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Sensitivity of an intense rain event between atmosphere-only and atmosphere-ocean regional coupled models: 19 September 1996

机译:仅大气层和大气海洋区域耦合模型之间强烈降雨事件的敏感性:1996年9月19日

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摘要

The representation of Mediterranean intense rain events in regional coupled models is of great importance for impact studies of climate change. It is investigated through the comparison of an atmosphere-only simulation forced by a coarse-resolution sea-surface temperature (SST), an atmosphere-ocean coupled simulation generating a high-resolution SST and an atmosphere-only simulation forced by a high-resolution monthly smoothed SST. The Cevennes, located in Southern France, is a region of high interest because of its frequent intense rain events and the proximity of the Gulf of Lion, where intense air-sea exchanges happen during mistral and tramontane wind bursts. Focus is given to one of the most intense rain events of the 20 year simulations (1989-2009): 19 September 1996, for which the change in the rain location between the atmosphere-ocean simulation and the atmosphere-only simulation forced by the coarse-resolution SST is large. In this case, the change in the rain location can be attributed mainly to a long-term change in the SST of 1.5 K, with a smaller but significant contribution of submonthly coupled effects such as cooling of the SST in the Gulf of Lion after moderate mistral events that occurred before the precipitation event. The change in the location of precipitation is related to a wind change of 5ms(-1). This wind deviation originated from the combined effects of a surface pressure anomaly, stronger stratification on the western side of the coastal front in the Gulf of Lion and the enhanced blocking effect of the Alps.
机译:在区域耦合模型中地中海强降雨事件的表示对于气候变化的影响研究非常重要。通过比较由粗分辨率海表温度(SST)强制进行的仅大气模拟,产生高分辨率SST的大气-海洋耦合模拟与由高分辨率强制进行的仅大气模拟的比较,进行了研究每月平滑的SST。位于法国南部的塞文山脉(Cevennes)是一个备受关注的地区,因为该地区经常发生强降雨事件,并且靠近狮子湾,那里在mis风和风爆发时会发生剧烈的海气交换。重点研究了20年模拟(1989-2009年)中最强烈的降雨事件之一:1996年9月19日,在该事件中,大气-海洋模拟和仅由大气强迫进行的仅大气模拟之间的降雨位置变化分辨率SST大。在这种情况下,降雨位置的变化主要归因于SST的长期变化为1.5 K,而次月耦合效应(例如适度后的狮子湾SST降温)的贡献较小但意义重大。在降水事件之前发生的错误事件。降水位置的变化与5ms(-1)的风变化有关。这种风向偏离是由于表面压力异常,狮子湾沿岸西侧更强的分层以及阿尔卑斯山的增强阻挡作用的综合影响。

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