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Surface-Layer Similarity Functions for Dissipation Rate and Structure Parameters of Temperature and Humidity Based on Eleven Field Experiments

机译:基于十一场实验的湿热耗散率和结构参数的表面相似函数

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摘要

In the literature, no consensus can be found on the exact form of the universal funtions of Monin-Obukhov similarity theory (MOST) for the structure parameters of temperature, , and humidity, , and the dissipation rate of turbulent kinetic energy, . By combining 11 datasets and applying data treatment with spectral data filtering and error-weighted curve-fitting we first derived robust MOST functions of and that cover a large stability range for both unstable and stable conditions. Second, as all data were gathered with the same instrumentation and were processed in the same way-in contrast to earlier studies-we were able to investigate the similarity of MOST functions across different datasets by defining MOST functions for all datasets individually. For and we found no substantial differences in MOST functions for datasets over different surface types or moisture regimes. MOST functions of differ from that of , but we could not relate these differences to turbulence parameters often associated with non-local effects. Furthermore, we showed that limited stability ranges and a limited number of data points are plausible reasons for variations of MOST functions in the literature. Last, we investigated the sensitivity of fluxes to the uncertainty of MOST functions. We provide an overview of the uncertainty range for MOST functions of and , and suggest their use in determining the uncertainty in surface fluxes.
机译:在文献中,关于温度,湿度和湍流动能的耗散率的结构参数,Monin-Obukhov相似性理论(MOST)的通用函数的确切形式没有达成共识。通过组合11个数据集并通过光谱数据滤波和误差加权曲线拟合对数据进行处理,我们首先得出的健壮MOST函数,该函数涵盖了不稳定和稳定条件下的较大稳定性范围。其次,由于所有数据都是使用相同的仪器收集并以相同的方式进行处理的(与早期研究相反),我们能够通过分别定义所有数据集的MOST函数来研究不同数据集之间MOST函数的相似性。对于,我们发现不同表面类型或湿度条件下数据集的MOST函数没有实质性差异。 MOST函数与的函数不同,但我们无法将这些差异与经常与非局部效应相关的湍流参数联系起来。此外,我们表明有限的稳定性范围和有限的数据点是文献中MOST功能变化的合理原因。最后,我们研究了通量对MOST函数不确定性的敏感性。我们概述了和的MOST函数的不确定性范围,并建议将其用于确定表面通量的不确定性。

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