Research Article

Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators

Volume: 7 Number: 1 May 31, 2024
EN

Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators

Abstract

Heat recovery using a series of thermoelectric generator (TEG) samples improved and studied previously is investigated in this paper. For this, such TEGs are connected to the accumulating tanks (ATs) of a geothermal central heating system assisted by natural gas to recover all waste heat from those devices. The study was carried out based on energy and exergy analysis. In the energy analysis part of the study, the proposed energy conversion efficiency of the TEG sample for the temperature difference in an AT-TEG system in this current study, which is 2%, was applied to find power output and energetic efficiency. As a result, total net power production was 9.888 kW, while overall energy efficiency was 7.717%. It can be observed that this amount of net power generation is sufficient to supply 61.262% of the electrical power needed for the circulating pumps in the remaining parts of the central heating system. This research reveals that TEG application in heat recovery is a promising way forward, but there is still a need to enhance the conversion efficiency of such devices.

Keywords

References

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Details

Primary Language

English

Subjects

Mechanical Engineering

Journal Section

Research Article

Early Pub Date

May 31, 2024

Publication Date

May 31, 2024

Submission Date

June 5, 2022

Acceptance Date

April 8, 2023

Published in Issue

Year 2024 Volume: 7 Number: 1

APA
Şahmerdan, O., & Tıkız, İ. (2024). Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators. Kocaeli Journal of Science and Engineering, 7(1), 20-29. https://doi.org/10.34088/kojose.1126357
AMA
1.Şahmerdan O, Tıkız İ. Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators. KOJOSE. 2024;7(1):20-29. doi:10.34088/kojose.1126357
Chicago
Şahmerdan, Orhan, and İsmet Tıkız. 2024. “Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators”. Kocaeli Journal of Science and Engineering 7 (1): 20-29. https://doi.org/10.34088/kojose.1126357.
EndNote
Şahmerdan O, Tıkız İ (May 1, 2024) Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators. Kocaeli Journal of Science and Engineering 7 1 20–29.
IEEE
[1]O. Şahmerdan and İ. Tıkız, “Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators”, KOJOSE, vol. 7, no. 1, pp. 20–29, May 2024, doi: 10.34088/kojose.1126357.
ISNAD
Şahmerdan, Orhan - Tıkız, İsmet. “Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators”. Kocaeli Journal of Science and Engineering 7/1 (May 1, 2024): 20-29. https://doi.org/10.34088/kojose.1126357.
JAMA
1.Şahmerdan O, Tıkız İ. Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators. KOJOSE. 2024;7:20–29.
MLA
Şahmerdan, Orhan, and İsmet Tıkız. “Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators”. Kocaeli Journal of Science and Engineering, vol. 7, no. 1, May 2024, pp. 20-29, doi:10.34088/kojose.1126357.
Vancouver
1.Orhan Şahmerdan, İsmet Tıkız. Energy and Exergy Analysis of Heat Recovery from the Accumulating Tanks of a Central Heating System by Employing a Sample of Thermoelectric Generators. KOJOSE. 2024 May 1;7(1):20-9. doi:10.34088/kojose.1126357