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Flow and Turbulence Control in a Boundary Layer Wind Tunnel Using Passive Hardware Devices

机译:使用被动硬件设备边界层风洞中的流动和湍流控制

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The Climatic Wind Tunnel (CWT) is a new experimental facility of the Institute of Theoretical and Applied Mechanics (ITAM) in Prague, Czech Republic. It is uniquely able to replicate precipitation and freezing effects on structural models in the climatic test section, and simultaneously perform aerodynamic and aeroelastic tests on structural models in the aerodynamic test section. Extensive measurements are carried out to investigate airflow and turbulence characteristics in the empty aerodynamic test section. Capability to experimentally simulate the atmospheric boundary layer (ABL) is studied using castellated barrier wall, Counihan vortex generators, and surface roughness elements. An individual influence of each of these passive hardware devices is separately tested as well, as they are commonly used combined, and their individual contributions to the ABL model characteristics are not well known. The analysis is based on hot-wire anemometer measurements carried out at various cross sections in the aerodynamic test section of the CWT. Experimental results are reported as mean velocity and turbulence intensity fields for the empty aerodynamic test section without passive hardware devices. Vertical profiles of mean velocity, turbulence intensity, and turbulence length scales, as well as power spectral density of velocity fluctuations, are reported for the ABL small-scale model. The barrier is observed to cause a decrease in flow velocity and an increase in turbulence close to surface. Vortex generators enhance turbulence throughout the entire height range under scope. Increased turbulence and decreased flow velocity are particularly exhibited close to surface due to surface roughness. Influence of each of the studied passive hardware devices on flow and turbulence is quantified in a dimensionless form to allow for separately accounting for their effects.
机译:气候风洞(CWT)是捷克共和国布拉格理论和应用力学(ITAM)研究所的新实验设施。它是独特的能够对气候试验部分中的结构模型进行沉淀和冻结效果,同时对空气动力学测试部分的结构模型同时进行空气动力学和空气弹性测试。进行广泛的测量,以研究空气动力学测试部分中的气流和湍流特性。使用Castellated屏障壁,注释涡流发生器和表面粗糙度元素研究了实验模拟了大气边界层(ABL)的能力。这些被动硬件设备中的每一个的单独影响也是单独测试的,因为它们通常被组合使用,并且它们对ABL模型特性的各个贡献是不公知的。该分析基于CWT的空气动力学测试部分的各种横截面进行的热线风速计测量。实验结果报告为没有被动硬件设备的空气动力学测试部分的平均速度和湍流强度场。据报道,ABL小规模模型报告了术语速度,湍流强度和湍流长度尺度的垂直曲线,以及速度波动的功率谱密度。观察到屏障导致流速降低和围绕表面的湍流增加。涡流发生器在范围下整个高度范围内提高湍流。由于表面粗糙度,湍流增加和流速下降近于表面。每个研究的被动硬件装置对流动和湍流的影响以无量纲形式量化,以允许单独核对它们的效果。

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