Energy and Exergy Analysis of a Photovoltaic-Thermal Geothermal Heat Pump Coupled with Radiant Ceiling and Fresh Air System

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Lin, Y ORCID logoORCID: https://orcid.org/0000-0002-8673-3736, Bu, Z, Yang, Wei ORCID logoORCID: https://orcid.org/0000-0002-3673-6488, Chan, Melissa ORCID logoORCID: https://orcid.org/0000-0003-1589-6850, Tian, Lin ORCID logoORCID: https://orcid.org/0000-0002-7779-1926 and Dai, M (2025) Energy and Exergy Analysis of a Photovoltaic-Thermal Geothermal Heat Pump Coupled with Radiant Ceiling and Fresh Air System. Energies, 18 (11). ISSN 1996-1073

Abstract

This paper presents energy and exergy studies on a photovoltaic-thermal solar-assisted geothermal heat pump coupled with a radiant ceiling system. The system utilizes renewable solar and geothermal energy. It has an independent fresh air unit that provides clean air to the space. The computer model of the system was developed under the TRNSYST environment and validated with experimental results from open literature. Distribution of the energy consumption and exergy loss of the system were analyzed. It was found that the heat pump unit consumes the largest amount of energy while the transmission and distribution system has the highest exergy loss. Under optimized operating conditions, i.e., both demand side circulation flow and source side circulation flow are maintained at 65% of the design flow rate (design loop water temperature difference of 7.0 °C), the average exergy efficiency of the whole system was found to be 37.56%, which achieves an accumulative exergy loss reduction of 16.5% compared with 100% design flow rate condition during cooling season. The optimal bearing load ratio of the ground source heat pump vs. photovoltaic-thermal system in the heating season was found to be 67%.

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Item type Article
URI https://vuir.vu.edu.au/id/eprint/50387
DOI 10.3390/en18112715
Official URL https://doi.org/10.3390/en18112715
Subjects Current > Division/Research > College of Science and Engineering
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