IP Library Granted Patent US 11,291,871
Granted Patent B2
US 11,291,871 · App. 15/884,049 · Granted Apr 5, 2022

Automatic nitrogen fill for a fire sprinkler system

Inventors: Joshua Tihen (St. Louis, MO); Timothy Decker (Florissant, MO)
Assignee: Potter Electric Signal Company, LLC
A62C35/68A62C35/60A62C35/645A62C37/50B01D53/30B01D69/08F17C13/00G05D7/0635A62C35/62B01D53/22B01D63/02B01D2053/224B01D2256/10
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Quick Facts
Patent No.
US 11,291,871
App. No.
15/884,049
Granted
Apr 5, 2022
Kind
B2
Abstract

A gas supply system primarily designed for use with fire sprinkler systems which includes a control system which uses flow demand to automatically determine the mode of operation and switch between providing air and nitrogen. The gas supply system can operate either in standard nitrogen generation mode where nitrogen is supplied to the reservoir tank and/or sprinkler system or in a bypass mode, where sufficient pressure is only obtained by directly supplying air. The gas supply system can provide for improved safety in operation as well as the ability to operate the sprinkler system primarily when filled with nitrogen supervisory gas.

Claims (40)

1. A fill system for automatically supplying nitrogen and air to a fire sprinkler system, the fill system comprising;

a reservoir tank. wherein gas in said reservoir tank is provided to a sprinkler system when a pressure in said sprinkler system is below a predetermined threshold until said pressure in said sprinkler system is returned above a sprinkler system supervisory pressure when said reservoir tank ceases providing gas to said sprinkler system;

a separation system for obtaining nitrogen from atmospheric air and supplying said nitrogen to said reservoir tank;

a compressor, for supplying atmospheric air;

a bypass valve, said bypass valve directing air from said compressor alternatively to said separation system and directly to said reservoir tank;

a sensor for detecting a gas pressure in said reservoir tank over time; and

a controller supplying gas to said reservoir tank when said gas pressure in said reservoir tank drops below a target pressure until said pressure in said reservoir tank is above a set point pressure by activating said compressor and;

configuring said bypass valve to direct air to said separation system when said sensor detects a gas pressure change over time below a rate at which said separation system can supply nitrogen to said reservoir tank; or

configuring said bypass valve to direct air directly to said reservoir tank when said sensor detects a gas pressure change over time above said rate at which said separation system can supply nitrogen to said reservoir tank;

wherein said target pressure of said reservoir tank is above said sprinkler system supervisory pressure; and

wherein said controller supplies gas to said reservoir tank when said sprinkler system is above said sprinkler system supervisory pressure and said reservoir tank is below said set point pressure.

2. The fill system of claim I wherein said separation system includes a hollow fiber membrane.

3. The fill system of claim 1 wherein said controller comprises a computer running software.

4. The fill system of claim I wherein said controller comprises a mechanical circuit board.

5. The fill system of claim 1 further comprising a purge valve.

6. The fill system of claim 5 wherein said purge valve is on said sprinkler system separated from said reservoir tank.

7. The fill system of claim 5 wherein said purge valve is on said reservoir tank.

8. The fill system of claim I wherein said sprinkler system is a dry pipe system.

9. (The fill system of claim I wherein said sprinkler system is a wet pipe system.

10. A fill system for automatically supplying nitrogen and air to a tire sprinkler system; the fill system comprising;

a reservoir tank wherein gas in said reservoir tank is provided to a sprinkler system when a pressure in said sprinkler system is below a predetermined threshold until said pressure in said sprinkler system is returned above a sprinkler system supervisory pressure when said reservoir tank ceases providing gas to said sprinkler system;

a separation system for obtaining nitrogen from atmospheric air and supplying said nitrogen to said reservoir tank;

a compressor, for supplying atmospheric air;

a bypass valve, said bypass valve directing air from said compressor alternatively to said separation system and directly to said sprinkler system;

a sensor for detecting a gas pressure in said sprinkler system over tune; and

a controller supplying gas to said reservoir tank when said gas pressure in said reservoir tank drops below a target pressure until said pressure in said reservoir tank is above a set point pressure by activating said compressor and:

configuring said bypass valve to direct air to said separation system when said Sensor detects a gas pressure change over time below a rate at which said separation system can supply nitrogen to said reservoir tank; or

configuring said bypass valve to direct air directly to said sprinkler system when said sensor detects a gas pressure change over time above said rate at which said separation system can supply nitrogen to said reservoir tank;

wherein said target pressure of said reservoir tank is above said sprinkler system supervisory pressure; and

wherein said controller supplies gas to said reservoir tank when said sprinkler system is above said sprinkler system supervisory pressure and said reservoir tank is below said set point pressure.

11. The fill system of claim 10 wherein said separation system includes a hollow fiber membrane.

12. The fill system of claim 10 wherein said controller comprises a computer running software.

13. The till system of claim 10 ,wherein said controller comprises a mechanical circuit board.

14. The fill system of claim 10 further comprising a purge valve.

15. The fill system of claim 14 wherein said purge valve is on said sprinkler system separated from said reservoir tank.

16. The fill system of claim 14 wherein said purge valve is on said reservoir tank.

17. The fill system of claim 10 wherein said sprinkler system is a dry pipe system.

18. The fill system of claim 10 wherein said sprinkler system is a wet pipe system.

19. The fill system of claim 1 wherein said predetermined threshold and said sprinkler system supervisory pressure are the same pressure.

20. The fill system of claim 1 wherein said target pressure and said set point pressure are the same pressure.

Assignments (6)
SECURITY INTEREST Recorded Nov 21, 2023
From: POTTER ELECTRIC SIGNAL COMPANY, LLC
To: ANTARES CAPITAL LP, AS COLLATERAL AGENT
Reel/Frame 065632/0170 →
RELEASE AND REASSIGNMENT OF SECURITY INTEREST IN PATENTS RECORDED AT REEL/FRAME: 051288/0188 Recorded Nov 20, 2023
From: ANTARES CAPITAL LP, AS AGENT
To: POTTER ELECTRIC SIGNAL COMPANY, LLC
Reel/Frame 065630/0474 →
SECURITY INTEREST Recorded Apr 1, 2022
From: POTTER ELECTRIC SIGNAL COMPANY, LLC; VALCOM, INC.
To: CORTLAND CAPITAL MARKET SERVICES LLC
Reel/Frame 059470/0463 →
SECURITY INTEREST Recorded Dec 18, 2019
From: POTTER ELECTRIC SIGNAL COMPANY, LLC
To: CORTLAND CAPITAL MARKET SERVICES LLC, AS AGENT
Reel/Frame 051313/0554 →
SECURITY INTEREST Recorded Dec 16, 2019
From: POTTER ELECTRIC SIGNAL COMPANY, LLC
To: ANTARES CAPITAL LP, AS AGENT
Reel/Frame 051288/0188 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2019
From: TIHEN, JOSHUA; DECKER, TIMOTHY
To: POTTER ELECTRIC SIGNAL COMPANY, LLC
Reel/Frame 050277/0627 →