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首页> 外文期刊>International Journal of Thermal Sciences >An inverse study to design the optimal shape and position for delta winglet vortex generators of pin-fin heat sinks
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An inverse study to design the optimal shape and position for delta winglet vortex generators of pin-fin heat sinks

机译:设计销形翅片散热器的三角翼小涡旋发生器的最佳形状和位置的逆研究

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A three-dimensional inverse design problem is examined in this study using a general purpose commercial code CFD-ACE+ and the Levenberg-Marquardt Method (LMM) to estimate the optimal position and shape for delta winglet vortex generators of pin-fin heat sinks for best cooling performance. The algorithm is based on the minimization of the average temperature on the base plate of heat sinks and then try to obtain the optimal design variables for vortex generators of pin-fin heat sinks. The delta winglet vortex generators are utilized on a pin-fin heat sink to estimate the optimal design when the inlet velocities of air al to Re = 10,000, 15,000 and 20,000, respectively. Finally, the heat sink and vortex generator modules are carried on the experimental verification. The results indicate that with the designed optimal vortex generators the cooling performance is indeed better than that with the original design vortex generators and the temperature distributions on the base plate are very similar between the experimental and numerical data. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:在这项研究中,我们使用通用商业代码CFD-ACE +和Levenberg-Marquardt方法(LMM)来研究三维逆设计问题,以估算针翅式散热器的三角翼小涡旋发生器的最佳位置和形状,从而获得最佳效果。冷却性能。该算法基于最小化散热器底板上的平均温度,然后尝试为针翅式散热器的涡流发生器获得最佳设计变量。当空气的进气速度分别为Re = 10,000、15,000和20,000时,三角翼小涡流发生器用于针翅式散热器,以评估最佳设计。最后,对散热器和涡流发生器模块进行了实验验证。结果表明,采用设计的最佳涡流发生器,其冷却性能确实要优于采用原始设计的涡流发生器,并且基板上的温度分布在实验数据和数值数据之间非常相似。 (C)2016 Elsevier Masson SAS。版权所有。

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