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首页> 外文期刊>Geophysical Research Letters >On the parameterization of surface momentum transport via drag coefficient in low-wind conditions
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On the parameterization of surface momentum transport via drag coefficient in low-wind conditions

机译:低风条件下通过阻力系数传递地表动量的参数化研究

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摘要

The subgrid-scale surface momentum transport, which plays an important role in determining the exchange between the atmosphere and the underlying surface, is often parameterized in terms of the surface mean wind speed via drag coefficient (C_D), a parameter that needs to be determined externally often through the Monin-Obukhov Similarity (MOS) Theory. However, some characteristics of C_D derived from observations for overland conditions, particularly the substantial increase of C_D with a decrease in wind speed in low-wind conditions, cannot be explained by MOS. This issue is investigated using data collected by a portable meteorological tower. By analyzing the turbulent kinetic energy budget, a novel parameterization framework for momentum fluxes is proposed. The new parameterization not only appropriately describes the observed variation of C_D but also can be simplified to MOS with certain assumptions. Moreover, the effect of stability, which traditionally has to be determined empirically, can now be determined internally within the new framework.
机译:亚网格规模的表面动量传输在确定大气层与下层表面之间的交换中起着重要作用,通常通过阻力系数(C_D)来表示表面平均风速,该参数需要确定外部通常通过莫宁-奥布科夫相似性(MOS)理论。但是,MOS不能解释从陆上条件的观测得出的C_D的某些特征,特别是在低风条件下随着风速的降低C_D的大幅增加。使用便携式气象塔收集的数据调查了此问题。通过分析湍动能预算,提出了动量通量的新型参数化框架。新的参数化不仅可以适当地描述所观察到的C_D变化,而且可以在某些假设下简化为MOS。此外,传统上必须凭经验确定的稳定性影响现在可以在新框架内内部确定。

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