WESTERN ALLIANCE BANK
Reel/Frame 072162/0041 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 9, 2014
From: IRRIGREEN, LLC
To: IRRIGREEN, INC.
Reel/Frame 032864/0558 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2013
From: KLINEFELTER, GARY; HAUGEN, IVAN TONY
To: IRRIGREEN, LLC
Reel/Frame 030360/0744 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2013
From: KLINEFELTER, GARY
To: IRRIGREEN, LLC
Reel/Frame 030338/0490 →
Continuity (4)
Continuation In Part PCTUS2011044337 · Jul 18, 2011
Provisional Application 61605374 · Mar 1, 2012
Provisional Application 61365600 · Jul 19, 2010
Related Publication 20130126635A1 · May 23, 2013
Cited By (1)
US 12,280,384