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Flow boiling heat transfer of zeotropic mixture R1234yf/R32 inside a horizontal multiport tube

机译:水平多端口管内流出沸腾混合物R1234YF / R32的流动沸腾热传递

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The flow boiling heat transfer and pressure drop of zeotropic binary mixture R1234yf/R32 were experimentally investigated inside a horizontal multiport tube with rectangular minichannels. Local heat transfer coefficients were quantified under mass fluxes in the range 50-400 kgm(-2) s(-1), heat fluxes in the range 5-20 kWm(-2), and circulation compositions of 80/20 and 50/50mass%. The obtained heat transfer coefficient of the mixtures were compared with those of pure components under the same experimental conditions. The heat transfer of the mixtures was strongly influenced by mass flux, vapor quality, and mass fraction, whereas the influence of heat flux on heat transfer was small. The heat transfer coefficients of the mixtures were lower than those of the pure components under most conditions owing to mass diffusion resistance and temperature glide; however, the heat transfer coefficients of the mixtures were same or higher than those of R1234yf at high mass flux and high vapor quality regions. The frictional pressure drops of the mixtures increased with increasing mass flux, vapor quality, and mass fraction of R1234yf. The database encompassing more than 900 and 190 for boiling heat transfer coefficient and frictional pressure drop were compared with available previous correlations. Previous correlations underestimated the heat transfer coefficients of the mixtures, especially for data with higher temperature glide and dominant forced convective heat transfer. The proposed correlation shows good agreement with the heat transfer coefficients of the R1234yf/R32 mixtures with mean and mean absolute deviations of -5.0% and 10.3%, respectively. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:用矩形迷你录像机在水平多端口管内实验研究横发二元混合物R1234YF / R32的流沸热和压降。在50-400kgm(-2)(-1)的质量通量下量化局部传热系数,在5-20kWm(-2)范围内的热通量和80/20和50 /的循环组合物50mass%。将得到的热传递系数与在相同的实验条件下的纯组分的热传递系数。混合物的热传递受质量磁通量,蒸气质量和质量分数的强烈影响,而热通量对热传递的影响小。由于质量扩散抗性和温度滑动,混合物的传热系数低于大多数条件下的纯组分的系数;然而,混合物的传热系数相同或高于高质量磁通和高蒸气质量区域的R1234YF的系数。随着质量磁通量,蒸气质量和R1234YF的质量分数增加,混合物的摩擦压降增加。将包含超过900和190用于沸腾传热系数和摩擦压降的数据库与可用以前的相关性进行了比较。以前的相关性低估了混合物的传热系数,特别是对于具有较高温度滑动的数据和显性强制性对流热传递。所提出的相关性显示出与R1234YF / R32混合物的热传递系数的良好一致,分别具有-5.0%和10.3%的平均值和平均绝对偏差。 (c)2020 Elsevier Ltd和IIR。版权所有。

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