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首页> 外文期刊>Physics of fluids >Estimating intermittency exponent in neutrally stratified atmospheric surface layer flows: A robust framework based on magnitude cumulant and surrogate analyses
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Estimating intermittency exponent in neutrally stratified atmospheric surface layer flows: A robust framework based on magnitude cumulant and surrogate analyses

机译:估计中性分层大气表层流的间歇指数:基于幅度累积量和替代分析的稳健框架

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摘要

This study proposes a novel framework based on magnitude cumulant and surrogate analyses to reliably detect the presence of intermittency and estimate the intermittency coefficient from short-length coarse-resolution turbulent time series. Intermittency coefficients estimated from a large number of neutrally stratified atmospheric surface layer turbulent series from various field campaigns are shown to remarkably concur with well-known laboratory experimental results. In addition, surrogate-based hypothesis testing significantly reduces the likelihood of detecting a spurious nonzero intermittency coefficient from nonintermittent series. The discriminatory power of the proposed framework is promising for addressing the unresolved question of how atmospheric stability affects the intermittency properties of boundary layer turbulence. (c) 2007 American Institute of Physics.
机译:这项研究提出了一种基于量值累积量和替代分析的新颖框架,以可靠地检测间歇性的存在并从短长度粗分辨率湍流时间序列估计间歇性系数。从各种野战获得的大量中性分层大气表层湍流序列估算的间歇系数显示出与众所周知的实验室实验结果非常一致。此外,基于代理的假设检验显着降低了从非间歇序列中检测到虚假的非零间歇系数的可能性。所提出框架的区分能力有望解决大气稳定性如何影响边界层湍流的间歇性这一未解决的问题。 (c)2007年美国物理研究所。

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