首页> 外文期刊>Journal of the Meteorological Society of Japan >Low-Level Wind Shear Induced by Horizontal Roll Vortices at Narita International Airport, Japan
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Low-Level Wind Shear Induced by Horizontal Roll Vortices at Narita International Airport, Japan

机译:在日本成田国际机场的水平卷涡流引起的低级风剪

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Aircraft landing and taking off at Narita International Airport in Japan frequently report low-level wind shear (LLWS), which is a local variation in the wind vector, and turbulence when the prevailing wind is southwesterly, which is crosswind to the runway. On 20 June 2012, just before touchdown, an arriving aircraft at this airport encountered LLWS that consisted of a sudden change in the wind vector from a headwind component of 5 knots (2.6 m s~(?1)) to a tailwind component of 10 knots (5.1 m s~(?1)). This caused a rather hard landing. As the aircraft approached, none of cumulonimbus clouds, fronts, or wind shear lines were observed around the airport. Further analysis of the data measured by the landing aircraft and observations made by the Doppler lidar revealed that the LLWS was caused by horizontal roll vortices that developed in the atmospheric boundary layer (ABL) over the Shimofusa tableland surrounding the airport. The axes of these horizontal roll vortices were nearly parallel to the mean wind direction, while their horizontal and vertical scales were approximately 800 m and 500 m, respectively. In our present study, we demonstrate that the existence of such horizontal roll vortices that cause LLWS can be effectively detected by a single Doppler lidar that utilizes backscattering from aerosols. Although the LLWS associated with horizontal roll vortices has a smaller magnitude than those caused by a microburst, gust front, or front, landing aircraft often encounter these horizontal roll vortices just before touchdown with a much higher probability than other phenomena since horizontal roll vortices occur at a horizontal spacing of approximately 800 m over a wide area during the daytime hours of a clear day.
机译:飞机着陆和在日本的成田国际机场起飞经常报告低水平的风剪(LLW),这是风向量的局部变化,当普遍风在东南风时,这是跑道到跑道的跨界。 2012年6月20日,就在达阵之前,在这个机场的到达飞机遇到了LLW,其中由5节的逆风部件(2.6ms〜 (5.1 ms〜(?1))。这造成了相当坚硬的着陆。随着飞机接近的,在机场周围没有观察到丰富的云层,前部或风剪切线。进一步分析着陆飞机测量的数据和多普勒LIDAR制造的观察结果表明,LLW是由在机场周围的Shimofusa Tableland上的大气边界层(ABL)中开发的水平卷涡旋引起的。这些水平卷涡流的轴与平均风向几乎平行,而它们的水平和垂直尺度分别为约800米和500μm。在我们目前的研究中,我们证明可以通过从气溶胶的反散射的单一多普勒LIDAR有效地检测到导致LLW的这种水平卷涡流的存在。尽管与水平卷涡流相关的LLW具有比Microcurst,阵风,前线或前部引起的LLW,但是着陆飞机通常在触地前遇到这些水平卷涡流,并且由于水平卷涡流发生了比其他现象更高的概率更高的概率在晴天的日间时间,在宽阔的区域内的水平间距约为800米。

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