IP Library Granted Patent US 8,362,351
Granted Patent B2
US 8,362,351 · App. 12/299,987 · Granted Jan 29, 2013

Module comprising a thermoelectric generator, as well as power source

Inventors: Franklin Hagg (Alkmaar, NL); Bouke Fokkes Tuinstra (Leiden, NL)
Assignee: Stork Fokker AESP B.V.
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Quick Facts
Patent No.
US 8,362,351
App. No.
12/299,987
Granted
Jan 29, 2013
Kind
B2
Abstract

According to a first aspect, the invention relates to a TEG module, in particular for a power source ( 10 ), comprising a space ( 14 ) at least partially delimited by walls ( 16 ), at least one thermoelectric generator ( 20 ) for the conversion of heat into electricity, in which at least one electrically insulated wall part is in thermally conducting contact with a first side ( 52 ) of the thermo-electric generator ( 20 ), and the second side ( 54 ) is in heat-exchanging connection with an electrically insulated discharge element ( 12 ) for discharging heat used by the thermoelectric generator, as well as electrical conductors connected to the first and second side respectively ( 52, 54 ) for the conduction of generated electricity, with thermally conducting pressure means for applying pressure to the said second side being provided between the second side ( 54 ) and the discharge element ( 12 ), the said means comprises a thermally conducting flexible container ( 50 ), which is filled with a pressure medium in a state of over-pressure.

Claims (19)

1. TEG A thermoelectric generator module comprising a space at least partially delimited by walls, at least one thermoelectric generator comprising a plurality of thermoelectric elements and electrical conductors connected to first and second sides, respectively, of the thermoelectric generator for the conduction of electricity generated by the thermoelectric generator for the conversion of heat into electricity, wherein at least one electrically insulated wall part of the space is in thermally conducting contact with the first side of the thermoelectric generator, and wherein the second side of the thermoelectric generator is in heat-exchanging connection with an electrically insulated discharge element for discharging heat used by the thermoelectric generator, with thermally conducting pressure means for applying pressure to the second side, which thermally conducting pressure means is provided between the second side of the thermoelectric generator and the discharge element and contacting the thermoelectric generator, the thermally conducting pressure means comprising a thermally conducting flexible container, which is filled with a pressure medium in a state of overpressure, wherein the thermally conducting flexible container exerts a uniform force against all of the thermoelectric generator.

2. Module according to claim 1 , wherein the flexible container is made of metal foil.

3. Module according to claim 1 , wherein the pressure medium is a thermally conducting fluid.

4. Module according to claim 1 , further comprising control means on or in the thermally conducting flexible container for regulating the pressure of the pressure medium in a state of overpressure in the flexible container.

5. Module according to claim 4 , wherein the control means are equipped for dynamic control of the pressure of the pressure medium in a state of overpressure.

6. Module according to claim 4 , wherein the control means are equipped to keep the pressure medium under a constant pressure.

7. Module according to claim 1 , wherein the pressure of the pressure medium is greater than 2 bar.

8. Power source comprising a combustion chamber at least partially delimited by walls, a thermoelectric generator comprising a plurality of thermoelectric elements and electrical conductors connected to first and second sides, respectively, of the thermoelectric generator for the conductions of electricity generated by the thermoelectric generator for the conversion of energy liberated by combustion into electricity, a burner mounted in the chamber provided with a fuel supply, an air supply for supplying combustion air, as well as an air outlet for discharging combustion gases out of the combustion chamber, wherein at least one electrically insulated wall part of the combustion chamber is in thermally conducting contact with the first side of the thermoelectric generator, and wherein the second side of the thermoelectric generator is in heat-exchanging connection with an electrically insulated discharge element for discharging heat consumed by the thermoelectric generator, with thermally conducting means for applying pressure to the second side of the thermoelectric generator, which thermally conducting pressure means is provided between the second side of the thermoelectric generator and the discharge element and contacting the thermoelectric generator, the thermally conducting pressure means comprising a thermally conducting flexible container, which is filled with a pressure medium in a state of overpressure, wherein the thermally conducting flexible container exerts a uniform force against all of the thermoelectric generator.

9. Power source according to claim 8 , wherein the container is made of metal foil.

10. Power source according to claim 8 , wherein the pressure medium is a thermally conducting fluid.

11. Power source according to claim 8 , further comprising control means on or in the thermally conducting flexible container for regulating the pressure of the pressure medium in a state of overpressure in the flexible container.

12. Power source according to claim 11 , wherein the control means are equipped for dynamic control of the pressure of the pressure medium in a state of overpressure.

13. Power source according to claim 11 , wherein the control means are equipped to keep the pressure medium under a constant pressure.

14. Power source according to claim 8 , wherein the pressure of the pressure medium is greater than 2 bar.

15. Power source according to claim 8 , wherein the discharge element comprises a cooler for forced cooling.

16. Power source according to claim 8 , further comprising a heat recovery section for recovering heat from the combustion gases.

17. An exhaust system of a motor vehicle comprising a thermoelectric generator module according to claim 1 .

18. Module according to claim 1 , wherein the module is for a power source.

19. Power source according to claim 8 , wherein the power source is portable.

Assignments (2)
CHANGE OF NAME Recorded Aug 15, 2011
From: STORK FOKKER AESP B.V.
To: FOKKER AEROSTRUCTURES B.V.
Reel/Frame 026749/0539 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2009
From: HAGG, FRANKLIN; TUINSTRA, BOUKE FOKKES
To: STORK FOKKER AESP B.V.
Reel/Frame 022462/0293 →
Priority Claims (1)
NL 1031817 · May 15, 2006 · national
Continuity (1)
Related Publication 20100116307A1 · May 13, 2010