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土壤温度场对垂直单U形埋管换热性能的影响分析
引用本文:毛佳妮,陈焕新,冯广昌.土壤温度场对垂直单U形埋管换热性能的影响分析[J].制冷与空调(北京),2009,9(1):88-92,69.
作者姓名:毛佳妮  陈焕新  冯广昌
作者单位:毛佳妮,陈焕新,Mao Jiani,Chen Huanxin(华中科技大学);冯广昌,Feng Guangchang(铁道第四勘察设计研究院)  
摘    要:针对广州地下50m以内土壤温度场,研究广州地区土壤温度的分布特性和变化规律,建立垂直单U形地埋管地下换热区域温度场的三维稳态和瞬态传热模型,模拟冬季工况下埋管区域土壤温度场的分布情况,分析不同土壤初始温度对地埋管换热器埋管深度的影响。最后,计算某一别墅工程动态负荷,选用GLHEPRO3.0进行为期30年的系统运行模拟,分析地下埋管区域土壤热平衡对埋管换热性能的影响,从而为广州地区推广使用土壤源热泵系统的长期高效运行提供理论参考。

关 键 词:土壤源热泵  垂直U形换热器  传热性能  数值模拟  地埋管

Influence analysis of soil temperature field on heat transfer performance of single vertical U-shape buried pipe
Mao Jiani,Chen Huanxin,Feng Guangchang.Influence analysis of soil temperature field on heat transfer performance of single vertical U-shape buried pipe[J].Refrigeration and Air-conditioning,2009,9(1):88-92,69.
Authors:Mao Jiani  Chen Huanxin  Feng Guangchang
Affiliation:1. Huazhong University of Science and Technology;2 The Fourth Railway Survey and Design Institute)
Abstract:According to soil temperature field of Guangzhou district within 50 m underground, studies the distribution characteristics and the change law of soil temperature. Establishes the three-dimensional steady and unsteady heat transfer model around the temperature field of single vertical U-tube for GSHP, and simulates the soil temperature field around the buried pipe running in winter, analyzes the influence of initial temperature for the buried pipe length. Lastly, on the basis of the annual dynamic load, carries on the task of the device operation simulation for 30 years by GLHEPRO 3.0, analyzes the influence of soil thermal balance on heat transfer performance in the buried pipe district. It can offer reference for GSHP system on long-term running effectively in Guangzhou district.
Keywords:ground-source heat pump(GSHP)  vertical U-shape heat exchanger  heat transfer performance  numerical simulation  buried pipe
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