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Flow condensing heat transfer of R410A, R22, and R32 inside a micro-fin tube

机译:微翅片管内R410A,R22和R32的流动冷凝传热

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An experimental study of condensation heat transfer characteristics of flow inside horizontal micro-fin tubes is carried out using R410A, R22, and R32 as the test fluids. This study especially focuses on the influence of heat transfer area upon the condensation heat transfer coefficients. The test sections were made of double tubes using the counter-flow type; the refrigerants condensation inside the test tube enabled heat to exchange with cooling water that flows from the annular side. The saturation temperature and pressure of the refrigerants were measured at the inlet and outlet of the test sections to defined state of refrigerants, and the surface temperatures of the tube were measured. A differential pressure transducer directly measured the pressure drops in the test section. The heat transfer coefficients and pressure drops were calculated using the experimental data. The condensation heat transfer coefficient was measured at the saturation temperature of 48 degrees C with mass fluxes of 50-380 kg/(m(2)s) and heat fluxes of 3-12 kW/m(2). The values of experimental heat transfer coefficient results are compared with the predicted values from the existing correlations in the literature, and a new condensation heat transfer coefficient correlation is proposed.
机译:以R410A,R22和R32为测试液,对水平微翅片管内的冷凝水传热特性进行了实验研究。该研究尤其关注传热面积对冷凝传热系数的影响。测试部分由双管制成,采用逆流型。试管内的制冷剂冷凝使热量能够与从环形侧流出的冷却水进行交换。在测试部分的入口和出口处测量制冷剂的饱和温度和压力,以确定制冷剂的状态,并测量管的表面温度。差压传感器直接测量测试部分的压降。使用实验数据计算出传热系数和压降。冷凝传热系数是在饱和温度48摄氏度,质量通量50-380 kg /(m(2)s)和热通量3-12 kW / m(2)下测量的。将实验传热系数结果的值与文献中现有相关性的预测值进行比较,并提出了一种新的冷凝传热系数相关性。

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