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The bimodal downslope windstorms at Kvisker

机译:克维斯克的双峰下坡暴风雨

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摘要

Downslope windstorms at Kvisker in Southeast Iceland are explored using a mesoscale model, observations and numerical analysis of the atmosphere. Two different types of gravity-wave induced windstorms are identified. At the surface, their main difference is in the horizontal extent of the lee-side accelerated flow. Type S (Short) is a westerly windstorm, which is confined to the lee-slopes of Mount A-r'fajokull, while a Type E (Extended) windstorm occurs in the northerly flow and is not confined to the lee-slopes but continues some distance downstream of the mountain. The Type S windstorm may be characterized as a more pure gravity-wave generated windstorm than the Type E windstorm which bears a greater resemblance to local flow acceleration described by hydraulic theory. The low-level flow in the Type E windstorm is of arctic origin and close to neutral with an inversion well above the mountain top level. At middle tropospheric levels there is a reverse vertical windshear. The Type S windstorm occurs in airmasses of southerly origin. It also has a well-mixed, but a shallower boundary-layer than the Type E windstorms. Aloft, the winds increase with height and there is an amplified gravity wave. Climate projections indicate a possible decrease in windstorm frequency up to the year 2050.
机译:使用中尺度模型,大气观测和数值分析探索了冰岛东南部Kvisker的下坡暴风雨。确定了两种不同类型的重力波诱发的暴风雨。在表面上,它们的主要区别在于背风侧加速流的水平范围。 S型(短)是西风风暴,仅局限在A-r'fajokull山的后风,而E型(扩展)暴风发生在北风中,并不局限于前坡,但仍在持续在山的下游一些距离。 S型暴风雨的特征可能是比E型暴风雨更纯净的重力波产生的暴风雨,而E型暴风雨与水力理论所描述的局部流动加速度具有更大的相似性。 E型暴风雨中的低层气流是北极产生的,接近中性,其反演远高于山顶。在对流层中层,垂直风切变反向。 S型风暴发生在南风源。与E型暴风雨相比,它的边界层混合得很好,但边界层较浅。高空,风随高度增加,并且重力波放大。气候预测表明,到2050年,暴风雨的频率可能会下降。

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