IP Library › Granted Patent US 10,486,006
Granted Patent B2
US 10,486,006 · App. 15/558,876 · Granted Nov 26, 2019

Redundant vents with unitary valve bodies for water-based fire sprinkler systems

Inventors: Jeffrey T. Kochelek (St. Louis, MO); Adam H. Hilton (St. Louis, MO)
Assignee: Engineered Corrosion Solutions, LLC
A62C35/68F16K31/18F16L55/07A62C35/60A62C35/62
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Quick Facts
Patent No.
US 10,486,006
App. No.
15/558,876
Granted
Nov 26, 2019
Kind
B2
Abstract

One example of a redundant vent for a water-based fire sprinkler system having a pipe network includes a unitary valve body defining a primary valve chamber and a redundant valve chamber, a primary float valve positioned within the primary valve chamber, and a redundant float valve positioned within the redundant valve chamber. The primary float valve and the primary valve chamber form a primary gas vent. The redundant float valve and the redundant valve chamber form a redundant gas vent. The primary gas vent is coupled to the redundant gas vent. The primary gas vent and the redundant gas vent are each configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network. Various optional features, components and water-based fire sprinkler systems are also disclosed.

Claims (41)

1. A redundant vent for a water-based fire sprinkler system having a pipe network, the redundant vent comprising:

a unitary valve body with a monolithic construction defining a primary valve chamber and a redundant valve chamber;

a primary float valve positioned within the primary valve chamber, the primary float valve and the primary valve chamber forming a primary gas vent; and

a redundant float valve positioned within the redundant valve chamber, the redundant float valve and the redundant valve chamber forming a redundant gas vent;

wherein the primary gas vent is coupled to the redundant gas vent;

wherein the primary gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network; and

wherein the redundant gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network.

2. The redundant vent of claim 1 wherein the unitary valve body includes one or more cast portions.

3. The redundant vent of claim 1 wherein the unitary valve body includes one or more milled portions.

4. The redundant vent of claim 1 wherein the unitary valve body defines a connecting chamber coupled between the primary valve chamber and the redundant valve chamber.

5. The redundant vent of claim 1 further comprising a conduit coupling the primary gas vent and the redundant gas vent.

6. The redundant vent of claim 1 wherein the unitary valve body includes at least a first body portion and a second body portion detachably coupled to the first body portion.

7. The redundant vent of claim 6 wherein the unitary valve body has a two-piece construction including only the first body portion and the second body portion.

8. The redundant vent of claim 1 wherein the primary gas vent includes an inlet and an outlet.

9. The redundant vent of claim 8 further comprising a pressure gauge operatively coupled to the inlet of the primary gas vent.

10. The redundant vent of claim 8 further comprising a pressure gauge operatively coupled to the outlet of the primary gas vent.

11. A water-based fire sprinkler system including a pipe network and a redundant vent according to claim 1 , the redundant vent coupled to the pipe network.

12. The water-based fire sprinkler system of claim 11 , wherein the water-based fire sprinkler system is a wet pipe system.

13. The water-based fire sprinkler system of claim 11 , wherein the water-based fire sprinkler system is a dry pipe system.

14. The water-based fire sprinkler system of claim 13 , wherein the dry pipe system is a preaction system.

15. The redundant vent of claim 1 wherein the redundant gas vent includes an inlet and an outlet.

16. The redundant vent of claim 15 further comprising a gas sampling port operatively coupled to the outlet of the redundant gas vent.

17. The redundant vent of claim 15 further comprising a check valve operatively coupled to the outlet of the redundant gas vent to substantially inhibit ambient air from entering the outlet of the redundant gas vent.

18. The redundant vent of claim 17 wherein the check valve comprises a ball check valve.

19. The redundant vent of claim 17 wherein the check valve comprises a pressure relief valve.

20. The redundant vent of claim 17 wherein the check valve comprises an adjustable back pressure regulator.

21. A redundant vent for a water-based fire sprinkler system having a pipe network, the redundant vent comprising:

a unitary valve body with a monolithic construction defining a primary valve chamber and a redundant valve chamber;

a primary float valve positioned within the primary valve chamber, the primary float valve and the primary valve chamber forming a primary gas vent; and

a redundant float valve positioned within the redundant valve chamber, the redundant float valve and the redundant valve chamber forming a redundant gas vent;

wherein the primary gas vent is coupled to the redundant gas vent;

wherein the primary gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network; and

wherein the redundant gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network.

22. A redundant vent for a water-based fire sprinkler system having a pipe network, the redundant vent comprising:

a unitary valve body with a monolithic construction defining a primary valve chamber and a redundant valve chamber, wherein the primary and redundant valve chambers are parallel to one another and oriented in a side-by-side configuration;

a primary float valve positioned within the primary valve chamber, the primary float valve and the primary valve chamber forming a primary gas vent; and

a redundant float valve positioned within the redundant valve chamber, the redundant float valve and the redundant valve chamber forming a redundant gas vent;

wherein the primary gas vent is coupled to the redundant gas vent;

wherein the primary gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network;

wherein the redundant gas vent is configured to vent gas but not water from the pipe network when the redundant vent is coupled to the pipe network; and

a solenoid valve configured to selectively prevent discharge of gas from the vent.

Continuity (2)
Provisional Application 62135010 · Mar 18, 2015
Related Publication 20180064976A1 · Mar 8, 2018