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Control of Laminar Pulsating Flow and Heat Transfer in Backward-Facing Step by Using a Square Obstacle

机译:通过方形障碍物控制层流脉动和逆向传热步骤

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摘要

In the present study, laminar pulsating flow over a backward-facing step in the presence of a square obstacle placed behind the step is numerically studied to control the heat transfer and fluid flow. The working fluid is air with a Prandtl number of 0.71 and the Reynolds number is varied from 10 and 200. The study is performed for three different vertical positions of the square obstacle and different forcing frequencies at the inlet position. Navier-Stokes and energy equation for a 2D laminar flow are solved using a finite-volume-based commercial code. It is observed that by properly locating the square obstacle the length and intensity of the recirculation zone behind the step are considerably affected, and hence, it can be used as a passive control element for heat transfer augmentation. Enhancements in the maximum values of the Nusselt number of 228% and 197% are obtained for two different vertical locations of the obstacle. On the other hand, in the pulsating flow case at Reynolds number of 200, two locations of the square obstacle are effective for heat transfer enhancement with pulsation compared to the case without obstacle.
机译:在本研究中,对在向后台阶上的层流脉动流进行了数值研究,以控制在台阶后面的方形障碍物的传热和流体流动。工作流体是普朗特数为0.71的空气,雷诺数在10和200之间变化。研究针对方形障碍物的三个不同垂直位置以及入口位置的不同强制频率进行了研究。使用基于有限体积的商业代码求解二维层流的Navier-Stokes和能量方程。可以看出,通过适当地放置方形障碍物,台阶后面的再循环区的长度和强度会受到很大影响,因此,它可以用作传热增强的被动控制元件。对于障碍物的两个不同的垂直位置,获得的努塞尔数最大值分别为228%和197%。另一方面,在雷诺数为200的脉动流情况下,与没有障碍物的情况相比,方形障碍物的两个位置对于带有脉动的传热增强是有效的。

著录项

  • 来源
    《Journal of Heat Transfer》 |2014年第8期|081701.1-081701.11|共11页
  • 作者单位

    Department of Mechanical Engineering, Celal Bayar University, Manisa 45140, Turkey;

    Department of Mechanical Engineering, Technology Faculty, Firat University, Elaz ig 23119, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pulsating flow; square obstacle; backward-facing step;

    机译:脉动流方形障碍物后退步骤;
  • 入库时间 2022-08-18 00:23:34

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