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Convection over the Taunus Mountains: Distribution, Tracks and Life Cycle

机译:陶努斯山脉上的对流:分布,轨道和生命周期

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@@ 1. Introduction Deep convection belongs to one of the most intensive atmospheric processes on earth. Deep convection is often associated with heavy rainfalls, wind gusts, hail and lightning. In some cases, strongly depending on favourable meteorological key parameters, the development of tornados is possible (DOSWELL 2001). These natural hazards can result in high damages, insurance costs and sometimes loss of human lives. Convective processes occur on the local- and mesoscale, and are highly variable in space and time in their occurrence and intensity. For this reason forecasting of convection in detail is difficult. Especially the areas of formation, the tracks of single convective cells and their behaviour are not predictable. Rain gauge networks are also not able to detect convective precipitation in its totality and therefore a high resolution long-term climatology of deep convection does not exist. Regarding these problems there was a motivation to find out how convective cells occur and trace over complex terrain. e.g. low mountain ranges. There are some examinations about the influence of mountainous areas on convection done in the USA. On the one hand the aim was to identify regions, which initiate convection depending on different stream directions (BANTA and SCHAAF 1987) and on the other hand the suggestion was to investigate the influence of the Colorado Rocky Mountain Range on the diumal cycle of convective precipitation for two summer seasons (KARR and WOOTEN 1976).
机译:@@ 1.引言深对流属于地球上最密集的大气过程之一。深对流通常与强降雨,阵风,冰雹和闪电有关。在某些情况下,强烈依赖于有利的气象关键参数,龙卷风的发展是可能的(DOSWELL 2001)。这些自然危害可能会导致高额损失,保险费用,有时甚至会造成人员伤亡。对流过程发生在局部和中尺度,并且在时空上发生和强度的变化很大。因此,很难对流进行详细的预测。尤其是形成区域,单个对流细胞的轨迹及其行为是不可预测的。雨量计网络也无法整体检测对流降水,因此不存在高分辨率的长期深对流气候。关于这些问题,人们有动机去寻找对流细胞如何发生并在复杂的地形上追踪。例如低山脉。在美国,有一些关于山区对流影响的研究。一方面,目的是确定根据不同的流向启动对流的区域(BANTA和SCHAAF 1987),另一方面,建议研究科罗拉多洛矶山脉对流对流降水的半周期的影响。为两个夏季(KARR和WOOTEN 1976)。

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