Analysis of the operation characteristics of solar-assisted shallow geothermal energy systems in rural residential areas in southern Hebei Province

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Applied Geophysics Pub Date : 2024-02-08 DOI:10.1007/s11770-024-1051-5
Hai-Min Wang, Jian-Wei Li, Wen-Guang Jia, Tong-Hui Wang, Xu Wang, Ling-Ling Bao
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Abstract

Shallow geothermal heat has the characteristics of wide distribution and huge reserves. However, for northern rural buildings, the heating load in winter is much greater than the cooling load in summer, and thermal imbalance of the soil is prone to occur. This paper takes rural residences in southern Hebei as an example and designs a solar-assisted shallow geothermal energy system. Compared with the original shallow ground-source heat pump system, the indoor and outdoor temperature differences of the target building were first analyzed. Second, the changes in the soil temperature field and the differences in the supply and return water temperature were monitored. Finally, the initial investment and operating costs of the assisted system are analyzed. The results show that the average ground temperature field increases significantly in winter. Through the alternate operation of solar energy and ground-source heat pumps, heat extraction from the ground is reduced, and the imbalance cycle of heat extraction in winter and heat removal in summer is shortened. It alleviates the imbalance of the cold and heat loads for soil throughout the year. The inlet and outlet water temperature and heat exchange efficiency of the buried pipes have been significantly improved. The energy efficiency ratio of the system using the assisted system has increased from 3.40 in 2020 to 4.17, an increase of 0.77. The optimal ratio of the solar- assisted shallow geothermal energy system is a 12.80 m2 solar heat-collection area and one buried hole. The winter heating operating cost of the solar-assisted shallow geothermal energy system is 18.86 CNY/m2. It can save 37% of the annual operating costs of heating, cooling, and hot water compared to a single ground-source heat pump system and 40%–45% compared to traditional heating and cooling modes.

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河北省南部农村住宅区太阳能辅助浅层地热能系统运行特性分析
浅层地热具有分布广、储量大的特点。但对于北方农村建筑而言,冬季采暖负荷远大于夏季制冷负荷,容易出现土壤热平衡失调。本文以河北南部农村住宅为例,设计了太阳能辅助浅层地热能系统。与原有的浅层地源热泵系统相比,首先分析了目标建筑的室内外温差。其次,监测了土壤温度场的变化以及供回水温度的差异。最后,分析了辅助系统的初始投资和运行成本。结果表明,冬季平均地温场明显升高。通过太阳能和地源热泵的交替运行,减少了从地下的取热,缩短了冬季取热和夏季排热的不平衡周期。它缓解了土壤全年冷热负荷的不平衡。地埋管的进出水温度和热交换效率都得到了显著提高。使用辅助系统的系统能效比从 2020 年的 3.40 提高到 4.17,提高了 0.77。太阳能辅助浅层地热能系统的最佳配比为 12.80 平方米的太阳能集热面积和一个埋管孔。太阳能辅助浅层地热能系统的冬季采暖运行成本为 18.86 元人民币/平方米。与单一的地源热泵系统相比,该系统每年可节省 37% 的供暖、制冷和热水运行费用,与传统的供暖和制冷模式相比,可节省 40%-45% 的运行费用。
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来源期刊
Applied Geophysics
Applied Geophysics 地学-地球化学与地球物理
CiteScore
1.50
自引率
14.30%
发文量
912
审稿时长
2 months
期刊介绍: The journal is designed to provide an academic realm for a broad blend of academic and industry papers to promote rapid communication and exchange of ideas between Chinese and world-wide geophysicists. The publication covers the applications of geoscience, geophysics, and related disciplines in the fields of energy, resources, environment, disaster, engineering, information, military, and surveying.
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