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An alternative mass flux profile in the Kain-Fritsch convective parameterization and its effects in seasonal precipitation

机译:Kain-Fritsch对流参数化中的替代质量通量分布及其对季节降水的影响

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The authors have altered the vertical profile of updraft mass flux detrainment in an implementation of the Kain-Fritsch2 (KF2) convective parameterization within the fifth-generation Pennsylvania State University-National Center for Atmospheric Research (Penn State-NCAR) Mesoscale Model (MM5). The effect of this modification was to alter the vertical profile of convective parameterization cloud mass (including cloud water and ice) supplied to the host model for explicit simulation by the grid-resolved dynamical equations and parameterized microphysical processes. These modifications and their sensitivity to horizontal resolution in a matrix of experimental simulations of the June-July 1993 flood in the central United States were tested. The KF2 modifications impacted the diurnal cycle of precipitation by reducing precipitation from the convective parameterization and increasing precipitation from more slowly evolving mesoscale processes. The modified KF2 reduced an afternoon bias of high precipitation rate in both low- and high-resolution simulations but affected mesoscale precipitation processes only in high-resolution simulations. The combination of high- resolution and modified KF2 resulted in more frequent and more realistically clustered propagating, nocturnal mesoscale precipitation events and agreed best with observations of the nocturnal precipitation rate.
机译:作者在第五代宾夕法尼亚州立大学-国家大气研究中心(Penn State-NCAR)中尺度模型(MM5)中实施了Kain-Fritsch2(KF2)对流参数化的实现,更改了上升气流通量减量的垂直分布。 。这种修改的效果是改变对流参数化云团质量(包括云水和冰)的垂直剖面,该对流参数化云团提供给宿主模型,以通过网格解析动力学方程和参数化微物理过程进行显式模拟。在美国中部1993年6月至7月洪水的实验模拟矩阵中,测试了这些修改及其对水平分辨率的敏感性。 KF2修饰通过减少对流参数化产生的降水和增加较慢演化的中尺度过程的降水来影响降水的昼夜循环。改进的KF2在低分辨率和高分辨率模拟中均降低了高降水速率的午后偏差,但仅在高分辨率模拟中影响了中尺度降水过程。高分辨率和改良的KF2的结合导致了更频繁,更实际的集群传播,夜间中尺度降水事件,并且与夜间降水速率的观测最吻合。

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