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Evolution mechanisms of the intraseasonal oscillation associated with the Yangtze River Basin flood in 1998

机译:1998年长江流域汛期季节内振荡的演变机理

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摘要

With 1998 NCEP reanalysis data and the linear diagnostic equation for local meridional circulation, four main processes and the boundary effects with relatively large contributions to the intraseasonal oscillation of the vertical branches of the East Asian meridional circulation are quantitatively identified among all the processes involved in the quasi-primitive equations used in the derivation of the linear diagnostic equation. The numerical results show that the main processes with maximal contributions in the lower latitudes include the latent heating and vertical transports of sensible heat. These processes are mainly associated with the tropical convective activities and result in the low-frequency cyclones in the lower latitudes. The main processes with maximal contributions in the higher latitudes are the horizontal transports of westerly momentum and horizontal temperature advections. These processes are mainly associated with the fluctuations in the westerlies and result in the low-frequency cyclones in the higher latitudes. The low-frequency cyclones propagating away from lower latitudes not only interact with those from higher latitudes to enhance the lifting of the moist air in the Yangtze River Basin (YRB), but also leave room for the development of the low-frequency anticyclones over the South China Sea (SCS). The southwesterly in the northwestern quadrant of the SCS anticyclones provides the YRB with abundant moisture. This favorable moisture condition along with the enhanced rising motion in the YRB leads to the extraordinary flood in 1998.
机译:利用1998年NCEP再分析数据和局部子午环流的线性诊断方程,在与该子午线环流有关的所有过程中,定量地确定了四个主要过程以及对东亚子午环流垂直分支的季节内振荡有较大贡献的边界效应。线性诊断方程式推导中使用的准本原方程式。数值结果表明,在低纬度地区贡献最大的主要过程包括潜热和显热的垂直传输。这些过程主要与热带对流活动有关,并导致低纬度地区发生低频旋风。在高纬度地区贡献最大的主要过程是西风动量的水平传输和水平温度对流。这些过程主要与西风的波动有关,并导致高纬度地区发生低频旋风。远离低纬度传播的低频旋风分离器不仅与来自高纬度的旋风分离器相互作用,以增强长江流域(YRB)中潮湿空气的提升,而且还为低空旋风分离器的发展留出了空间。南海(SCS)。 SCS反气旋的西北象限的西南方为YRB提供了充足的水分。这种有利的水分条件以及高铁沿岸的上升运动导致了1998年的特大洪水。

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