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首页> 外文期刊>International Journal of Thermophysics >Measurement of Viscosity of a Binary Mixture of R1123+R32 Refrigerant by Tandem Capillary Tube Method
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Measurement of Viscosity of a Binary Mixture of R1123+R32 Refrigerant by Tandem Capillary Tube Method

机译:通过串联毛细管法测量R1123 + R32制冷剂二元混合物的粘度

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摘要

A refrigerant mixture of R1123 + R32 is expected to be an alternative working fluid for refrigeration systems, organic Rankine cycle and heat pumps due to its lower global warming potential and transport properties. The goals of this work are to measure the viscosity of the liquid and vapor phases of this mixture refrigerant. Consequently, the viscosity of mixture refrigerant was measured by the tandem capillary tube method up to 4.5 MPa over a temperature range from 250.64 K to 312.61 K for the liquid phase and from 323.35 K to 382.88 K in the vapor phase, respectively. Mass fractions of measured R1123/R32 refrigerant mixture were 0.428/0.572 in the liquid phase and 0.425/0.575 in the vapor phase. The obtained experimental data were compared with estimated values of the ECS model, and the average absolute deviation (AAD) was found at 3.63 % in the liquid phase and 2.45 % of the vapor phase. Also, the measured liquid and vapor viscosity data were correlated with the Grunberg-Nissan method and Wilke mixture correlation, respectively, while the AAD was 1.33 % for liquid and 3.69 % for vapor phases. The total combined standard uncertainties in the liquid and vapor viscosity measurements were estimated to be less than 2.9 % and 3.0 %, respectively.
机译:R1123 + R32的制冷剂混合物预计是用于制冷系统,有机朗肯循环和热泵的替代工作流体,由于其较低的全球变暖潜力和运输性能。这项工作的目标是测量该混合物制冷剂的液体和蒸气相的粘度。因此,通过串联毛细管方法测量混合物制冷剂的粘度,其在液相的温度范围内高达4.5MPa,分别在液相和323.35k至382.88k的温度范围内。测量的R1123 / R32制冷剂混合物的质量级分在液相中为0.428 / 0.572,气相中的0.425 / 0.575。将所得的实验数据与ECS模型的估计值进行比较,并且在液相和2.45%的液相中发现平均绝对偏差(AAD)的平均绝对偏差为3.63%。而且,测量的液体和气相粘度数据分别与Grunberg-Nissan方法和Wilke混合物相关性相关,而AAD为液体的1.33%,蒸气相管为3.69%。估计液体和气相粘度测量中的总组合标准不确定性分别小于2.9%和3.0%。

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