旋转槽中性边界层的物理模拟

E. Ferrero, A. Longhetto, L. Montabone, L. Mortarini, M. Manfrin, J. Sommeria, H. Didelle, C. Giraud, U. Rizza
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引用次数: 9

摘要

介绍了中性大气边界层(ABL)的实验室测量结果。该实验是在格勒诺布尔科里奥利-莱格伊实验室的大型旋转水箱中进行的。按缩小尺寸制作ABL并进行测量。产生平均流量,增加(向上旋转)和减少(向下旋转)平台的转速。声学探头的初步测量用于评估随后进行湍流测量的位置的流速随时间的衰减。然后使用PIV(粒子图像测速)技术测量平均速度和湍流场,该技术可以在模拟的ABL中获得高分辨率的测量结果。在每个旋转周期和速度条件下,在不同时间测量两个垂直截面的流动,然后在方便的几何(正交)和物理假设(流动的再现性)下,从两个平面场重建三维速度场。这项工作的目的是为测试和比较湍流模型和参数化收集有用的数据集。为此,特别注意湍流统计、湍流通量和尺度。给出了数据分析的结果并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physical simulations of neutral boundary layer in rotating tank
Laboratory measurements of neutral atmospheric boundary layer (ABL) are presented. The experiment was carried out in the large rotating tank of the Coriolis-LEGI laboratory in Grenoble. An ABL was created at reduced scale and measured. The mean flow was generated, both increasing (spin-up) and decreasing (spin-down) the rotation speed of the platform. Preliminary measurements by acoustic probes were used to assess the decay with time of the flow velocity at the position where turbulence measurements were subsequently performed. The mean velocity and the turbulence fields were then measured by using PIV (Particle Image Velocimetry) technique, which allows to obtain high-resolution measurements in the simulated ABL. For each rotation period and velocity conditions, two vertical cross-sections of the flow were measured at different times, then 3D velocity fields were reconstructed from the two planar fields under convenient geometric (orthogonal) and physical assumptions (reproducibility of the flow). The aim of this work is to collect a useful data set for testing and comparing turbulence models and parameterisations. For this reason, particular attention was paid to the turbulence statistics, turbulent fluxes and scales. The results of the data analysis are presented and discussed.
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