Thermoelectric heat pump

US9719701B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9719701-B2
Application numberUS-201414220556-A
CountryUS
Kind codeB2
Filing dateMar 20, 2014
Priority dateJun 3, 2008
Publication dateAug 1, 2017
Grant dateAug 1, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

In certain embodiments, a thermoelectric heat pump includes a heat transfer region having an array of thermoelectric modules, a waste channel in substantial thermal communication with a high temperature portion of the heat transfer region, and a main channel in substantial thermal communication with a low temperature portion of the heat transfer region. An enclosure wall provides a barrier between fluid in the waste channel and fluid in the main channel throughout the interior of the thermoelectric heat pump. In some embodiments, the waste fluid channel and the main fluid channel are positioned and shaped such that differences in temperature between fluids disposed near opposite sides of the enclosure wall are substantially decreased or minimized at corresponding positions along the channels.

First claim

Opening claim text (preview).

What is claimed is: 1. An assembly for a thermoelectric heat pump used to cool an enclosed space, the assembly comprising: an enclosure comprising a main side inlet, a main side outlet, a waste side inlet, and a waste side outlet; a first thermoelectric module comprising a main side heat exchanger and a waste side heat exchanger; and a stream divider assembly disposed within the enclosure, the stream divider assembly comprising a waste side channel and a main side channel configured to direct a waste fluid stream in counter flow to and separate from a main fluid stream, the waste side channel configured to direct the waste fluid stream from the waste side inlet through the waste side heat exchanger to the waste side outlet, and the main side channel configured to direct the main fluid stream from the main side inlet through the main side heat exchanger to the main side outlet, wherein the waste fluid stream remains in counter flow to the main fluid stream from the waste side inlet through the waste side heat exchanger to the waste side outlet, and wherein the main fluid stream remains in counter flow to the waste fluid stream from the main side inlet through the main side heat exchanger to the main side outlet, and wherein, when the assembly is installed for the thermoelectric heat pump to cool the enclosed space, the main side inlet and the main side outlet are positioned inside the enclosed space, and the waste side inlet and the waste side outlet are positioned outside the enclosed space. 2. The assembly of claim 1 , wherein the main side inlet and the main side outlet are positioned on a main side of the assembly, and the waste side inlet and the waste side outlet are positioned on a waste side of the assembly, and wherein a plane that is between the main and waste sides of the assembly extends through the assembly parallel to a direction of the counter flow of the waste and main fluid streams. 3. The assembly of claim 1 , wherein: the main side inlet and the main side outlet are positioned on a main side of the assembly, and the waste side inlet and the waste side outlet are positioned on a waste side of the assembly, and when the assembly is installed for the thermoelectric heat pump to cool the enclosed space, the assembly is positioned in a wall of the enclosed space such that the wall extends along a plane that is between the main and waste sides of the assembly, the wall separating exhaust of the waste side channel from intake of the main side channel to substantially prevent the waste fluid stream from entering the main side channel. 4. The assembly of claim 1 , further comprising a second thermoelectric module comprising a main side heat exchanger, wherein the first and second thermoelectric modules are oriented such that the main side heat exchanger of the first thermoelectric module and the main side heat exchanger of the second thermoelectric module face towards one another. 5. The assembly of claim 4 , wherein the second thermoelectric module comprises a waste side heat exchanger, and the waste side channel comprises a plurality of waste side channels, and wherein the stream divider assembly is configured to divide the waste fluid stream received through the waste side inlet into the plurality of waste side channels through the waste side heat exchangers of the first and second thermoelectric modules to the waste side outlet, wherein the stream divider assembly is configured to divide the waste fluid stream into the plurality of waste side channels upstream of the waste side heat exchangers with respect to a flow direction of the waste fluid stream. 6. The assembly of claim 5 , further comprising a third thermoelectric module comprising a waste side heat exchanger, wherein the second and third thermoelectric modules are oriented such that the waste side heat exchanger of the second thermoelectric module and the waste side heat exchanger of the third thermoelectric module face towards one another. 7. The assembly of claim 6 , wherein the third thermoelectric module comprises a main side heat exchanger, and the main side channel comprises a plurality of main side channels, and wherein the stream divider assembly is configured to divide the main fluid stream received through the main side inlet into the plurality of main side channels through the main side heat exchangers of the first, second, and third thermoelectric modules to the main side outlet. 8. The assembly of claim 1 , further comprising: a first fan operatively connected to provide flow of the waste fluid stream in the waste side channel; and a second fan operatively connected to provide flow of the main fluid stream in the main side channel in an opposite direction of the flow of the waste fluid stream in the waste side channel. 9. The assembly of claim 1 , wherein the main side inlet on a first end of the assembly is substantially symmetric to the main side outlet on a second end of the assembly opposite the first end, and the waste side outlet on the first end of the assembly is substantially symmetric to the waste side inlet on the second end of the assembly. 10. A thermoelectric heat pump comprising: an enclosure comprising a main inlet, a main outlet, a waste inlet, and a waste outlet; a plurality of thermoelectric modules each comprising a main junction and a waste junction; and a stream divider assembly connected to the enclosure, the stream divider assembly comprising a waste channel and a plurality of main channels configured to direct a waste fluid stream in counter flow to a main fluid stream, the waste channel configured to direct the waste fluid stream from the waste inlet through waste junctions of the plurality of thermoelectric modules to the waste outlet, and the plurality of main channels configured to divide the main fluid stream from the main inlet through main junctions of the plurality of thermoelectric modules and to combine the main fluid stream from the main junctions to the main outlet, wherein the waste fluid stream remains in counter flow to the main fluid stream from the waste inlet through the waste junctions of the plurality of thermoelectric modules toward the waste outlet. 11. The thermoelectric heat pump of claim 10 , wherein the plurality of thermoelectric modules are oriented such that at least two of the waste junctions face towards one another. 12. The thermoelectric heat pump of claim 10 , wherein the waste channel comprises a plurality of waste channels, and wherein the plurality of waste channels are configured to divide the waste fluid stream from the waste inlet through the waste junctions of the plurality of thermoelectric modules and to combine the waste fluid stream from the waste junctions to the waste outlet, wherein the stream divider assembly divides the waste fluid stream into the plurality of waste channels upstream of the waste junctions with respect to flow direction of the waste fluid stream. 13. The thermoelectric heat pump of claim 12 , wherein the plurality of thermoelectric modules are oriented such that at least two of the main junctions face towards one another between at least two of the plurality of waste channels. 14. The thermoelectric heat pump of claim 12 , wherein the plurality of waste channels are symmetric about the plurality of thermoelectric modules along a direction of the counter flow of the waste and main fluid streams, and wherein the plurality of main channels are symmetric about the plurality of thermoelectric modules along the direction of the counter flow of the waste and main fluid streams. 15. The thermoelectric heat pump of claim 10 , wherein, when the thermoelectr

Assignees

Inventors

Classifications

  • F25B21/02Primary

    using Peltier effect; using Nernst-Ettinghausen effect · CPC title

  • Heat exchanger or boiler making · CPC title

  • by a gas · CPC title

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Frequently asked questions

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What does patent US9719701B2 cover?
In certain embodiments, a thermoelectric heat pump includes a heat transfer region having an array of thermoelectric modules, a waste channel in substantial thermal communication with a high temperature portion of the heat transfer region, and a main channel in substantial thermal communication with a low temperature portion of the heat transfer region. An enclosure wall provides a barrier betw…
Who is the assignee on this patent?
Gentherm Inc
What technology area does this patent fall under?
Primary CPC classification F25B21/02. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Aug 01 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).