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Velocity and temperature derivatives in high-Reynolds-number turbulent flows in the atmospheric surface layer. Part 1. Facilities, methods and some general results

机译:高雷诺数湍流在大气表层的速度和温度导数。第1部分。设施,方法和一些一般结果

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摘要

This is a report on a field experiment in an atmospheric surface layer at heights between 0.8 and 10m with the Taylor micro-scale Reynolds number in the range Reλ = 1.6−6.6 ×103. Explicit information is obtained on the full set of velocity and temperature derivatives both spatial and temporal, i.e. no use of Taylor hypothesis is made. The report consists of three parts. Part 1 is devoted to the description of facilities, methods and some general results. Certain results are similar to those reported before and give us confidence in both old and new data, since this is the first repetition of this kind of experiment at better data quality. Other results were not obtained before, the typical example being the so-called tear-drop R-Q plot and several others. Part 2 concerns accelerations and related matters. Part 3 is devoted to issues concerning temperature, with the emphasis on joint statistics of temperature and velocity derivatives. The results obtained in this work are similar to those obtained in experiments in laboratory turbulent grid flow and in direct numerical simulations of Navier-Stokes equations at much smaller Reynolds numbers Reλ ~ 102, and this similarity is not only qualitative, but to a large extent quantitative. This is true of such basic processes as enstrophy and strain production, geometrical statistics, the role of concentrated vorticity and strain, reduction of nonlinearity and non-local effects. The present experiments went far beyond the previous ones in two main respects. (i) All the data were obtained without invoking the Taylor hypothesis, and therefore a variety of results on fluid particle accelerations became possible. (ii) Simultaneous measurements of temperature and its gradients with the emphasis on joint statistics of temperature and velocity derivatives. These are reported in Parts 2 and 3
机译:这是一份关于大气表层高度在0.8到10m之间的泰勒微观雷诺数在Reλ= 1.6−6.6×103范围内的现场实验的报告。在空间和时间的速度和温度导数的全部集合上都获得了明确的信息,即没有使用泰勒假设。该报告包括三个部分。第1部分专门介绍设施,方法和一些一般结果。某些结果与以前报道的结果相似,这使我们对新旧数据都充满信心,因为这是这种实验的第一次重复,但数据质量更高。以前没有获得其他结果,典型示例是所谓的泪滴R-Q图和其他几个结果。第2部分涉及加速和相关事项。第3部分专门讨论温度问题,重点是温度和速度导数的联合统计。在这项工作中获得的结果与在实验室湍流网格流中的实验以及在更小的雷诺数Reλ〜102的Navier-Stokes方程的直接数值模拟中获得的结果相似,并且这种相似性不仅在定性上,而且在很大程度上定量的。诸如回旋和应变产生,几何统计,涡旋和应变集中的作用,非线性的减少和非局部效应等基本过程都是如此。目前的实验在两个主要方面远远超过了先前的实验。 (i)所有数据都是在没有引用泰勒假设的情况下获得的,因此有关流体粒子加速度的各种结果成为可能。 (ii)同时测量温度及其梯度,重点是温度和速度导数的联合统计。这些在第2部分和第3部分中进行了报告

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