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Laminar convective heat transfer of shear-thinning liquids in rectangular channels with longitudinal vortex generators

机译:具有纵向涡流发电机的矩形通道中剪切变薄液体的层状传热

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Heat and fluid flow in a rectangular channel heat sink equipped with longitudinal vortex generators have been numerically investigated in the range of Reynolds numbers between 25 and 200. Aqueous solutions of carboxymethyl cellulose (CMC) with different concentrations (200-2000 ppm), which are shearthinning non-Newtonian liquids, have been utilised as working fluid. Three-dimensional simulations have been performed on a plain channel and a channel with five pairs of vortex generators. The channels have a hydraulic diameter of 8 mm and are heated by constant wall temperature. The vortex generators have been mounted at different angles of attack and locations inside the channel. The shear-thinning liquid flow in rectangular channels with longitudinal vortex generators are described and the mechanisms of heat transfer enhancement are discussed. The results demonstrate a heat transfer enhancement of 39188% using CMC aqueous solutions in rectangular channels with LVGs with respect to a Newtonian liquid flow (i. e. water). Additionally, it is shown that equipping rectangular channels with LVGs results in an enhancement of 24-135% in heat transfer performance vis--vis plain channel. However, this heat transfer enhancement is associated with larger pressure losses. For the range of parameters studied in this paper, increasing the CMC concentration, the angle of attack of vortex generators and their lateral distances leads to an increase in heat transfer performance. Additionally, heat transfer performance of rectangular channels with longitudinal vortex generators enhances with increasing the Reynolds number in the laminar flow regime. (C) 2017 The Authors. Published by Elsevier Ltd.
机译:在25至200之间的雷诺数范围内,配备有纵向涡流发电机的矩形通道散热器中的热量和流体流动在25至200之间的雷诺数范围内。羧甲基纤维素(CMC)的水溶液(200-2000ppm)抗牛顿非牛顿液体,已被用作工作流体。已经在普通通道和具有五对涡流发生器的通道上进行了三维模拟。通道具有8mm的液压直径,并通过恒定壁温加热。涡流发生器已以不同的攻击角度和通道内的位置安装。描述了具有纵向涡流发生器的矩形通道中的剪切变薄液流,并讨论了传热增强的机制。结果表明,在具有LVG的矩形通道中使用CMC水溶液的热传递增强39188%,相对于牛顿液体流动(即水)。另外,示出了具有LVG的矩形通道导致热传递性能Vis-Vis普通通道中的24-135%的增强。然而,这种传热增强与较大的压力损失相关。对于本文研究的参数范围,增加了CMC浓度,涡旋发生器的迎角和它们的横向距离导致传热性能的增加。另外,具有纵向涡流发电机的矩形通道的传热性能随着层流变制度中的雷诺数增加而增强。 (c)2017作者。 elsevier有限公司出版

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