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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical comparison of shell-side performance for shell and tube heat exchangers with trefoil-hole, helical and segmental baffles
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Numerical comparison of shell-side performance for shell and tube heat exchangers with trefoil-hole, helical and segmental baffles

机译:带三叶孔,螺旋和分段挡板的管壳式热交换器的壳侧性能的数值比较

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摘要

Shell-and-tube heat exchanger, is one of the most widely used heat exchange apparatus in various industrial process and research fronts. Baffle selection is critical to control and improve the thermohydraulic performance of this type of heat exchanger. In this paper, three-dimensional computational fluid dynamics (CFD) simulations, using the commercial software ANSYS FLUENT, have been performed to study and compare the shell-side flow distribution, heat transfer coefficient and the pressure drop between the recently developed trefoil-hole, helical baffles and the conventional segmental baffles, at low shell side flow rates. In this numerical comparison, the whole heat exchangers consisting of the shell, tubes, baffles and nozzles are modeled, the numerical model predicts the thermo-hydraulic performance with a considerably good accuracy, by comparing with experimental data for single segmental baffles. The model is then used to compute and compare the thermo-hydraulic performance for the same heat exchanger with trefoil-hole and helical baffles. The results show that the use of helical baffles results in higher thermo-hydraulic performance while trefoil-hole baffles has a higher heat transfer performance with large pressure drop compared to segmental baffles. (C) 2016 Elsevier Ltd. All rights reserved.
机译:壳管式热交换器是各种工业过程和研究领域中使用最广泛的热交换设备之一。挡板的选择对于控制和改善这种热交换器的热工性能至关重要。本文利用商用软件ANSYS FLUENT对三维计算流体动力学(CFD)进行了模拟,以研究和比较最近开发的三叶孔之间的壳侧流动分布,传热系数和压降。 ,螺旋形折流板和传统的分段折流板,在低壳侧流速下。在此数值比较中,对由壳,管,折流板和喷嘴组成的整个热交换器进行了建模,数值模型通过与单个分段折流板的实验数据进行比较,以相当好的精度预测了热工液压性能。然后将该模型用于计算和比较带有三叶孔和螺旋折流板的同一个热交换器的热工水力性能。结果表明,与分段式折流板相比,使用螺旋形折流板可产生更高的热工液压性能,而三叶孔折流板则具有更高的传热性能和较大的压降。 (C)2016 Elsevier Ltd.保留所有权利。

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