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Improved prediction of shell side heat transfer in horizontal evaporative shell and tube heat exchangers

机译:水平蒸发式壳管式换热器壳侧传热的改进预测

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摘要

This paper presents an improved prediction method for the heat transfer and pressure drop in the shell side of a horizontal shell and tube evaporator. The results from an experimental test program are used in which a wide range of evaporating two-phase shell side flow data was collected from a TEMA E-shell evaporator. The data are compared with shell side heat transfer coefficient and pressure drop models for homogeneous and stratified flow. The comparison suggests a deterioration in the heat transfer data at low mass fluxes consistent with a transition from homogeneous to stratified flow. The pressure drop data suggest a stratified flow across the full test range. A new model is presented that suggests the transition in the heat transfer data may be due to the extent of tube wetting in the upper tube bundle. The new model, which also takes into account the orientation of the shell side baffles, provides a vast improvement on the predictions of a homogenous type model. The new model would enable designers of shell side evaporators/reboilers to avoid operating conditions where poor heat transfer could be expected, and it would also enable changes in process conditions to be assessed for their implications on likely heat transfer performance. (Abstract from WOK)
机译:本文提出了一种改进的水平管壳式蒸发器壳侧传热和压降预测方法。使用了实验测试程序的结果,其中从TEMA E壳蒸发器收集了大量的蒸发两相壳侧流数据。将数据与壳侧传热系数和压降模型进行比较,以得到均匀且分层的流动。比较表明,在低质量通量下,传热数据的恶化与从均质流向分层流的转变一致。压降数据表明整个测试范围内的分层流动。提出了一个新模型,该模型表明传热数据中的过渡可能是由于上管束中管的润湿程度所致。新模型还考虑了壳侧挡板的方向,对同类模型的预测提供了巨大的改进。新模型将使壳式蒸发器/再沸器的设计人员避免可能发生传热不佳的操作条件,并且还可以评估工艺条件的变化,以评估其对可能的传热性能的影响。 (来自WOK的摘要)

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