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Observational Studies of Low Altitude Wind Shear (LAWS) formed in the Lee of Mountains

机译:李山低空风切变(LAWS)的观测研究

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The purpose of this study is to further our understanding of LAWS occurring in the lee of mountains through an observational investigation of the formation processes. The location of the study is Hanamaki Airport, situated in a basin in the Tohoku Region, Japan, where there is many reports of LAWS. A statistical analysis, based on LAWS reports submitted by flight pilots, and surface wind data observed at the airport, revealed the importance of changes in wind direction, as well as wind speed when an aircraft encounters LAWS. Thus, the standard deviation of the horizontal wind vector is defined as a WSI (Wind Shear Index) to evaluate the occurrence of severe LAWS. A case study using upper wind data in the boundary layer, recorded by commercial aircraft flying through severe LAWS systems, pointed out the importance of both a sudden change in wind direction and a descending current, especially close to the ground. To clarify the fine structure and formation process of these wind characteristics, a six-month observation of the boundary layer winds, using a Doppler sodar installed at the airport, was conducted from December, 1996. A WSI analysis was applied to Doppler sodar observations and revealed the following three significant factors when a severe LAWS system is foremd: 1) A strong westerly wind in the middle or upper boundary layer, causing a high WSI current, is observed; 2) The process in which a high WSI peak reaches from the boundary layer down to the ground; 3) and, A descending current is present close to the ground after the high WSI peak touches down.
机译:这项研究的目的是通过对形成过程的观察研究,来进一步了解在山背风处发生的法律。研究的地点是花卷机场,位于日本东北地区的一个盆地中,那里有许多关于LAWS的报道。根据飞行飞行员提交的LAWS报告以及在机场观察到的地面风数据进行的统计分析表明,改变飞机遇到LAWS时风向以及风速的重要性。因此,将水平风向矢量的标准偏差定义为WSI(风切变指数),以评估严重的LAWS的发生。案例研究使用了在严重的LAWS系统中飞行的商用飞机在边界层中的上风数据,该数据指出了风向突然变化和电流下降(特别是靠近地面)的重要性。为了弄清楚这些风特征的精细结构和形成过程,从1996年12月开始,使用安装在机场的多普勒声雷达对边界层风进行了为期六个月的观测。将WSI分析应用于多普勒声雷达和揭示了当使用严厉的LAWS系统时,以下三个重要因素:1)观察到中边界层或上边界层中的强西风,引起高WSI电流; 2)高WSI峰值从边界层向下到达地面的过程; 3),并且在高WSI峰值触及后,靠近地面存在下降电流。

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