Potential applications of thermoelectric generators (TEGs) in various waste heat recovery systems

Потенциальные применения термоэлектрических генераторов (ТЭГ) в различных системах утилизации сбросного тепла
A.G. Olabi, Mohammed Al-Murisi, Hussein M. Maghrabie, Bashria A.A. Yousef, Enas Taha Sayed, Abdul Hai Alami, Mohammad Ali Abdelkareem
2022-11-01

Seebeck effectenergy harvestingthermoelectric generatorsthermoelectric materialswaste heat recovery
Nowadays the World faces critical issues, such as increasing population, power costs, and global warming. In this respect, scientists are trying to improve the efficiency of the energy harvesting. The enhancement of power generation sectors is focused on the waste heat recovery systems based on thermoelectric generators (TEGs) that have demonstrated the capacity to transfer thermal energy directly into electric energy via the Seebeck effect. TEG uses the available waste heat sources in different applications to produce power, thus it considered as an eco-friendly power source. In the present study, the integration of thermoelectric systems with other technologies for green power production is introduced. This work introduces a background about the common materials used in the fabrication of the TEG devices. Furthermore, the application of the TEG to harvest waste heat from different sources, i.e., fuel cells, heat exchangers, photovoltaics, internal combustion engine, electric vehicles, and hybrid waste heat recovery systems have been summarized. The characteristics of thermoelectric generators are discussed, considering the different operating and design parameters. Finally, the barriers and challenges facing the applications of the thermoelectric generators for waste heat recovery are also discussed.
1
Applications are summarized across fuel cells, heat exchangers, photovoltaics, internal combustion engines, electric vehicles, and hybrid recovery systems.
2
Common thermoelectric materials and the effects of operating and design parameters on generator characteristics are discussed.
3
The review identifies barriers and challenges that limit broader thermoelectric-generator deployment for waste heat recovery.
4
The study reviews integrating thermoelectric systems with other technologies for green power production and waste heat recovery.
5
Thermoelectric generators convert waste heat directly into electricity through the Seebeck effect, offering an eco-friendly energy-harvesting approach.

Thermoelectric generator (TEG)-based waste heat recovery systems integrated with fuel cells, heat exchangers, photovoltaics, internal combustion engines, electric vehicles, and hybrid systems

Applications, operating and design characteristics, power-generation performance, and implementation barriers of TEGs for converting waste heat into electricity

Publication Details
Publication Date
2022-11-01
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Authors
A.G. Olabi
Mohammed Al-Murisi
Hussein M. Maghrabie
Bashria A.A. Yousef
Enas Taha Sayed
Abdul Hai Alami
Mohammad Ali Abdelkareem
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