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首页> 外文期刊>Science and Technology for the Built Environment >In-Tube condensation of zeotropic refrigerant R454C from superheated vapor to subcooled liquid
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In-Tube condensation of zeotropic refrigerant R454C from superheated vapor to subcooled liquid

机译:横向制冷剂R454C的管内冷凝从过热蒸汽到过冷液体

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摘要

This article investigates the in-tube, superheated, saturated, and subcooled condensation of zeotropic refrigerant mixture R454C. R454C is proposed to replace R404A for commercial refrigeration applications. Quasi-local heat transfer coefficients were measured in a 4.7 mm horizontal tube at mass fluxes ranging from 100 to 500 kg m(-2)s(-1)at three different saturation conditions (40, 50, and 50 degrees C). The resulting data was compared with the non-equilibrium condensation models of Agarwal and Hrnjak, Kondou and Hrnjak, and Xiao and Hrnjak, as well as the equilibrium model of Cavallini et al. with the Gnielinski correlation for predictions in subcooled and superheated regions. The additional mass transfer effects were accounted for by applying the Silver, Bell and Ghaly mixture correction. The non-equilibrium Kondou and Hrnjak model, with the predictions in the subcooled region from Gnielinski correlation, agrees best with the data (mean average percent error = 9%). An air-cooled condenser for a 1055 kW refrigeration system is designed by following both the non-equilibrium and equilibrium approaches. This non-equilibrium approach leads to a 4.8 and 9.1% reduction in heat transfer area for R454C and R404A, respectively. R454C condenser area is 17-21% larger than that of a R404A condenser.
机译:本文研究了辅胞胎制冷剂混合物R454C的管内,过热,饱和和过冷凝结。 R454C提出替换R404A以进行商业制冷应用。在3.7mm水平管中,在三种不同饱和条件(40,50和50℃)的质量助熔剂中,在4.7mm水平管中测量拟局部传热系数。将产生的数据与Agarwal和Hrnjak,Kondou和Hrnjak,Xiao和Hrnjak的非平衡冷凝模型进行比较,以及Cavallini等人的平衡模型。通过Gnielinski与过热区域预测的相关性。通过应用银,钟和地球和地球混合物校正来占额外的传质效应。非平衡kondou和hrnjak模型,具有来自gnielinski相关的亚冷却区域的预测,与数据相一致(平均值误差= 9%)。通过遵循非平衡和平衡方法,设计了一种用于1055 kW制冷系统的风冷冷凝器。该非平衡方法分别导致R454C和R404A的传热面积减少4.8%和9.1%。 R454C冷凝器面积比R404A冷凝器大17-21%。

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