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Dissipation rate of turbulent kinetic energy in stably stratified sheared flows

机译:稳定分层剪切流中湍动能的耗散率

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Over the years, the problem of dissipation rate of turbulent kinetic energy (TKE) in stable stratification remained unclear because of the practical impossibility to directly measure the process of dissipation that takes place at the smallest scales of turbulent motion. Poor representation of dissipation causes intolerable uncertainties in turbulence-closure theory and thus in modelling stably stratified turbulent flows. We obtain a theoretical solution to this problem for the whole range of stratifications from neutral to limiting stable; and validate it via (i)?direct numerical simulation (DNS) immediately detecting the dissipation rate and (ii)?indirect estimates of dissipation rate retrieved via the TKE budget equation from atmospheric measurements of other components of the TKE budget. The proposed formulation of dissipation rate will be of use in any turbulence-closure models employing the TKE budget equation and in problems requiring precise knowledge of the high-frequency part of turbulence spectra in atmospheric chemistry, aerosol science, and microphysics of clouds.
机译:多年来,由于实际不可能直接测量在最小湍流尺度下发生的耗散过程,因此在稳定分层中湍动能耗散率的问题仍然不清楚。耗散的不良表示在湍流闭合理论中产生了无法容忍的不确定性,因此在稳定地分层湍流建模中也是如此。对于从中性到极限稳定的整个分层范围,我们都可以从理论上解决该问题。并通过(i)直接数值模拟(DNS)立即检测耗散率和(ii)通过TKE预算方程从TKE预算其他组成部分的大气测量值中获取的间接耗散率间接估计来对其进行验证。拟议的耗散率公式将用于采用TKE预算方程的任何湍流闭合模型中,以及需要在大气化学,气溶胶科学和云层微物理学中精确了解湍流频谱高频部分的问题中。

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