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Flow condensing heat transfer of R410A inside a micro-fin tube

机译:微翅片管内R410A的流动冷凝传热

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An experimental study of condensation heat transfer and pressure drop inside a horizontal micro-fin tubes are conducted using the azeotropic mixture refrigerant R410A as a test. This study was especially focused on influence of heat transfer area on the condensation heat transfer coefficient and pressure drop. The test sections were double tube of counter-flow type; the refrigerant was flowing condensed inside of test tube by heat exchange with cooling water flowing in the annular side. The temperature and pressure of refrigerant were measured at inlet and outlet of test section, and the temperature surface of tubes were measured. The pressure drop in the test section were directly measured by a differential pressure transducer. The heat transfer coefficient and frictional pressure gradient were calculated using the -experimental data. The heat transfer coefficient and pressure drop were measured at the saturation temperature of 48°C within mass fluxes of 50-380kg/ (m2s) and heat fluxes of 6-12kW/m2. The pressure drop and heat transfer coefficient characteristics of the R410A were examined and compared with those of the R22 at the same test conditions. The experiment results are compared with the existing heat transfer coefficient correlations, and a new correlation is developed with good prediction.
机译:使用共沸混合物制冷剂R410A作为测试,通过共沸混合物制冷剂R410A进行卧式微翅片管内的冷凝传热和压降的实验研究。本研究特别集中在传热面积对冷凝传热系数和压降的影响。试验部分是反流式双管;通过在环形侧流动的冷却水流,制冷剂通过热交换而流动在试管内部冷凝。在试验部分的入口和出口时测量制冷剂的温度和压力,并测量管的温度表面。测试部分中的压降通过差压换能器直接测量。使用 - 实验数据计算传热系数和摩擦压力梯度。在50-380kg /(m2s)的质量助熔剂内,在48℃的饱和度温度下测量传热系数和压降和6-12kw / m 2的热通量。检查R410A的压降和传热系数特征,并与相同的试验条件的R22的压力下降和传热系数特征。将实验结果与现有的传热系数相关性进行比较,并且具有良好的预测开发了新的相关性。

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