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Thermoelectric power generator: Field test at Bottle Rock geothermal power plant.

Authors :
Li, Kewen
Garrison, Geoffrey
Zhu, Yuhao
Moore, Michael
Liu, Changwei
Hepper, Jay
Bandt, Larry
Horne, Roland
Petty, Susan
Source :
Journal of Power Sources. Feb2021, Vol. 485, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

There have been many reports on laboratory experiments measuring TEG (thermoelectric generator) power output at different flow rates of water, different temperatures, and other different conditions, but there have been few field tests utilizing geothermal wells. To this end, we designed a geothermal-TEG apparatus that has a six-layer modularized design to allow expanded power production by increasing the number of layers. After demonstrating the TEG's performance in the laboratory, we tested the apparatus in the field at a well located in the Bottle Rock geothermal field in The Geysers, CA, USA. The whole six-layer TEG device could generate about 500 W electricity with a temperature difference of about 152 °C between the hot and cold fluid manifolds, while each individual TEG chip could generate about 3.9 W. The steam pressure at the inlet of the TEG apparatus was about 122 psi, close to the wellhead pressure of 125 psi. After optimizing the field infrastructure, the TEG device could generate electricity without any leak at the wellhead pressure of 125 psi and the temperature over 176 °C (349 °F). The field test of the six-layer TEG device at Bottle Rock geothermal power plant was considered successful, and plans have begun to design and build a TEG device that could produce power up to 20 kW. • Designed a novel modularized TEG apparatus to allow expanded power production. • Reported an unusual application of TEGs and conducted a field test successfully. • The total power output of the TEG device was more than 500 W at a ΔT of 152 °C. • The voltage and power output of each layer of the TEG device was almost the same. • The field test data of the TEG device followed the trend of the laboratory data. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03787753
Volume :
485
Database :
Academic Search Index
Journal :
Journal of Power Sources
Publication Type :
Academic Journal
Accession number :
147875540
Full Text :
https://doi.org/10.1016/j.jpowsour.2020.229266