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On the Mass-Flux Representation of Vertical Transport in Moist Convection

机译:关于湿对流垂直传输的质量通量表示

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This study investigates to what extent the convective fluxes formulated within the mass-flux framework can represent the total vertical transport of heat and moisture in the cloud layer and whether the same approach can be extended to represent the vertical momentum transport using large-eddy simulations (LESs) of six well-documented cloud cases, including both deep and shallow convection. Two methods are used to decompose the LES-resolved vertical fluxes: decompositions based on the coherent convective features using the mass-flux top-hat profile and by two-dimensional fast Fourier transform (2D-FFT) in terms of wavenumbers. The analyses show that the convective fluxes computed using the mass-flux formula can account for most of the total fluxes of conservative thermodynamic variables in the cloud layer of both deep and shallow convection for an appropriately defined convective updraft fraction, a result consistent with the mass-flux dynamic view of moist convection and previous studies. However, the mass-flux approach fails to represent the vertical momentum transport in the cloud layer of both deep and shallow convection. The 2D-FFT and other analyses suggest that such a failure results from a number of reasons: 1) the complicated momentum distribution in the cloud layer cannot be well described by the simple top-hat profile; 2) shear-driven small-scale eddies are more efficient momentum carriers than coherent convective plumes; 3) the phase relationship between vertical velocity and horizontal momentum components is substantially different from that between vertical velocity and conservative thermodynamic variables; and 4) the structure of horizontal momentum can change substantially from case to case even in the same climate regime.
机译:这项研究调查了质量通量框架内制定的对流通量在多大程度上可以代表云层中热量和水分的总垂直传输,以及是否可以使用大涡模拟将相同的方法扩展为代表垂直动量传输( 6个有据可查的云案例,包括深对流和浅对流。有两种方法可用于分解LES解析的垂直通量:基于相干对流特征的分解,使用相干对流特征,并使用波峰数和二维快速傅里叶变换(2D-FFT)进行了波数分解。分析表明,对于适当定义的对流上升气流分数,使用质量通量公式计算的对流通量可以解释深层和浅层对流云层中保守热力学变量的总通量,结果与质量一致对流动态视图和以前的研究。但是,质量通量方法不能代表深对流和浅对流云层中的垂直动量传输。 2D-FFT和其他分析表明,这种失败是由多种原因造成的:1)简单的高顶剖面无法很好地描述云层中复杂的动量分布; 2)剪切驱动的小涡旋比相干的对流羽流更有效。 3)垂直速度和水平动量分量之间的相位关系与垂直速度和保守的热力学变量之间的相位关系显着不同; 4)即使在相同的气候条件下,水平动量的结构也会因情况而发生实质性变化。

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