A Novel Design of Thermoelectric Generator for Automotive Waste Heat Recovery
Author:
Funder
University of Nottingham
Publisher
Springer Science and Business Media LLC
Subject
Automotive Engineering
Link
http://link.springer.com/article/10.1007/s42154-018-0006-z/fulltext.html
Reference37 articles.
1. Karvonen, M., Kapoor, R., Uusitalo, A., et al.: Technology competition in the internal combustion engine waste heat recovery: a patent landscape analysis. J. Clean. Prod. 112, 3735–43 (2016)
2. Twaha, S., Zhu, J., Yan, Y., et al.: A comprehensive review of thermoelectric technology: materials, applications, modelling and performance improvement. Renew. Sust. Energy Rev. 65, 698–726 (2016)
3. Twaha, S., Zhu, J., Yan, Y., et al.: Performance analysis of thermoelectric generator using dc–dc converter with incremental conductance based maximum power point tracking. Energy. Sustain. Dev. 37, 86–98 (2017)
4. Agudelo, A.F., Garcia-Contreras, R., Agudelo, J.R., et al.: Potential for exhaust gas energy recovery in a diesel passenger car under European driving cycle. Appl. Energy 174, 201–12 (2016)
5. Stevens, R.J., Weinstein, S.J., Kocipula, K.S.: Theoretical limits of thermoelectric power generation from exhaust gases. Appl. Energy 133, 80–8 (2014)
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