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Comparison of the flow-field characteristics of a slot synthetic jet with and without sidewalls

机译:槽合成喷射的流场特性与侧壁的槽合成喷射的比较

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摘要

In this paper, experimental investigation of the flow-field of a slot synthetic jet (SJ) with and without sidewalk, issuing into a quiescent environment is systematically reported. Two parallel sidewalls were mounted along the shorter side of the slot extending in the streamwise direction to constrain the flow along the slot span. Hot-wire anemometry was used to explore the flow-field characteristics of both configurations at a Reynolds number of 4000 based on the slot-width and slot average exit velocity during the ejection phase. The present work is a first step towards the investigation of the SJ flow-field characteristics in a bounded region. In a number of generic situations, this work is of high importance as the SJ is deployed in constrained environments (e.g., in cooling applications) where sidewalls may be present. The relative difference in the magnitude of the distinct peaks in the near-field spanwise velocity profiles for both configurations reveals that the vortex does not get curled up towards the centerline in the case of the synthetic jet with sidewalls due to the presence of the no-slip walls. Spectral analysis in the near-wall region further confirms the absence of the phenomenon of axis-switching in the case of the synthetic jet with sidewalls. This behavior is also demonstrated with the help of the relative spreading rate in both configurations, where the unbounded synthetic jet spreads rapidly compared to the bounded one, due to greater entrainment of the surrounding fluid. The statistically two-dimensional region for a synthetic jet with sidewalls is found to extend over a longer axial distance in the downstream. The other jet properties such as turbulence intensity, skewness, and flatness factors further reveal the differences in the flow-field of the two configurations. The results show that the presence of the sidewalls strongly influences the SJ flow-field and hence, it would significantly impact the heat transfer capacity of the SJ.
机译:本文报道,系统地报道了具有和横穿人行道的槽合成喷射(SJ)的实验研究,以发出静态环境。沿着在流动方向上延伸的槽的较短侧安装两个平行的侧壁,以限制沿槽跨度的流动。基于喷射相期间的槽宽和槽平均出口速度,使用热线风化探索在雷诺数4000的雷诺数的配置的流场特性。本作本作是探讨有界区域中的SJ流场特征的第一步。在许多通用情况下,这项工作具有很高的重要性,因为SJ部署在可能存在侧壁的受限环境中(例如,在冷却应用中)。两种配置近场血管速度分布中的不同峰值的大小的相对差异揭示了由于不存在的侧壁的合成喷射的情况下,涡流不会朝向中心线弯曲。滑墙。近壁区域的光谱分析进一步证实了在用侧壁的合成射流的情况下不存在轴切换现象。在这两种配置中的相对扩散速率的帮助下也证明了这种行为,其中未绑定的合成射流与界定的合成射流相比迅速扩散,由于周围流体更大的夹带。发现具有侧壁的合成射流的统计上二维区域被发现在下游的延长距离上延伸。其他喷射性能,如湍流强度,偏斜和平坦因素进一步揭示了两种配置的流场中的差异。结果表明,侧壁的存在强烈影响SJ流场,从而显着影响SJ的传热容量。

著录项

  • 来源
    《International Journal of Heat and Fluid Flow》 |2020年第4期|108535.1-108535.15|共15页
  • 作者单位

    Department of Mechanical Engineering The University of Auckland Private Bag 92019 Auckland 1142 New Zealand;

    Department of Mechanical Engineering The University of Auckland Private Bag 92019 Auckland 1142 New Zealand;

    Department of Mechanical Engineering The University of Auckland Private Bag 92019 Auckland 1142 New Zealand;

  • 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; Synthetic jet; Sidewalls; No-slip; Axis-switching;

    机译:涡流;合成喷射;侧壁;禁止;轴切换;

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