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首页> 外文期刊>Physics of fluids >Spectral scaling of static pressure fluctuations in the atmospheric surface layer: The interaction between large and small scales
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Spectral scaling of static pressure fluctuations in the atmospheric surface layer: The interaction between large and small scales

机译:大气表层静压力波动的谱标度:大尺度和小尺度之间的相互作用

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摘要

Static pressure fluctuations measured in the atmospheric surface layer over a grass covered forest clearing are studied in the context of Townsend's 1961 hypothesis regarding the effect of the outer region on the inner region. It is shown that large-scale pressure features are actively straining the inertial-scale pressure fluctuations, thus invalidating the direct extension of Kolmogorov's 1941 hypothesis to the spectral scaling of pressure within the inertial subrange. A parameter describing the large scale pressure fluctuations is added to the set of variables responsible for inertial-range pressure differences and dimensional analysis is employed to derive an improved scaling law for pressure spectra which more closely matches these and previous experimental results. An examination of the Poisson equation for pressure is conducted and found to support the dimensional and experimental results. (C) 1998 American Institute of Physics. [References: 33]
机译:在Townsend 1961年关于外部区域对内部区域的影响的假说的背景下,研究了在草地覆盖的森林砍伐地区的大气表层测得的静压波动。结果表明,大规模的压力特征正在积极地抑制惯性尺度的压力波动,从而使Kolmogorov 1941年假设的直接扩展无效化到惯性子范围内的压力谱尺度。将描述大规模压力波动的参数添加到负责惯性范围内压力差的变量集,并使用尺寸分析来得出改进的压力谱缩放定律,该定律与这些实验结果和先前的实验结果更加匹配。对压力的泊松方程进行了检查,发现可以支持尺寸和实验结果。 (C)1998美国物理研究所。 [参考:33]

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