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Climatology of Westerly Wind Events in the Lee of the Sierra Nevada

机译:塞拉尼达德李的西风风险的气候学

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摘要

A 5-yr climatology of westerly wind events in Owens Valley, California, is derived from data measured by a mesoscale network of 16 automatic weather stations. Thermally driven up- and down-valley flows are found to account for a large part of the diurnal wind variability in this approximately north-south-oriented deep U-shaped valley. High-wind speed events at the western side of the valley deviate from this basic pattern by showing a higher percentage of westerly winds. In general, strong westerly winds in Owens Valley tend to be more persistent and to display higher sustained speeds than strong winds from other quadrants. The highest frequency of strong winds at the valley floor is found in the afternoon hours from April to September, pointing to thermal forcing as a plausible controlling mechanism. However, the most intense westerly wind events (westerly windstorms) can happen at any time of the day throughout the year. The temperature and humidity variations caused by westerly windstorms depend on the properties of the approaching air masses. In some cases, the windstorms lead to overall warming and drying of the valley atmosphere, similar to foehn or chinook intrusions. The key dynamical driver of westerly windstorms in Owens Valley is conjectured to be the downward penetration of momentum associated with mountain waves produced by the Sierra Nevada ridgeline to the west of the valley.
机译:在加利福尼亚州欧文斯谷的西风风景赛事中的5岁气候学源自由16个自动气象站的Mescre Network测量的数据。发现热驱动的上下和下谷流量来解释这一部位于大约南北深度U形山谷的大部分昼夜风变性。山谷西侧的高风速事件偏离了这种基本模式,通过显示出更高的西风风。一般来说,欧文斯谷的强大风吹往往更持久地持续,并且比其他象限的强风展示更高的持续速度。山谷地板上的强风的最高频率是在4月至9月的下午时间发现的,指向热迫使作为可合理的控制机制。然而,最浓烈的西风事件(Westerly Windstorms)可以在全年的任何时候发生。 Westerly Windstrorms引起的温度和湿度变化取决于接近空气质量的性质。在某些情况下,风风暴导致山谷气氛的整体变暖和干燥,类似于泡沫或奇努克入侵。欧文斯谷的西部风向风暴的关键动态驱动器被认为是与山谷西部山脉生产的山波相关的动量向下渗透。

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