寿绍文, 李耀辉, 范可. 2001: 暴雨中尺度气旋发展的等熵面位涡分析. 气象学报, (5): 560-568. DOI: 10.11676/qxxb2001.060
引用本文: 寿绍文, 李耀辉, 范可. 2001: 暴雨中尺度气旋发展的等熵面位涡分析. 气象学报, (5): 560-568. DOI: 10.11676/qxxb2001.060
Shou Shaowen, Li Yaohui, Fan Ke. 2001: ISENTROPIC POTENTIAL VORTICITY ANALYSIS OF THE MESOSCALE CYCLONE DEVELOPMENT IN A HEAVY RAIN PROCESS. Acta Meteorologica Sinica, (5): 560-568. DOI: 10.11676/qxxb2001.060
Citation: Shou Shaowen, Li Yaohui, Fan Ke. 2001: ISENTROPIC POTENTIAL VORTICITY ANALYSIS OF THE MESOSCALE CYCLONE DEVELOPMENT IN A HEAVY RAIN PROCESS. Acta Meteorologica Sinica, (5): 560-568. DOI: 10.11676/qxxb2001.060

暴雨中尺度气旋发展的等熵面位涡分析

ISENTROPIC POTENTIAL VORTICITY ANALYSIS OF THE MESOSCALE CYCLONE DEVELOPMENT IN A HEAVY RAIN PROCESS

  • 摘要: 利用中尺度模式MM4对1991年7月5~6日的江淮梅雨锋暴雨过程进行了数值模拟。用模式输出资料,根据湿位涡理论分析了这次暴雨过程中对流层低层的中尺度低涡及地面气旋发生发展的原因。结果表明,在有利的等熵面形态下,具有较高湿位涡值的高层冷空气沿等熵面快速向南下降的过程中绝对涡度增加,导致了气旋性涡旋的发展加强。

     

    Abstract: The mesoscale model MM4 was used to simulate the torrential rain associated with Meiyu front occurring in 5-6 July.1991 in the Changjiang-Huaihe Basin. Based on the outputs of the model. the cause of the mesoscale cyclogenesis on the lower troposphere has been investigated in terms of the potential vorticity principle. The results show that the favorable pattern of the moist isentropic surface and the cold air slided down along the moist isentropic surface rapidly were the favorable factors to increase the absolute vorticity, and to cause the cyclogenesis.

     

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