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Evaluation of moisture sources for the Central European summer flood of May/June 2013 based on regional climate model simulations

机译:基于区域气候模型模拟的2013年5月/ 6月中欧夏季洪水的水分源评估

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Heavy precipitation affected Central Europe in May/June 2013, triggering damaging floods both on the Danube and the Elbe rivers. Based on a modelling approach with COSMO-CLM, moisture fluxes, backward trajectories, cyclone tracks and precipitation fields are evaluated for the relevant time period 30 May-2 June 2013. We identify potential moisture sources and quantify their contribution to the flood event focusing on the Danube basin through sensitivity experiments: Control simulations are performed with undisturbed ERA-Interim boundary conditions, while multiple sensitivity experiments are driven with modified evaporation characteristics over selected marine and land areas. Two relevant cyclones are identified both in reanalysis and in our simulations, which moved counter-clockwise in a retrograde path from Southeastern Europe over Eastern Europe towards the northern slopes of the Alps. The control simulations represent the synoptic evolution of the event reasonably well. The evolution of the precipitation event in the control simulations shows some differences in terms of its spatial and temporal characteristics compared to observations. The main precipitation event can be separated into two phases concerning the moisture sources. Our modelling results provide evidence that the two main sources contributing to the event were the continental evapotranspiration (moisture recycling; both phases) and the North Atlantic Ocean (first phase only). The Mediterranean Sea played only a minor role as a moisture source. This study confirms the importance of continental moisture recycling for heavy precipitation events over Central Europe during the summer half year.
机译:2013年5月/ 6月,强降雨影响了中欧,在多瑙河和易北河上引发了破坏性洪水。基于采用COSMO-CLM的建模方法,对2013年5月30日至6月2日的相关时间段的水汽通量,后退轨迹,旋风径迹和降水场进行了评估。我们确定潜在的水源并量化其对洪水事件的贡献,重点是通过敏感性实验在多瑙河盆地进行:在不受干扰的ERA-Interim边界条件下进行控制模拟,同时在选定的海洋和陆地区域以修改后的蒸发特性进行多重敏感性实验。在重新分析和模拟中都发现了两个相关的气旋,它们从欧洲东南部到东欧向阿尔卑斯山的北坡逆时针移动。控制仿真很好地表示了事件的概要演变。与观测相比,控制模拟中降水事件的演变在时空特征方面显示出一些差异。主要的降水事件可以分为与水分源有关的两个阶段。我们的模拟结果提供了证据,表明造成该事件的两个主要来源是大陆蒸散(水分循环;两个阶段)和北大西洋(仅第一阶段)。地中海作为湿气源仅扮演了次要的角色。这项研究证实了在夏季半年中,大陆水分循环对于中欧地区强降水事件的重要性。

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