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Experimental investigation of in-tube condensation of low GWP refrigerant R450A using a fiber optic distributed temperature sensor

机译:低GWP制冷剂R450A使用光纤分布式温度传感器的实验研究

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Heat transfer coefficients and frictional pressure drop values are experimentally measured during condensation of R134a and its proposed low global warming potential (GWP) replacement, R450A. R450A is a non-flammable zeotropic mixture of R134a and R1234ze (42/58% by mass). Experiments were conducted in a horizontal tube (ID = 4.7 mm) for a range of mass fluxes (100 kg m(-2) s(-1) to 550 kg m(-2) s(-1)) and saturation conditions (45 degrees C and 55 degrees C). The measured pressure drop values and heat transfer coefficients were compared with established literature correlations. Good agreement indicates that existing correlations can be used for design of condensers with R450A as the working fluid. Additionally, this study evaluates the viability of using distributed fiber optic temperature sensors during refrigerant condensation experiments. The fiber sensor is installed in the annulus of a tube-in-tube heat exchanger and is used to obtain the axial temperature profile of the cooling water. The measurements from the distributed temperature sensors are compared with conventional RTD measurements co-located within the test section. The results (Average Deviation = +/- 0.26 degrees C, Maximum Deviation = +/- 1.11 degrees C) suggest that fiber optic measurement techniques can provide temperature data with accuracy and high spatial resolution (equal to 0.65 mm). (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:在R134a的缩合期间,在R134a的缩合期间进行传热系数和摩擦压降值,其提出的低全球变暖潜力(GWP)替代,R450A。 R450A是R134A和R1234ZE(42/58质量%)的不易燃触级混合物。实验在水平管(ID = 4.7mm)中进行一系列质量助熔剂(100kg m(-2)s(-1)至550kg m(-2)s(-1))和饱和条件( 45摄氏度和55℃)。将测量的压降值和传热系数与建立的文献相关性进行了比较。良好的一致表明现有相关性可用于设计具有R450A作为工作流体的冷凝器。另外,该研究评估了在制冷剂冷凝实验期间使用分布式光纤温度传感器的可行性。光纤传感器安装在管内热交换器的环形空间中,并用于获得冷却水的轴向温度曲线。将分布式温度传感器的测量与在测试部分内共同位于测试部分内的传统RTD测量进行了比较。结果(平均偏差= +/- 0.26℃,最大偏差= +/- 1.11摄氏度)表明光纤测量技术可以以精度和高空间分辨率(等于0.65mm)提供温度数据。 (c)2019年Elsevier Ltd和IIR。版权所有。

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