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An Evaluation of the Flux-Gradient Relationship in the Stable Boundary Layer

机译:稳定边界层中通量梯度关系的评估

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摘要

Data collected during the SHEBA and CASES-99 field programs are employed to examine the flux-gradient relationship for wind speed and temperature in the stably stratified boundary layer. The gradient-based and flux-based similarity functions are assessed in terms of the Richardson number Ri and the stability parameter z/*, z being height and * the local Obukhov length. The resulting functions are expressed in an analytical form, which is essentially unaffected by self-correlation, when thermal stratification is strong. Turbulence within the stably stratified boundary layer is classified into four regimes: nearly-neutral (0 < z/* < 0.02), weakly-stable (0.02 < z/* < 0.6), very-stable (0.6 < z/* < 50), and extremely-stable (z/* > 50). The flux-based similarity functions for gradients are constant in nearly-neutral conditions. In the very-stable regime, the dimensionless gradients are exponential, and proportional to (z/*)pd/e. The existence of scaling laws in extremely-stable conditions is doubtful. The Prandtl number Pr decreases from 0.9 in nearly-neutral conditions and to about 0.7 in the very-stable regime. The necessary condition for the presence of steady-state turbulence is Ri < 0.7.
机译:在SHEBA和CASES-99现场程序中收集的数据用于检查稳定分层边界层中风速和温度的通量-梯度关系。基于Richardson数Ri和稳定性参数z / *评估基于梯度和基于通量的相似性函数,其中z为高度,*为本地Obukhov长度。当热分层很强时,所得函数以解析形式表示,该解析形式基本上不受自相关的影响。稳定分层边界层内的湍流分为四个区域:近乎中性(0 50)。梯度的基于通量的相似性函数在接近中性的条件下是恒定的。在非常稳定的状态下,无量纲的梯度是指数的,并且与(z / *)pd / e成比例。在极端稳定的条件下是否存在缩放定律是令人怀疑的。普朗特数Pr从接近中性条件下的0.9降低到非常稳定状态下的约0.7。存在稳态湍流的必要条件是Ri <0.7。

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