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首页> 外文期刊>International Journal of Heat and Mass Transfer >A heat transfer model to predict superheated and saturated condensation of HFC/HFO refrigerant mixtures
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A heat transfer model to predict superheated and saturated condensation of HFC/HFO refrigerant mixtures

机译:预测HFC / HFO制冷剂混合物过热和饱和凝结的传热模型

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摘要

This work proposes a new heat transfer model for superheated and saturated condensation for low global warming potential refrigerant (GWP) mixtures with hydrofluorocarbons (HFC) and hydrofluoroolefins (HFOs) constituents, and validates it with experimental data. The superheated condensation region exists upstream of the saturated region, and has been traditionally modeled as single-phase flow. However, prior research on pure fluids has shown that the heat transfer coefficients in this region are significantly higher than those associated with single-phase flow. Accurately modeling superheated condensation allows for the design of a more compact heat exchanger. In the model, the mixture effects associated with zeotropic condensation were accounted for using the equilibrium Silver, Bell and Ghaly method. The model was validated with condensation data for five low GWP refrigerant mixtures (R448A, R450A, R452A, R454B, and R454C). A total of 962 data points were compared and the resulting mean absolute percent errors (MAPEs) were equal to 8% and 12% for superheated and complete condensation, respectively. Furthermore, past investigations of pure fluids have noted an enhancement in heat transfer in the subcooled condensation region, which exists downstream of the saturated region. However, in the current study, the enhancement due to latent effects was not observed in the subcooled region and the heat transfer was well predicted (MAPE = 18%) by a single-phase correlation.
机译:该工作提出了一种用于低全球变暖潜在制冷剂(GWP)与氢氟烃(HFC)和氢氟烯烃(HFOS)成分混合物的过热和饱和冷凝剂的新型传热模型,并用实验数据验证。在饱和区域的上游存在过热的冷凝区域,并且传统上建模为单相流。然而,在纯净流体的现有研究表明该区域中的传热系数显着高于与单相流相关的系数。精确建模过热冷凝允许设计更紧凑的热交换器。在该模型中,占使用平衡银,钟和地球法占ZeoTropic缩合相关的混合物效应。该模型用5个低GWP制冷剂混合物(R448A,R450A,R452A,R454B和R454C)进行缩合数据验证。比较了962个数据点,并且所得的平均绝对百分比(Mapes)分别等于过热和完全冷凝的8%和12%。此外,过去的纯净流体的研究已经注意到在饱和区域的下游存在的过冷凝缩合区域中的热传递增强。然而,在目前的研究中,在过冷区中未观察到由于潜伏的效应引起的增强,通过单相相关性地预测(Mape = 18%)。

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