IP Library Granted Patent US 9,677,709
Granted Patent B2
US 9,677,709 · App. 14/824,110 · Granted Jun 13, 2017

Sub-sea gas recovery system

Inventor: Hans Espedalen (Kongsberg, NO)
Assignee: SIEMENS AKTIENGESELLSCHAFT
F17C1/007E21B41/0007H05K5/068
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Quick Facts
Patent No.
US 9,677,709
App. No.
14/824,110
Granted
Jun 13, 2017
Kind
B2
Abstract

A gas recovery system for sub-sea use includes a sub-sea canister and a gas recovery entity. A bladder arranged within an interior of a housing of the gas recovery entity is configured to receive gas from the sub-sea canister via a pipe when a pressure of the gas exceeds a threshold at a sub-sea site.

Claims (84)

1. A gas recovery system for sub-sea use, the gas recovery system comprising:

a sub-sea canister including a pressurized compartment, the pressurized compartment being configured to house equipment in an ambience filled with gas when the sub-sea canister is positioned at a sub-sea site;

a pipe, connecting the sub-sea canister to a gas recovery entity;

a housing; and

a bladder, arranged within an interior of the housing, the bladder being configured to receive the gas from the sub-sea canister via the pipe when a pressure of the gas inside the pressurized compartment exceeds a threshold at the sub-sea site, wherein the housing of the gas recovery system includes an orifice to fluidly couple an interior of the housing with an outside of the gas recovery entity.

2. The gas recovery system of claim 1 ,

wherein the bladder of the gas recovery entity is at least one of made from a plastic material and is partially filled with oil.

3. The gas recovery system of claim 1 ,

wherein the housing of the gas recovery entity is made from at least one of steel and a plastic material.

4. The gas recovery system of claim 1 ,

wherein a volume of the bladder of the gas recovery entity amounts to ½- 1/20 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

5. A gas recovery system for sub-sea use, the gas recovery system comprising:

a sub-sea canister including a pressurized compartment, the pressurized compartment being configured to house equipment in an ambience filled with gas when the sub-sea canister is positioned at a sub-sea site;

a pipe, connecting the sub-sea canister to a gas recovery entity;

a housing; and

a bladder, arranged within an interior of the housing, the bladder being configured to receive the gas from the sub-sea canister via the pipe when a pressure of the gas inside the pressurized compartment exceeds a threshold at the sub-sea site,

wherein the sub-sea canister further comprises a pressure relief valve coupled via the pipe to the gas recovery entity and further coupled to the pressurized compartment, and

wherein the pressure relief valve is configured to release the gas from the pressurized compartment of the sub-sea canister via the pipe to the bladder of the gas recovery entity if a pressure of the gas inside the pressurized compartment exceeds the threshold being a difference with respect to an ambient pressure at an outside of the gas recovery system.

6. A gas recovery system for sub-sea use, the gas recovery system comprising:

a sub-sea canister including a pressurized compartment, the pressurized compartment being configured to house equipment in an ambience filled with gas when the sub-sea canister is positioned at a sub-sea site;

a pipe, connecting the sub-sea canister to a gas recovery entity;

a housing; and

a bladder, arranged within an interior of the housing, the bladder being configured to receive the gas from the sub-sea canister via the pipe when a pressure of the gas inside the pressurized compartment exceeds a threshold at the sub-sea site,

wherein the sub-sea canister further comprises a valve coupled via the pipe to the gas recovery entity, and

wherein the valve is configured to release the gas from the bladder via the pipe when the gas recovery system is positioned at an above-sea site.

7. The gas recovery system of claim 5 ,

wherein the pressure relief valve and the valve are positioned in a vicinity with respect to each other at a top side of the pressurized compartment.

8. The gas recovery system of claim 6 ,

wherein the sub-sea canister further comprises a further valve coupled to the pressurized compartment, and

wherein the further valve is configured to release the gas from the pressurized compartment when the gas recovery system is positioned at an above-sea site.

9. A method of recovering gas from a pressurized compartment of a sub-sea canister, the method comprising:

selectively opening a pressure relief valve coupled to the pressurized compartment when a pressure of the gas within the pressurized compartment exceeds a threshold and when the sub-sea canister is positioned at a sub-sea site; and

receiving the gas from the sub-sea canister, at a bladder arranged within an interior of a housing of a gas recovery entity, via the pressure relief valve and via a pipe when the pressure relief valve is open.

10. The method of claim 9 , further comprising:

displacing water out of the interior of the housing of the gas recovery entity via an orifice when the bladder expands and receives the gas from the sub-sea canister.

11. The method of claim 9 , further comprising:

opening a valve coupled to the pipe when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the bladder of the gas recovery entity via the pipe and via the valve when the valve is open.

12. The method of claim 11 , further comprising:

opening a further valve coupled to the pressurized compartment when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the pressurized compartment via the further valve when the further valve is open.

13. The method of claim 9 ,

wherein the threshold is a difference with respect to an ambient pressure at an outside of the gas recovery system.

14. A gas recovery entity for sub-sea use at a sub-sea site and connectable to a sub-sea canister via a pipe, the sub-sea canister including a pressurized compartment, the pressurized compartment being configured to house equipment in an ambience filled with gas when the sub-sea canister is positioned at a sub-sea site, the gas recovery entity comprising:

a housing; and

a bladder arranged within an interior of the housing and configured to receive gas from a pressurized compartment of the sub-sea canister via a pipe when a pressure of the gas inside the pressurized compartment exceeds a threshold at the sub-sea site, wherein the housing of the gas recovery entity includes an orifice to fluidly couple an interior of the housing with an outside of the gas recovery entity.

15. The gas recovery system of claim 4 ,

wherein a volume of the bladder of the gas recovery entity amounts to ⅕- 1/15 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

16. The gas recovery system of claim 15 ,

wherein a volume of the bladder of the gas recovery entity amounts to 1/10 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

17. The gas recovery system of claim 1 ,

wherein a volume of the bladder of the gas recovery entity amounts to ½- 1/20 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

18. The gas recovery system of claim 2 ,

wherein a volume of the bladder of the gas recovery entity amounts to ½- 1/20 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

19. The gas recovery system of claim 3 ,

wherein a volume of the bladder of the gas recovery entity amounts to ½- 1/20 of a volume of the pressurized compartment of the sub-sea canister when the gas is received in the bladder.

20. The gas recovery system of claim 6 ,

wherein the pressure relief valve and the valve are positioned in a vicinity with respect to each other at a top side of the pressurized compartment.

21. The gas recovery system of claim 7 ,

wherein the sub-sea canister further comprises a further valve coupled to the pressurized compartment, and

wherein the further valve is configured to release the gas from the pressurized compartment when the gas recovery system is positioned at an above-sea site.

22. The method of claim 10 , further comprising:

opening a valve coupled to the pipe when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the bladder of the gas recovery entity via the pipe and via the valve when the valve is open.

23. The method of claim 10 , further comprising:

opening a further valve coupled to the pressurized compartment when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the pressurized compartment via the further valve when the further valve is open.

24. The method of claim 10 ,

wherein the threshold is a difference with respect to an ambient pressure at an outside of the gas recovery system.

25. The method of claim 11 , further comprising:

opening a further valve coupled to the pressurized compartment when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the pressurized compartment via the further valve when the further valve is open.

26. The method of claim 25 ,

wherein the threshold is a difference with respect to an ambient pressure at an outside of the gas recovery system.

27. The method of claim 9 , wherein the housing of the gas recovery entity includes an orifice to fluidly couple an interior of the housing with an outside of the gas recovery entity.

28. The method of claim 9 , further comprising:

opening a valve coupled to the pressurized compartment when the sub-sea canister is positioned at an above-sea site; and

receiving the gas from the pressurized compartment via the valve when the valve is open.

29. The gas recovery system of claim 5 , wherein the housing includes an orifice to fluidly couple an interior of the housing with an outside of the gas recovery entity.

30. The gas recovery system of claim 5 ,

wherein the bladder of the gas recovery entity is at least one of made from a plastic material and is partially filled with oil.

31. The gas recovery system of claim 6 , wherein the housing includes an orifice to fluidly couple an interior of the housing with an outside of the gas recovery entity.

32. The gas recovery system of claim 6 ,

wherein the bladder of the gas recovery entity is at least one of made from a plastic material and is partially filled with oil.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2021
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS ENERGY AS
Reel/Frame 054975/0655 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2015
From: SIEMENS AS
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 036690/0034 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2015
From: ESPEDALEN, HANS
To: SIEMENS AS
Reel/Frame 036668/0558 →
Priority Claims (1)
EP 14181986 · Aug 22, 2014 · regional
Continuity (1)
Related Publication 20160053940A1 · Feb 25, 2016