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Numerical investigation of laminar heat transfer in a square channel with 45° inclined baffles

机译:具有45°倾斜挡板的方形通道内层流传热的数值研究

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A numerical investigation of laminar periodic flow and heat transfer in a three-dimensional isothermal-wall square channel fitted with 45° inclined baffles on one channel wall is carried out in the present work. The finite volume method is introduced and the SIMPLE algorithm has been implemented for all computations. The fluid flow and heat transfer characteristics are presented for Reynolds numbers ranging from 100 to 1200. The 45° baffle mounted only on the lower channel wall has a height of fa and an axial pitch length (L) equal to channel height (H). Effects of flow blockage ratios, BR= b/H = 0.1-0.5, on heat transfer and pressure loss in the square channel are examined and also compared with the typical case of the transverse baffle (or 90° baffle). It is found that apart from the rise of Reynolds number, the increase in the blockage ratio with the attack angle (α) of 45° results in considerable increases in the Nusselt number and friction factor values. The use of the 45° baffle can help to generate a streamwise main vortex flow throughout the channel leading to fast and chaotic mixing of flow between the core and the wall regions. In addition, the computational results reveal that the significant increase in heat transfer rate is due to impingement jets induced by a longitudinal vortex pair (P-vortex) of flow, appearing on the upper, lower and baffle trailing end side walls. The appearance of vortex-induced impingement flows created by the baffles leads to the maximum thermal enhancement factor of about 2.2 at BR = 0.4 and Re = 1200. The enhancement factor of the 45° baffle investigated is found to be higher than that of the 90° baffle for all Reynolds numbers and baffle heights.
机译:在目前的工作中,对在一个通道壁上装有45°倾斜挡板的三维等温壁方形通道中的层流周期性流动和传热进行了数值研究。引入了有限体积法,并且SIMPLE算法已用于所有计算。给出了雷诺数从100到1200的流体流动和传热特性。仅安装在下部通道壁上的45°挡板的高度为fa,轴向节距长度(L)等于通道高度(H)。检查了阻流比BR = b / H = 0.1-0.5对方形通道中的传热和压力损失的影响,并将其与横向挡板(或90°挡板)的典型情况进行了比较。已经发现,除了雷诺数的增加之外,随着45°攻角(α)的阻塞率的增加,努氏数和摩擦系数值也显着增加。 45°挡板的使用可有助于在整个通道中产生沿流向的主涡流,从而导致芯与壁区域之间的流快速而混乱地混合。另外,计算结果表明,传热速率的显着提高是由于纵向涡流对(P-涡流)引起的冲击射流引起的,该冲击流出现在上,下和挡板尾端侧壁上。由挡板产生的涡流引起的冲击流的出现导致在BR = 0.4和Re = 1200时的最大热增强因子约为2.2。发现所研究的45°挡板的增强因子高于90。 °所有雷诺数和挡板高度的挡板。

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    Department of Mechanical Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand;

    Department of Mechanical Engineering, Faculty of Engineering, Mahanakorn University of Technology, Bangkok 10530, Thailand;

    Department of Mechanical Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand;

    Department of Mechanical Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand;

    Department of Mechanical Engineering, Faculty of Engineering, King Mongkut's Institute of Technology Ladkrabang, Bangkok 10520, Thailand;

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  • 正文语种 eng
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  • 关键词

    periodic flow; square channel; laminar flow; heat transfer; inclined baffle;

    机译:周期性流动方槽层流传播热量;倾斜挡板;

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