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A Simple Model for the Afternoon and Early Evening Decay of Convective Turbulence Over Different Land Surfaces

机译:不同陆地表面对流湍流下午和傍晚衰减的简单模型

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A simple model to study the decay of turbulent kinetic energy (TKE) in the convective surface layer is presented. In this model, the TKE is dependent upon two terms, the turbulent dissipation rate and the surface buoyancy fluctuations. The time evolution of the surface sensible heat flux is modelled based on fitting functions of actual measurements from the LITFASS-2003 field campaign. These fitting functions carry an amplitude and a time scale. With this approach, the sensible heat flux can be estimated without having to solve the entire surface energy balance. The period of interest covers two characteristic transition sub-periods involved in the decay of convective boundary-layer turbulence. The first sub-period is the afternoon transition, whenthe sensible heat flux starts to decrease in response to the reduction in solar radiation. It is typically associated with a decay rate of TKE of approximately t~2 (t is time following the start of the decay) after several convective eddy turnover times.The early evening transition is the second sub-period, typically just before sunset when the surface sensible heat flux becomes negative. This sub-period is characterized by an abrupt decay in TKE associated with the rapid collapse of turbulence. Overall, the results presented show a significant improvement of the modelled TKE decay when compared to the often applied assumption of a sensible heat flux decreasing instantaneously or with a very short forcing time scale. In addition, for atmospheric modelling studies, it is suggested that the afternoon and early evening decay of sensible heat flux be modelled as a complementary error function.
机译:提出了一个简单的模型来研究对流表层湍流动能(TKE)的衰减。在此模型中,TKE取决于两个因素,湍流耗散率和表面浮力波动。基于LITFASS-2003野战活动中实际测量值的拟合函数,对表面感热通量的时间演变进行了建模。这些拟合函数带有振幅和时间标度。使用这种方法,可以估算显热通量,而不必解决整个表面能平衡。感兴趣的期间涵盖了对流边界层湍流衰减的两个特征性过渡子时期。第一个子时段是下午的过渡,当感热流响应于太阳辐射的减少而开始减小时。在几次对流涡旋转换时间之后,它通常与大约t〜2的TKE衰减率相关(t是衰减开始后的时间)。傍晚的过渡是第二个子周期,通常在日落之前。表面显热通量为负。该子时期的特征在于与湍流的迅速崩溃相关的TKE的突然衰减。总体而言,与经常应用的显着热通量瞬时降低或强迫时间尺度很短的假设相比,所呈现的结果表明,模拟的TKE衰减得到了显着改善。此外,对于大气模型研究,建议将显热通量的下午和傍晚衰减建模为互补误差函数。

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