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首页> 外文期刊>International Journal of Heat and Fluid Flow >Boundary layer measurements over a body of revolution using long-distance particle image velocimetry
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Boundary layer measurements over a body of revolution using long-distance particle image velocimetry

机译:使用长距离粒子图像VENOCIMETRY在旋转体上进行边界层测量

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摘要

This study reports the development and application of long-distance high magnification Particle Image Velocimetry (PIV) to measure the mean and fluctuating velocity components in a turbulent boundary layer over a body of revolution. A 400 mm lens coupled with an extension tube and a novel aperture control mechanism has enabled high resolution images at a working distance of 1.5 m. The body of revolution used in the investigation is representative of a conventional submarine hull without appendages, as per (Joubert, 2006). The flow over the model was measured at a nominal Reynolds number, Re-L = 4.0 x 10(6), based on the length of the body. A comparison of single-point statistics from the PIV experiments were found to compare well with pitot probe and hot-wire measurements. Further, the boundary layer thickness and mean streamwise velocity were found to conform closely with a traditional flat plate turbulent boundary layer in the parallel mid-body section of the geometry. However, a comparison of the streamwise and wall-normal Reynolds stresses with Direct Numerical Simulations (DNS) of a turbulent boundary layer on a flat plate with zero pressure gradient indicated lower turbulence levels. This was partly attributed to the spatial averaging evident both in the hot-wire and PIV measurements. We also report that in the tail section of the model, the boundary layer rapidly grows and departs from the flat plate solution due to the conical section and adverse pressure gradient imposed on the flow.
机译:该研究报告了长距离高倍率粒子图像速度(PIV)的开发和应用,以测量旋转体内湍流边界层中的平均值和波动速度分量。与延伸管连接的400毫米镜头和新颖的孔径控制机构使能够在1.5米的工作距离处使高分辨率图像能够。调查中使用的革命的革命是常规潜艇船体,没有附属于(Joubert,2006)。基于体的长度,在标称雷诺数,Re-L = 4.0×10(6)处测量模型上的流量。发现了PIV实验中单点统计的比较与皮托特探针和热线测量相比很好。此外,发现边界层厚度和平均速度速度与几何形状的平行中间体部分中的传统平板湍流边界层紧密符合。然而,流动和壁际雷诺应力在具有零压梯度的平板上的湍流边界层的直接数值模拟(DNS)的比较,其具有零压梯度表示较低的湍流水平。这部分归因于热线和PIV测量中的空间平均值。我们还报告说,在模型的尾部,边界层由于锥形部分和施加在流动上的不利压力梯度而迅速增长并从平板溶液中脱离。

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