冷媒R134A、R245fa、R407C和R600a在微通道散热器流动沸腾过程中的热性能对比分析

H. L. S. L. Leão, D. Marchetto, G. Ribatski
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引用次数: 0

摘要

采用由50个平行矩形微通道组成的123x494µm2散热器,对R134a、R407C、R245fa和R600a四种制冷剂在流动沸腾过程中的性能进行了对比研究。传热实验结果表明,热流高达310 kW/m2,质量速度为300 ~ 800 kg/(m2 s),液体过冷度为5 ~ 10℃,饱和温度接近30℃。全球传热系数(足迹)高达10千瓦/(m2°C)被发现。同时,研究人员还对核沸腾发生所需的液体过热进行了表征,其中R245fa和R407C分别表现出触发沸腾过程所需的最高和最低过热。此外,对于固定的平均蒸汽质量,平均有效传热系数随质量速度和液体过冷度的增加而增加。制冷剂R600a和R407C的换热系数分别最高和最低。文献中的5种传热预测方法对R134a、R245fa和R600a的数据进行了准确的预测,捕获了大部分数据趋势。没有一种方法能准确预测R407C的传热系数数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARATIVE ANALYSES OF THE THERMAL PERFORMANCE OF REFRIGERANTS R134A, R245fa, R407C AND R600a DURING FLOW BOILING IN A MICROCHANNELS HEAT SINK
A comparative study of the performance of of refrigerants R134a, R407C, R245fa and R600a during flow boiling was performed for a 123x494 µm2 heat sink composed of 50 parallel rectangular microchannels. Heat transfer experimental results for heat fluxes up to 310 kW/m2, mass velocities from 300 to 800 kg/(m2 s), liquid subcoolings of 5 and 10 °C and saturation temperature close to 30 ºC were obtained. Global heat transfer coefficients (footprint) up to 10 kW/(m2 °C) were found. The liquid superheating necessary for the onset of nucleate boiling (ONB) was also characterized, and the fluids R245fa and R407C presented the highest and lowest, respectively, superheating to trigger the boiling process. Moreover, for a fixed averaged vapor quality, the average effective heat transfer coefficient increases with increasing mass velocity and liquid subcooling. The refrigerants R600a and R407C presented the highest and the lowest heat transfer coefficients, respectively. Five heat transfer predictive methods from literature provided accurate predictions of the data for R134a, R245fa and R600a, capturing most of the data trends. No one method provided accurate predictions of the heat transfer coefficient data of R407C.
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