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Measured and predicted upward flow boiling heat transfer coefficients for hydrocarbon mixtures inside a cryogenic plate fin heat exchanger

机译:低温板翅式换热器内部烃类混合物的实测和预测的向上流动沸腾传热系数

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Boiling of hydrocarbon mixtures inside plate fin heat exchangers (PFHEs) is most prevalent in many cryogenic processes of petrochemical plants. However, there is very little experimental data and a lack of prediction methods regarding boiling mixtures in PFHEs. This paper established an experimental setup that utilized a single-stage cryogenic cycle to measure the boiling heat transfer coefficients (HTCs) for hydrocarbon mixtures inside a perforated PFHE. The components of the mixtures include methane, ethylene, propane and isobutene. Twenty-seven sets of experiments were conducted under various operating conditions and 261 data points of the boiling HTC were obtained. The experimental conditions cover the mass fluxes of 3.69-19.38 kg m(-2) s(-1), pressures of 1.35-5.22 bar and vapor qualities of 0.05-0.77, which are representative of a wide range of actual industrial conditions. The corresponding heat fluxes only range from 55.7 to 3837.3 W m(-2). The experimental boiling HTC varies from 21.4 to 1055.7 W m(-2) K-1, and it is a strong function of the heat flux. Moreover, twelve existing correlations were assessed by using the present experimental data. The results show that the HTCs predicted by Chen type correlations were not consistent with the experimental results, and a new correlation developed from mini-channel correlations was recommended. (C) 2018 Elsevier Ltd. All rights reserved.
机译:板翅式换热器(PFHE)内部的烃混合物沸腾在石化厂的许多低温过程中最为普遍。但是,关于PFHE中沸腾混合物的实验数据很少,缺乏预测方法。本文建立了一个实验装置,该装置利用单级低温循环来测量多孔PFHE中烃类混合物的沸腾传热系数(HTC)。混合物的成分包括甲烷,乙烯,丙烷和异丁烯。在各种操作条件下进行了27组实验,获得了261个沸腾HTC数据点。实验条件包括3.69-19.38 kg m(-2)s(-1)的质量通量,1.35-5.22 bar的压力和0.05-0.77的蒸气质量,这些代表了广泛的实际工业条件。相应的热通量范围仅为55.7至3837.3 W m(-2)。实验沸腾的HTC从21.4到1055.7 W m(-2)K-1不等,它是热通量的强大函数。此外,通过使用当前的实验数据评估了十二种现有的相关性。结果表明,由Chen类型相关性预测的HTC与实验结果不一致,因此建议从微通道相关性发展出新的相关性。 (C)2018 Elsevier Ltd.保留所有权利。

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