IP Library Granted Patent US 9,657,551
Granted Patent B2
US 9,657,551 · App. 14/473,285 · Granted May 23, 2017

Thermal component temperature management system and method

Inventors: Joe Marzouk (Conroe, TX); Michael Fripp (Carrollton, TX); Adan Hernandez Herrera (Houston, TX)
Assignee: HALLIBURTON ENERGY SERVICES, INC.
E21B36/001E21B36/00E21B47/011
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,657,551
App. No.
14/473,285
Granted
May 23, 2017
Kind
B2
Abstract

A downhole tool includes a temperature sensitive component. The temperature of the temperature sensitive component is at least partially controlled by a temperature management system thermally coupled to the temperature sensitive component. The temperature management system may include a cold plate thermally coupled to the temperature sensitive component, a hot plate thermally coupled to the cold plate, and a thermo-electrical converter system thermally coupled to the hot plate and to the body of the downhole tool, wherein the thermo-electrical converter system comprises two membrane electrode assemblies.

Claims (31)

1. A downhole tool, comprising:

a body;

a temperature sensitive component housed within the body;

a cold plate thermally coupled to the temperature sensitive component;

a hot plate thermally coupled to the cold plate; and

a thermo-electrical converter system housed entirely within the body and thermally coupled to the hot plate and to the body of the downhole tool, wherein the thermo-electrical converter system comprises two membrane electrode assemblies.

2. The downhole tool of claim 1 , wherein the two membrane electrode assemblies are operable, when an electrical current is applied thereto, to pump an ionizable gas so that heat is moved from one end of the thermo-electrical converter system to another.

3. The downhole tool of claim 2 , wherein the ionizable gas includes at least one of: hydrogen, oxygen, and sodium.

4. The downhole tool of claim 1 , wherein the cold plate and the hot plate are thermally coupled by a circulation system comprising a conduit, a working fluid, and a pump.

5. The downhole tool of claim 4 , wherein the circulation system further comprises at least two valves, and wherein closing the valves and deactivating the pump thermally decouples the hot plate from the cold plate.

6. A downhole tool, comprising:

a body;

a temperature sensitive component housed within the body;

a cold plate thermally coupled to the temperature sensitive component;

a hot plate thermally coupled to the cold plate; and

a thermo-electrical converter system thermally coupled to the hot plate and to the body of the downhole tool,

wherein the thermo-electrical converter system comprises two membrane electrode assemblies, and

wherein the cold plate and the hot plate are thermally coupled by a circulation system comprising a conduit, a working fluid, and a pump.

7. The downhole tool of claim 6 , wherein the circulation system further comprises at least two valves, and wherein closing the valves and deactivating the pump thermally decouples the hot plate from the cold plate.

8. The downhole tool of claim 6 , wherein the thermo-electrical converter system is housed entirely within the body.

9. The downhole tool of claim 6 , wherein the two membrane electrode assemblies are operable, when an electrical current is applied thereto, to pump an ionizable gas so that heat is moved from one end of the thermo-electrical converter system to another.

10. The downhole tool of claim 9 , wherein the ionizable gas includes at least one of: hydrogen, oxygen, and sodium.

11. A downhole tool, comprising:

a body;

a temperature sensitive component housed within the body;

a cold plate thermally coupled to the temperature sensitive component;

a hot plate thermally coupled to the cold plate; and

a thermo-electrical converter system thermally coupled to the hot plate and to the body of the downhole tool, wherein the thermo-electrical converter system comprises two membrane electrode assemblies operable, when an electrical current is applied thereto, to pump an ionizable gas so that heat is moved from one end of the thermo-electrical converter system to another.

12. The downhole tool of claim 11 , wherein the ionizable gas includes at least one of: hydrogen, oxygen, and sodium.

13. The downhole tool of claim 11 , wherein the cold plate and the hot plate are thermally coupled by a circulation system comprising a conduit, a working fluid, and a pump.

14. The downhole tool of claim 13 , wherein the circulation system further comprises at least two valves, and wherein closing the valves and deactivating the pump thermally decouples the hot plate from the cold plate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2017
From: MARZOUK, JOE; FRIPP, MICHAEL; HERRERA, ADAN HERNANDEZ
To: HALLIBURTON ENERGY SERVICES, INC.
Reel/Frame 041047/0834 →
Continuity (3)
Division 13266669
Provisional Application 61172995 · Apr 27, 2009
Related Publication 20140367166A1 · Dec 18, 2014