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首页> 外文期刊>International Journal of Climatology: A Journal of the Royal Meteorological Society >Water vapour transport associated with tropical-temperate trough systems over southern Africa and the southwest Indian Ocean
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Water vapour transport associated with tropical-temperate trough systems over southern Africa and the southwest Indian Ocean

机译:与南部非洲和西南印度洋上的热带-温带水槽系统相关的水蒸气传输

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Tropical-temperate trough (TTT) systems are the dominant rain-producing synoptic type over southern Africa. They represent an important mechanism of poleward transport of energy and momentum. This paper provides an analysis of water vapour transport in TTT systems. An objective sampling of TTT systems is conducted from analysis of daily satellite rainfall products. During the sampled TTT events, rain bands extend from tropical southern Africa near 10 °S to the midlatitudes of the southwest Indian Ocean. The divergent and non-divergent (streamfunction) components of vertically integrated water vapour flux associated with major TTT events are calculated, from National Centers for Environmental Prediction reanalysis data. During TTT events the streamfunction circulation dominates water vapour transport, although adjustments to the divergent component are relatively more important. The results indicate that TTT events facilitate a substantial water vapour flux from the tropics into the midlatitudes. Water vapour transport to the midlatitudes along the TTT axis is facilitated largely by changes to the streamfunction, associated with a strengthening and eastward displacement of the Indian Ocean high, and the advent of midlatitude transients. It is also shown that TTT systems are major regions of moisture convergence. The high vapour concentrations along the full extent of the TTT rain bands are maintained by the divergent circulation. The structure of these divergent vapour flux anomalies is suggestive of adjustments to the Walker circulation, involving strong anomalous divergence over the maritime continent/west Pacific and a weaker enhancement of the major divergence centre over the tropical Atlantic.
机译:热带温带槽(TTT)系统是南部非洲主要的产雨天气类型。它们代表了能量和动量极向传输的重要机制。本文提供了TTT系统中水蒸气传输的分析。通过对每日卫星降雨产品的分析,可以对TTT系统进行客观采样。在采样的TTT事件期间,雨带从10°S附近的热带南部非洲延伸到西南印度洋的中纬度。根据国家环境预测中心的再分析数据,计算了与主要TTT事件相关的垂直积分水汽通量的发散和非发散(流函数)分量。在TTT事件中,虽然对发散分量的调整相对更重要,但流函数循环控制着水蒸气的传输。结果表明,TTT事件促进了从热带到中纬度的大量水汽通量。沿TTT轴向中纬度的水汽输送在很大程度上是由于河流功能的变化而引起的,这与印度洋高空的加强和向东位移以及中纬度瞬变的出现有关。还表明TTT系统是水分收敛的主要区域。沿TTT雨带的整个范围的高蒸气浓度通过发散循环得以维持。这些发散的蒸汽通量异常的结构暗示着对沃克环流的调整,包括在海洋大陆/西太平洋上强烈的异常发散以及在热带大西洋上主要发散中心的增强减弱。

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