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Heat transfer performance of the underground CO2 pipe in the direct expansion ground source heat pump

机译:直膨胀地源热泵中地下二氧化碳管的传热性能

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Under the refrigerating condition, the pipe circulating CO2 is directly buried underground. It acts as the gas cooler releasing heat from the refrigerant to the soil directly. The heat transfer performance of the CO2 gas cooler is very important to the performance of the direct expansion ground source heat pump. The heat transfer process at the gas cooler is analyzed. Based on that, the mathematic model of the buried pipe is established using energy balance method. Then the influence factors including shank spacing, thermal conductivity of soil and backfill material, inlet temperature and mass flow rate of refrigerant are studied. The results show that the heat transfer performance of the underground CO2 pipe has a tendency to increase with the factors. The results also show that thermal short circuiting exists between the shanks of CO2 gas cooler.
机译:在制冷条件下,管道循环二氧化碳直接埋地。它充当气体冷却器直接从制冷剂释放热量。 CO2气体冷却器的传热性能对直接膨胀地源热泵的性能非常重要。分析了气体冷却器的传热过程。基于此,使用能量平衡方法建立埋地管的数学模型。然后,研究了包括柄间距,土壤和回填材料的导热系数,入口温度和制冷剂的质量流量的影响因素。结果表明,地下二氧化碳管的传热性能与因素增加了趋势。结果还表明,CO2气体冷却器的柄部之间存在热短路。

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