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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Diurnal variation of rainfall in the Yangtze River Valley during the spring-summer transition from TRMM measurements
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Diurnal variation of rainfall in the Yangtze River Valley during the spring-summer transition from TRMM measurements

机译:TRMM测量值在春夏过渡期长江流域降水的日变化

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A 12 year archive of the Tropical Rainfall Measuring Mission (TRMM) rain rate is used to document the regionality of diurnal rainfall cycle in the Yangtze River Valley (YRV). The regional rain peaks, local phase shifts, rain event's behavior, and related seasonal change from March to August are examined. In the middle reach of YRV, rainfall appears mainly in early morning and displays a distinct local shift of diurnal phase. Such features are well established at each presummer (from May to June) and result from the eastward migrating events with a late night growth in size. They are supported by the low-level convergence that moves from the east slope of the Tibetan Plateau to the middle reach of YRV, as the deviated wind vector rotates clockwise to enhance southerlies at late night and southwesterlies in the morning. In the lower reach of YRV, however, one observes an eruption of morning rainfall with less local difference in diurnal phase. Morning rainfall is active in presummers of some years but suppressed in some others, contributing greatly to the variance of rainfall budget and resulting in anomalous wet/dry seasons. It is found to arise from a local growth of rain events rather than the migrating events from the middle reach. A majority of these organized convections prefer to form and develop in a beltshaped zone where the nocturnal southwesterlies of warm/moist air impinge on the Meiyu front in the lower troposphere.
机译:热带降雨测量团(TRMM)降雨率的12年档案用于记录长江流域(YRV)的日降水周期的区域性。考察了3月至8月的区域降雨峰值,局部相移,降雨事件的行为以及相关的季节变化。在YRV的中部,降雨主要出现在清晨,并且表现出明显的局部日变化。这些特征在每个盛夏(从5月到6月)都得到了很好的确立,并且是由于东迁事件导致的,并且夜间的规模有所增加。它们的支持是从青藏高原东坡到YRV中游的低层收敛,这是因为偏风矢量顺时针旋转以增强深夜的南风和早晨的西南风。然而,在YRV的下游,人们观察到喷发的早晨降雨,昼夜阶段的局部差异较小。早降雨在某些年份处于活跃状态,而在另一些年份则受到抑制,这极大地影响了降雨预算的变化,并导致了干湿季节的异常。发现这是由于降雨事件的局部增长而不是中游地区的迁移事件引起的。这些有组织的对流中的大多数都倾向于在带状区域中形成和发展,在该带状区域中,夜间的西南暖风/湿空气撞击对流层下层的梅雨锋。

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