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首页> 外文期刊>Theoretical and applied climatology >High-resolution simulations of West African climate using regional climate model (RegCM3) with different lateral boundary conditions
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High-resolution simulations of West African climate using regional climate model (RegCM3) with different lateral boundary conditions

机译:使用不同侧向边界条件的区域气候模型(RegCM3)对西非气候进行高分辨率模拟

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摘要

To downscale climate change scenarios, long-term regional climatologies employing global model forcing are needed for West Africa. As a first step, this work examines present-day integrations (1981-2000) with a regional climate model (RCM) over West Africa nested in both reanalysis data and output from a coupled atmospheric-ocean general circulation model (AOGCM). Precipitation and temperature from both simulations are compared to the Climate Research Unit observations. Their spatial distributions are shown to be realistic. Annual cycles are considerably correlated. Simulations are also evaluated with respect to the driving large-scale fields. RCM offers some improvements compared to the AOGCM driving field. Evaluation of seasonal precipitation biases reveals that RCM dry biases are highest on June-August around mountains. They are associated to cold biases in temperature which, in turn, are connected to wet biases in precipitation outside orographic zones. Biases brought through AOGCM forcing are relatively low. Despite these errors, the simulations produce encouraging results and show the ability of the AOGCM to drive the RCM for future projections.
机译:为了降低气候变化的情景,西非需要采用全球强迫模式的长期区域气候。第一步,这项工作研究了今天的整合(1981-2000年),其中包括重新分析数据和大气-海洋总循环模型(AOGCM)输出中嵌套在西非的区域气候模型(RCM)。将两种模拟的降水和温度与气候研究组的观测结果进行比较。它们的空间分布被证明是现实的。年度周期有很大的相关性。还针对大型驱动领域评估了仿真。与AOGCM驱动领域相比,RCM提供了一些改进。对季节性降水偏差的评估显示,山区周围6月至8月的RCM干偏差最高。它们与温度的冷偏差相关,而温度的冷偏差又与地形区域外部降水中的湿偏差相关。通过AOGCM强制带来的偏差相对较低。尽管存在这些错误,但模拟产生了令人鼓舞的结果,并显示了AOGCM驱动RCM进行未来预测的能力。

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  • 来源
    《Theoretical and applied climatology 》 |2009年第4期| 293-314| 共22页
  • 作者单位

    Laboratoire de Physique de l'Atmosphere et de I'Ocean Simeon Fongang, Ecole Superieure Polytechnique, University Cheikh Anta Diop, BP 5085, Dakar-Fann, Dakar, Senegal;

    Laboratoire de Physique de l'Atmosphere et de I'Ocean Simeon Fongang, Ecole Superieure Polytechnique, University Cheikh Anta Diop, BP 5085, Dakar-Fann, Dakar, Senegal;

    Department of Civil Engineering and Environmental Science, Seaver College of Science and Engineering, Loyola Marymount University, Los Angeles, CA, USA;

    Howard University Program in Atmospheric Sciences and Department of Physics and Astronomy, Washington, DC, USA;

    International Centre for Theoretical Physics, Earth System Physics Section, Physics of Weather and Climate Group, Trieste, Italy;

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