工业建筑恒温恒湿空调地源热泵系统性能分析:案例研究

S S Du, Y Cui, Q H Sun, Y. Deng, X W Zhang
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摘要

地源热泵(GSHP)系统因其为建筑物提供高效且环境可持续的冷却和加热解决方案而广受欢迎。虽然 GSHP 系统的性能引起了人们的极大关注,但研究主要集中在住宅和办公建筑上,对其在有恒温恒湿空调需求的工业环境中的适用性还缺乏了解。本研究旨在通过评估位于中国夏热冬冷地区(HSCW)的一家卷烟厂内实施的混合式地源热泵(HGSHP)系统的性能来填补这一空白。通过对三种冷却条件下的运行数据进行综合分析和长期监测,考察了包括水温特性、室内温湿度、系统效率、功耗和土壤温度分布在内的基本参数。研究结果表明,热泵的加权平均性能系数(COPhp)和整个系统的加权平均性能系数(COPsys)分别从 5.05 降至 4.32 和 3.32 降至 2.89。低制冷负荷、高能耗和低 COP 之间呈正相关。冷凝器的入口温度呈下降趋势,这与冷凝热回收的间歇运行有关。此外,还对受控房间内的室内温度和湿度分布进行了综合分析,发现该系统所服务的几乎所有房间都符合规定的设计要求。这项研究有助于进一步了解 HGSHP 系统在工业环境中的可行性,并为提高其能效和整体性能提供了宝贵的参考。
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Performance analysis of ground source heat pump systems for constant temperature and humidity air conditioning in industrial buildings: a case study
The ground source heat pump (GSHP) system has gained widespread popularity for its provision of efficient and environmentally sustainable cooling and heating solutions for buildings. While the performance of GSHP systems has raised significant concerns, research predominantly focuses on residential and office buildings, leaving a gap in understanding their applicability in industrial settings with constant temperature and humidity air conditioning needs. This study aims to address this gap by evaluating the performance of a hybrid ground source heat pump (HGSHP) system implemented within a cigarette factory located in the hot summer and cold winter (HSCW) of China. Through a comprehensive analysis of operational data and long-term monitoring under three cooling conditions, essential parameters including water temperature characteristics, indoor temperature and humidity, system efficiency, power consumption, and soil temperature distribution were examined. The findings revealed that the weighted average coefficient of performance (COP) of the heat pumps (COPhp) and the whole system (COPsys) was decreased from 5.05 to 4.32 and 3.32 to 2.89, respectively. A positive correlation was observed between low cooling load high energy consumption, and low COP. The inlet temperature of the condenser exhibited a declining trend, which was attributed to the intermittent operation of condensation heat recovery. Furthermore, a comprehensive analysis of indoor temperature and humidity distribution within the controlled room was presented and found that almost all the rooms serviced by this system meet the specified design requirements. This research contributes to an enhanced understanding of the viability of HGSHP systems in industrial settings and provides valuable references for improving their energy efficiency and overall performance.
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