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Comparison of turbulence length scales assessed with three measurement systems in increasingly complex turbulent flows

机译:在越来越复杂的湍流中用三种测量系统评估的湍流长度刻度的比较

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摘要

This paper proposes to compare turbulence length scales measured with three different experimental systems commonly used in aerodynamic measurements, namely hot wire anemometer, Laser Doppler Velocimetry and Particle Image Velocimetry, using turn-key systems from Dantec and TSI, and for three different turbulent flows: a homogeneous and isotropic turbulent flow, a homogeneous shear flow and the wake of a porous disc. This study will show that Taylor macro scale assessment is not clearly dependent on the experimental system used, except for nonconstant shear, where the measurement volume size seems to be a critical parameter. On the other hand, Taylor micro-scale is highly dependent on the space or time resolution of the correlation and on the presence of random measurement noise. Among the three systems, only the hot wire anemometer seems to provide the right requirements to properly assess the Taylor micro-scale.
机译:本文建议使用Dantec和TSI的交钥匙系统,比较三种在空气动力学测量中常用的不同实验系统(即热线风速仪,激光多普勒测速仪和粒子图像测速仪)测量的湍流长度尺度,以及三种不同的湍流:均质各向同性的湍流,均质的剪切流和多孔盘的尾流。这项研究将表明,泰勒宏观尺度评估并不明显取决于所使用的实验系统,除了非恒定剪切力(测量体积大小似乎是关键参数)之外。另一方面,泰勒微尺度高度依赖于相关性的空间或时间分辨率以及随机测量噪声的存在。在这三个系统中,只有热线风速计似乎提供了正确评估泰勒微尺度的正确要求。

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