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2019 | OriginalPaper | Buchkapitel

Identification and Inquisition of Thermoelectric Generator Unit for Efficient Waste Heat Recovery

verfasst von : Abhishek Khanchi, Harkirat Sandhu, Mani Kanwar Singh, Satbir S. Sehgal, Bharat Bajaj

Erschienen in: Advances in Fluid and Thermal Engineering

Verlag: Springer Singapore

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Abstract

A Peltier device or thermoelectric generator is a solid-state semiconductor device which works on the principle of thermoelectric effect or Seebeck effect and has an inherent capability to convert heat flux directly into an EMF. Thermoelectric effect which is a result of having a physical contact between two dissimilar conductors with the presence of temperature difference across its ends is further enhanced by effective use of semiconductor materials for its fabrication. Its potential to harness low-grade waste has attracted a lot of attention of various researchers worldwide. Thermoelectric effect is difficult to maintain for longer period of time because of its continuous and consistent dependence on temperature difference across its surfaces. Early experiments indicated possibility of heat leakages within the module itself, which could have been causing drop in temperature difference along with working efficiency. The objective of this experimentation is to identify possibility of heat leakages and its possible effects (if any) on its efficiency. Two different positions were used, for the first one heat input surface was upside (hot side up) and second with heat input from below (Hot side down). This change in position will affect the convective motion of trapped air molecules and effect (if any) could be noticed. Results showed that heat transfer rate was more for hot side down with 0.22% more voltage output, 0.44% more power output, and 0.521% increment in Seebeck coefficient.

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Literatur
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Zurück zum Zitat Ding LC, Meyerheinrich N, Tan L (2017) Thermoelectric power generation from waste heat of natural gas water heater. Energy Procedia 1:1032–1037 Ding LC, Meyerheinrich N, Tan L (2017) Thermoelectric power generation from waste heat of natural gas water heater. Energy Procedia 1:1032–1037
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Zurück zum Zitat Liu C, Chen P, Li K (2014) A 1 kW thermoelectric generator for low-temperature geothermal resources. In: Thirty-ninth workshop on geothermal reservoir engineering, Stanford University, Stanford, California, 24–26 February 2014 SGP-TR-202 Liu C, Chen P, Li K (2014) A 1 kW thermoelectric generator for low-temperature geothermal resources. In: Thirty-ninth workshop on geothermal reservoir engineering, Stanford University, Stanford, California, 24–26 February 2014 SGP-TR-202
4.
Zurück zum Zitat Singh B, Remeli F, Oberoi A (2014) Electrical power generation from low grade heat of salinity gradient solar pond using thermoelectric generators. In: Proceedings of the 52nd annual conference, Australian Solar Energy Society (Australian Solar Council), Melbourne. ISBN: 948-0-646-92219-5 Singh B, Remeli F, Oberoi A (2014) Electrical power generation from low grade heat of salinity gradient solar pond using thermoelectric generators. In: Proceedings of the 52nd annual conference, Australian Solar Energy Society (Australian Solar Council), Melbourne. ISBN: 948-0-646-92219-5
5.
Zurück zum Zitat Singh B, Varthani J, Remeli MF (2013) Experimental investigation of power generation from salinity gradient solar pond using thermoelectric generators for renewable energy application. Appl Mech Mater 393:809–814CrossRef Singh B, Varthani J, Remeli MF (2013) Experimental investigation of power generation from salinity gradient solar pond using thermoelectric generators for renewable energy application. Appl Mech Mater 393:809–814CrossRef
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Zurück zum Zitat Tan L, Singh R, Date A (2011) Thermal performance of two-phase closed thermosyphon in application of concentrated thermoelectric power generator using phase change material thermal storage. Front Heat Pipes. https://doi.org/10.5098/fhp. v2.4.3001 Tan L, Singh R, Date A (2011) Thermal performance of two-phase closed thermosyphon in application of concentrated thermoelectric power generator using phase change material thermal storage. Front Heat Pipes. https://​doi.​org/​10.​5098/​fhp. v2.4.3001
Metadaten
Titel
Identification and Inquisition of Thermoelectric Generator Unit for Efficient Waste Heat Recovery
verfasst von
Abhishek Khanchi
Harkirat Sandhu
Mani Kanwar Singh
Satbir S. Sehgal
Bharat Bajaj
Copyright-Jahr
2019
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-13-6416-7_29

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