钻孔
土壤热特性
热泵
平流
地下水
传热
热扩散率
环境科学
热的
岩土工程
热导率
热传导
地质学
土壤科学
气象学
机械
材料科学
工程类
土壤水分
机械工程
热力学
导水率
热交换器
地理
物理
复合材料
作者
Weibo Yang,Yongping Chen,Mingheng Shi,Jeffrey D. Spitler
标识
DOI:10.1016/j.applthermaleng.2013.04.061
摘要
Underground thermal imbalance is a common problem in ground-coupled heat pump (GCHP) system operated in cooling-dominated district, which will cause the average underground soil temperature to rise, and inevitably deteriorate the operation performance of GCHP system. In this paper, a two-dimensional heat transfer model with groundwater advection was developed for modeling the heat transfer of underground GHE array. The influences of underground thermal imbalance rate, soil type, borehole layout and groundwater advection on the underground soil temperature distribution were analyzed. The results indicate that the soil temperature increase with the increase of the ratio of annual heat released into the ground to that extracted from the ground, and thus the underground thermal imbalance becomes worse. The better the soil thermal conductivity and diffusivity are, the faster the soil heat diffusion is, and thus the underground heat buildup can be alleviated. At the same time, the underground thermal imbalance can be controlled or eliminated by decreasing the intensive degree of borehole layout through increasing the borehole spacing or using strip type and block layout. Additionally, the underground heat buildup can be efficiently removed by the groundwater advection.
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