Published January 2014 | Version public
Journal Article

Towards high efficiency segmented thermoelectric unicouples

Abstract

Segmentation of thermoelectric (TE) materials is a widely used solution to improve the efficiency of thermoelectric generators over a wide working temperature range. However, the improvement can only be obtained with appropriate material selections. In this work, we provide an overview of the theoretical efficiency of the best performing unicouples designed from segmenting the state-of-the-art TE materials. The efficiencies are evaluated using a 1D numerical model which includes all thermoelectric effects, heat conduction, Joule effects and temperature dependent material properties, but neglects contact resistance and heat losses. The calculations are performed for a fixed cold side temperature of 300 K and different hot side temperatures of 700, 900, and 1100 K. We confirm that without taking into account the compatibility of TE materials, segmentation can even decrease the total efficiency. Choosing the TE materials carefully, one is, however, rewarded by a significant improvement in the total efficiency.

Additional Information

© 2013 WILEY-VCH Verlag GmbH & Co. Received 19 July 2013, revised 3 October 2013, accepted 16 October 2013. Published online 22 November 2013. The authors acknowledge the support from Copenhagen Cleantech Cluster for the research work (in the project 48062 X-CCC) and the Programme Commisssion on Energy and Environment (EnMi), which is part of the Danish Council for Strategic Research (Contract No. 10-093971), for sponsoring the research of the OTE-Power Project.

Additional details

Identifiers

Eprint ID
44488
Resolver ID
CaltechAUTHORS:20140325-080929850

Funding

Copenhagen Cleantech Cluster project
48062 X-CCC
Programme Commisssion on Energy and Environment (EnMi)
Danish Council for Strategic Research
10-093971

Dates

Created
2014-03-25
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Updated
2021-11-10
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