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汪科均, 李国平, 谢家旭, 刘海文. 2024. 重力波在四川盆地东北部一次夜间山地暴雨中的作用初探[J]. 暴雨灾害, 43(2): 146-157. DOI: 10.12406/byzh.2023-115
引用本文: 汪科均, 李国平, 谢家旭, 刘海文. 2024. 重力波在四川盆地东北部一次夜间山地暴雨中的作用初探[J]. 暴雨灾害, 43(2): 146-157. DOI: 10.12406/byzh.2023-115
WANG Kejun, LI Guoping, XIE Jiaxu, LIU Haiwen. 2024. The role of gravity wave in a nocturnal mountain rainstorm in the northeastern Sichuan Basin[J]. Torrential Rain and Disasters, 43(2): 146-157. DOI: 10.12406/byzh.2023-115
Citation: WANG Kejun, LI Guoping, XIE Jiaxu, LIU Haiwen. 2024. The role of gravity wave in a nocturnal mountain rainstorm in the northeastern Sichuan Basin[J]. Torrential Rain and Disasters, 43(2): 146-157. DOI: 10.12406/byzh.2023-115

重力波在四川盆地东北部一次夜间山地暴雨中的作用初探

The role of gravity wave in a nocturnal mountain rainstorm in the northeastern Sichuan Basin

  • 摘要: 利用GPM卫星降水、FY-4A卫星云图和ERA5再分析资料,对2018年7月10—11日发生在四川盆地东北部山地的一次夜间暴雨过程中的重力波作用进行初步探究。结果表明:(1) 云水含量的振荡形式及位温场的波状变化在一定程度上反映了波动对中尺度天气系统的影响。(2) 风垂直切变指数、热力螺旋度与水汽螺旋度变化的波动趋势存在于波动发生发展期间,一定程度上呈现出重力波特征。(3) 风垂直切变指数大值区、热力螺旋度和水汽螺旋度极值中心皆与降水量大值区有良好对应关系。(4) 地形扰动、切变不稳定、非地转平衡协同作用下可能形成重力波,并对此次暴雨产生增强作用。理查逊数小值区、非线性平衡方程的非零值区分别对雨带位置、移动方向具有指示作用。理查逊数的诊断表明,垂直切变不稳定在中尺度波动被激发之前形成;而垂直切变不稳定随波动增强而减弱,表明波动部分能量来自不稳定气流。

     

    Abstract: Mountain gravity wave characteristics are important for analyzing the nighttime heavy rainfall events occurring in Sichuan. Based on the GPM satellite precipitation data, FY-4A satellite cloud data, and ERA5 reanalysis data, we analyze the mesoscale characteristics of a nighttime rainstorm with a gravity wave that occurred on 10-11 July 2018 in the northeastern Sichuan Basin mountains. The results are as follows. (1) The oscillatory feature of cloud water content and the wavelike variation of the potential temperature field reflect, to some extent, the influence of the fluctuations on the mesoscale system. (2) The fluctuation trends of wind vertical shear index, thermal helicity, and moisture helicity appear during the development of waves, indicating the characteristics of gravity waves. (3) The areas with large values of wind vertical shear index, the extreme center of thermal helicity, and moisture helicity are consistent well with the heavy precipitation regions. (4) The gravity wave may be formed by the interaction of topographic disturbances, shear instability, and non-geostrophic equilibrium, which enhance the rainstorm. The regions with a small value of the Richardson number and a nonzero value of the nonlinear equilibrium equation can indicate the location and movement direction of the rainbands. Diagnosis of Richardson number shows that the vertical shear instability is formed before the mesoscale wave is excited, but it decreases with increasing fluctuations, which indicates that part of the energy of the waves comes from the unstable flow.

     

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