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Inverted structurally inhomogeneous stepped agitators in a channel flow

机译:倒置在结构上不均匀的阶梯式搅拌器在通道流中

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摘要

Homogeneous thin-film agitators used in a channel flow have shown enhanced thermal-hydraulic performances compared to a clean channel benchmark. In this study, an experimental study was carried out to explore the performances of three inverted structurally inhomogeneous stepped agitator designs in the same channel flow in order to further improve the overall thermal-hydraulic performance of a heatsink. The three agitator designs were constructed by connecting two sections of material with different lengths while maintaining the constant total length of 6 mm as in our previous study: a relatively thicker 125-μm material mounted on the channel wall as the trailing edge and a thinner 25-μm material as the free leading edge. The new designs were expected to maximize fluid mixing enhancement but minimize pressure loss due to the unique structure of the inhomogeneous materials. Experiments in this study covered a wide Reynolds number range from 300 to 9000. High-speed footage was used to capture the dynamic motion of the agitators. At the same time, a time-resolved particle image velocimetry (TR-P1V) system was used to characterize the vortex dynamics due to the motion of agitators in various flow conditions. A synthetic thermal-hydraulic performance factor, η, taking into consideration both the Nu number enhancement and friction factor increment, was used to evaluate the overall effects of the added agitator features in the channel flow compared to a clean channel benchmark. Results show that a maximum factor of about 1.5 has been achieved, and it stays above 1 under most of the test conditions in this study, indicating great benefits for enhanced thermal transport.
机译:与干净的通道基准相比,在通道流中使用的均匀薄膜搅拌器示出了增强的热液压性能。在该研究中,进行了实验研究以探索在相同通道流中的三个倒置的结构上不均匀阶梯式搅拌器设计的性能,以进一步提高散热器的总热液压性能。三种搅拌器设计是通过将两个具有不同长度的材料部分连接,同时保持恒定的总长度为6毫米,如我们先前的研究中:安装在通道壁上的相对较厚的125μm材料作为后缘和更薄的25 -μm材料作为自由前缘。预计新设计将最大限度地提高流体混合增强,但由于不均匀材料的独特结构,最小化压力损失。本研究中的实验覆盖了300至9000的宽雷诺数范围。高速镜头用于捕捉搅拌器的动态运动。同时,由于搅拌器在各种流动条件下,使用时间分辨的粒子图像速度计(Tr-P1V)系统用于表征涡流动力学。使用合成的热液压性能因子η考虑到NU编号增强和摩擦因子增量,用于评估与清洁通道基准相比,评估沟道流中增加的搅拌器特征的整体效果。结果表明,已经实现了约1.5的最大因数,并且在本研究中的大多数测试条件下,它在1的高于1以上,表明增强热运输的良好益处。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第10期|120094.1-120094.12|共12页
  • 作者单位

    Department of Mechanical & Aerospace Engineering University of Missouri-Columbia Columbia MO 65211 United States;

    Department of Mechanical & Aerospace Engineering University of Missouri-Columbia Columbia MO 65211 United States;

    Department of Mechanical & Aerospace Engineering University of Missouri-Columbia Columbia MO 65211 United States;

    Department of Mechanical & Aerospace Engineering University of Missouri-Columbia Columbia MO 65211 United States;

  • 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

    Vortex dynamics; PIV; Thermal; Inhomogeneous; Flapping; Inverted agitator;

    机译:涡旋动力学;PIV;热的;不均匀的;扑;倒置搅拌器;

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