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On the Fine-Scale Topography Regulating Changes in Atmospheric Hydrological Cycle and Extreme Rainfall over West Africa in a Regional Climate Model Projections

机译:在区域气候模式投影中调节西非大气水文循环和极端降雨的精细尺度地形

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The ICTP-RegCM3 is used to downscale at 40 km projections from ECHAM5 over West Africa during the mid and late 21st Century. The results show that while ECHAM5 projects wetter climate along the Gulf of Guinea and drier conditions along the Sahel, RegCM3 produces contrasting changes for low-elevation (negative) and high-elevation (positive) terrains more marked during the second period. These wetter conditions in the uplands result from an intensification of the atmospheric hydrological cycle arising as a consequence of more frequent and denser rainy days and leading to larger intensity and more extreme events. Examination of the large-scale dynamics reveal that these conditions are mostly driven by increased low-level moisture convergence which produces elevated vertical motion above Cameroun’s mountainous areas favoring more atmospheric instability, moisture, and rainfall. This regulation of climate change signal by high-elevation terrains is feasible only in RegCM3 as the driving ECHAM5 is smoothing along all the Gulf of Guinea. This consolidates the need to use regional climate model to investigate the regional and local response of the hydrological cycle, the daily rainfall and extreme events to the increasing anthropogenic GHG warming for suitable impact studies specifically over region with complex topography such as West Africa.
机译:在21世纪中后期,ICTP-RegCM3被用于缩小ECHAM5在西非40千米处的投影。结果表明,虽然ECHAM5预测几内亚湾气候较湿,而萨赫勒地区气候较干燥,但是RegCM3在第二阶段对低海拔(负)和高海拔(正)地形产生了相反的变化。这些高地的湿润条件是由于雨季更加频繁和密集导致大气水文循环加剧,并导致更大的强度和更多的极端事件。对大规模动力学的研究表明,这些条件主要是由低水平的水汽汇聚引起的,这导致喀麦隆山区上方的垂直运动升高,有利于增加大气的不稳定性,水分和降雨。仅在RegCM3中,通过高海拔地形对气候变化信号的这种调节才是可行的,因为行驶中的ECHAM5沿几内亚湾全线都在平滑。这就需要使用区域气候模型来调查水文循环,日降雨和极端事件对人为温室气体变暖的区域和局部响应,以进行适当的影响研究,特别是在西非等地形复杂的地区。

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