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Effects of convective instabilities on heat exchangers

机译:对流不稳定性对热交换器的影响

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The heat exchanger walls can be constituted by flat or corrugated plates, cylindrical or variable section ducts equipped with baffles of different shapes. For this purpose, this paper aims to demonstrate the advantage of using baffles to disrupt the fluid flow and thus the convective heat exchange instability during the generation of recirculation zones within the channel. The fluid used is hydrogen in a turbulent flow in forced convection. The baffles having a part inclined at an angle of 30, 45 and 60 are attached to upper and lower horizontal walls of a rectangular channel. Axial velocity profiles, velocity fields as well as the distribution of Nusselt number are presented. The baffles are involved in creating recirculation zones by creating convective heat exchange instability. The part of the baffle inclined at an angle of 30 is more efficient than other inclinations as the Nusselt number increases by about 26% more. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:热交换器壁可由平板或波纹板,配备有不同形状的挡板的圆柱形或可变截面管道构成。为此目的,本文旨在证明使用折流板来破坏流体流动的优势,从而在通道内形成回流区的过程中对流换热不稳定性。在强制对流中,湍流中使用的氢是氢。具有以30°,45°和60°角倾斜的部分的挡板附接到矩形通道的上下水平壁。给出了轴向速度分布图,速度场以及努塞尔数的分布。折流板通过产生对流热交换的不稳定性而参与形成再循环区域。当Nusselt数增加约26%时,以30度角倾斜的挡板部分比其他倾斜角度更有效。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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