Analysis and simulation of ecological environment response of ground source heat pump system under thermal equilibrium
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Published:2024
Issue:2 Part B
Volume:28
Page:1355-1362
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ISSN:0354-9836
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Container-title:Thermal Science
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language:en
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Short-container-title:Therm sci
Author:
Han Xiao1, Miao Lin1, Yang Bicheng2
Affiliation:
1. Department of Art and Media, Hebei Vocational University of Technology and Engineering, Xingtai, Hebei, China + Xingtai Digital Creative Design Industry Technology Research Institute, Hebei Vocational University of Technology and Engineering, Xingtai, Hebei, China 2. Department of Architecture and Civil Engineering, Hebei Vocational University of Technology and Engineering, Xingtai, Hebei, China
Abstract
This work is designed to study the thermodynamic equations of groundwater
source heat pump in hot summer and cold winter, and to determine the optimal
operating conditions of groundwater source heat pump by means of the
thermodynamic analysis of source heat pump, flow, unit, pump power,
evaporation side and condensation side. Practice has proved that the
equipment runs stably and with high efficiency. By comparison, the ground
source heat exchangers were compared with conventional chillers and boiler.
The results showed that the underground heat pump had higher energy
consumption, lower primary energy consumption, reduced CO2 emissions, and
reduced environmental pollution during operation, proving that the
underground heat pump had obvious advantages over the conventional cooling
and heating system. Meanwhile, this also shows that the long-term operation
of ground heating system has caused the instability of ground heating
system, the accumulation of cold and heat in ground-water, and the variation
of ground temperature, which not only reduces the system efficiency, but it
also affects the physical properties of soil itself and the soil heat flow,
and will also cause changes in soil microbial environment and vegetation
ecological environment, thus affecting the whole ecological environment.
Publisher
National Library of Serbia
Reference10 articles.
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