IP Library Granted Patent US 7,575,017
Granted Patent B2
US 7,575,017 · App. 11/544,429 · Granted Aug 18, 2009

Wet barrel fire hydrant system with second valve

Assignee: Davidson Hydrant Technologies, Inc.
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Quick Facts
Patent No.
US 7,575,017
App. No.
11/544,429
Granted
Aug 18, 2009
Kind
B2
Abstract

Wet barrel fire hydrants which feature additional structure for reducing the potential that those with ill intent can foul municipal water supplies by introducing toxins or other materials into fire hydrants. Various embodiments include valves which close off portions of the hydrant or water conduit otherwise available for receipt of toxic or other materials when the fire hydrant nozzle cap is unscrewed and open and/or a pump is connected to the nozzle. Such valves preferably open automatically when water is flowing from the water supply through the nozzle, but close off portions of the barrel when the nozzle is open and water is not flowing through the nozzle.

Claims (66)

1. A wet barrel fire hydrant system, comprising:

a water conduit adapted to allow water to flow through the water conduit;

a barrel adapted to communicate at least indirectly with the water conduit, the barrel comprising a breakaway structure;

a nozzle extending from the barrel and communicating with the barrel;

a hydrant valve adapted to controllably restrict communication between the nozzle and the barrel;

a valve actuator adapted to allow actuation of the hydrant valve, said actuator comprising an actuator rod; and

a globe comprising a second valve, the second valve comprising:

a stem comprising an enlarged diameter portion having a diameter at least larger than other portions of the stem;

a spring; and

a restriction member adapted to cooperate with the stem, spring and a seat to substantially prevent liquids from flowing in a first direction and allow liquids to flow in a second direction.

2. The wet barrel fire hydrant system of claim 1 , wherein the seat is a lower portion of the globe.

3. The wet barrel fire hydrant system of claim 1 , wherein the seat is connected to the barrel.

4. The wet barrel fire hydrant system of claim 1 , wherein the restriction member is substantially disc shaped.

5. The wet barrel fire hydrant system of claim 1 , wherein the spring is adapted to push downward on the restriction member.

6. The wet barrel fire hydrant system of claim 1 , wherein the stem enlarged diameter portion limits the movement of the restriction member.

7. The wet barrel fire hydrant system of claim 1 , wherein the second valve further comprises a connection member for connecting the stem to the globe.

8. The wet barrel fire hydrant system of claim 1 , wherein the globe is adapted to be retrofitted into the fire hydrant.

9. The wet barrel fire hydrant system of claim 1 , wherein the breakaway structure comprises a traffic feature.

10. The wet barrel fire hydrant system of claim 1 , wherein the second valve is at least partially located within the water conduit.

11. The wet barrel fire hydrant system of claim 1 , wherein the water conduit comprises the globe and the second valve is at least partially located within the globe.

12. The wet barrel fire hydrant system of claim 1 , wherein the second valve further comprises an “O” ring interposed between the seat and the restriction member.

13. The wet barrel fire hydrant system of claim 1 ,

wherein the barrel further comprises an upper barrel portion at or above the breakaway structure and a lower barrel portion at or below the breakaway structure; and

wherein the globe is located between the upper and lower barrel portions.

14. A wet barrel fire hydrant, comprising:

a. a water conduit adapted to allow water to flow through the water conduit from a water main;

b. a barrel adapted to communicate with a water conduit, the barrel comprising a breakaway structure and a globe;

c. a nozzle extending from the barrel and communicating with the barrel;

d. a hydrant valve adapted to controllably restrict communication between the barrel and the nozzle;

e. a valve actuator adapted to allow actuation of the hydrant valve, said actuator comprising an actuator rod;

f. an operating nut in communication with the actuator rod and located on substantially opposite the nozzle for opening and closing the hydrant valve; and

g. a second valve located in the globe and adapted to be closed when the hydrant valve is closed, but to permit flow of water from the water main to the nozzle when the hydrant valve is at least partially open and the nozzle is at least partially open.

15. The wet barrel fire hydrant of claim 14 , wherein the breakaway structure comprises a traffic feature.

16. The wet barrel fire hydrant of claim 14 in which the second valve is adapted to be closed when the hydrant valve is closed, but not necessarily open when the hydrant valve is open.

17. The wet barrel fire hydrant of claim 14 , wherein the second valve comprises:

a stem comprising an enlarged diameter portion having a diameter larger than other portions of the stem;

a spring; and

a restriction member adapted to cooperate with the stem, spring and a seat to prevent liquids or other materials from flowing in a first direction and allow liquids to flow in a second direction.

18. The wet barrel fire hydrant of claim 17 , wherein the second valve further comprises an “O” ring interposed between the seat and the restriction member.

19. The wet barrel fire hydrant of claim 17 , wherein the seat is a lower portion of the globe.

20. The wet barrel fire hydrant of claim 17 , wherein the seat is connected to the barrel.

21. The wet barrel fire hydrant of claim 17 , wherein the second valve further comprises a connection member for connecting the stem to the globe.

22. The wet barrel fire hydrant of claim 17 , wherein the spring is adapted to push downward on the restriction member.

23. The wet barrel fire hydrant of claim 14 ,

wherein the barrel further comprises an upper barrel portion at or above the breakaway structure and a lower barrel portion at or below the breakaway structure; and

wherein the globe is located between the upper and lower barrel portions.

24. A wet barrel fire hydrant system, comprising:

a. a water conduit adapted to allow water to flow through the water conduit from a water main, the water conduit comprising a globe;

b. a barrel adapted to communicate with a water conduit, the barrel comprising a breakaway structure;

c. a nozzle extending from the barrel and communicating with the barrel;

d. a hydrant valve adapted to controllably restrict communication between the barrel and the nozzle;

e. a valve actuator adapted to allow actuation of the hydrant valve, said actuator comprising an actuator rod;

f. an operating nut in communication with the actuator rod and located on substantially opposite the nozzle for opening and closing the hydrant valve; and

g. a second valve located in the globe and adapted to be closed when the hydrant valve is closed, but to permit flow of water from the water main to the nozzle when the hydrant valve is at least partially open and the nozzle is at least partially open.

25. The wet barrel fire hydrant system of claim 24 , wherein the second valve further comprises a connection member for connecting the stem to the globe.

26. The wet barrel fire hydrant system of claim 24 , wherein the globe is adapted to be retrofitted into the fire hydrant.

27. A wet barrel fire hydrant system, comprising:

a water conduit adapted to allow water to flow through the water conduit;

a barrel adapted to communicate at least indirectly with the water conduit, the barrel comprising a breakaway structure;

a nozzle extending from the barrel and communicating with the barrel;

a hydrant valve adapted to controllably restrict communication between the nozzle and the barrel;

a valve actuator adapted to allow actuation of the hydrant valve, said actuator comprising an actuator rod; and

a globe comprising a second valve, the second valve comprising:

a stem comprising an enlarged diameter portion having a diameter at least larger than other portions of the stem;

a spring; and

a restriction member adapted to cooperate with the stem, spring and a seat to substantially prevent liquids from flowing toward a water main and allow liquids to flow from the water main to the nozzle.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2008
From: ROSE, MATTHEW JESSE
To: DAVIDSON HYDRANT TECHNOLOGIES, INC.
Reel/Frame 021461/0107 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2008
From: DAVIDSON, TOM R., SR.; WALDEN, DAVID MICHAEL; FERRARI, ANTHONY; SIMS, O. G.
To: DAVIDSON HYDRANT TECHNOLOGIES, INC.
Reel/Frame 021049/0922 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 5, 2008
From: PHILLIPS, DAVID
To: DAVIDSON HYDRANT TECHNOLOGIES
Reel/Frame 021049/0992 →
Continuity (1)
Related Publication 20080083458A1 · Apr 10, 2008