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Impact of soil thermal conductivity on temperature field of soil around horizontal buried pipe in ground- source heat pump

机译:地下源热泵水平埋管温度对土壤温度场的影响

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In this paper the composition and thermal property of soil are discussed. With experiment, the main factors that impacted the soil thermal conductivity are studied. Model of heat exchanger with horizontal pipes of ground - source heat pump is developed. And the impact of soil thermal conductivity on soil temperature field around buried pipe and thermal performance of heat exchanger are simulated. The simulation results show that with the increase of soil thermal conductivity, heat transfer quantity obviously increases, and the temperature of soil around pipe decrease under winter condition. And the temperature field varies relatively faster with thermal conductivity in the site nearer to buried pipe.
机译:本文讨论了土壤的组成和热性。通过实验,研究了影响土壤导热率的主要因素。开发了地面源热泵水平管的热交换器模型。模拟了土壤导热性对埋地管周围土壤温度场的影响及热交换器的热性能。仿真结果表明,随着土壤导热系数的增加,传热量明显增加,冬季条件下的管道周围的土壤温度降低。温度场在靠近埋地管的场地中的导热率变化相对较快。

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