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Transient Downslope Winds under the Influence of Stationary Lee Waves from the Zao Mountain Range

机译:枣山静止李波影响下的暂态下坡风

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Severe downslope winds accompanying turbulence, which are of great concern to aviation safety, often occur on the lee side of Zao mountain range in winter. Special Doppler lidar observations and numerical simulations with a grid spacing of 100 m were carried out focusing on the downslope winds around the Sendai airport on 14 February 2008. The model reproduced stationary lee waves with an approximate 20-km wavelength, consistent with the observed horizontal scale in water vapor images from the Japanese geostationary multifunctional transport satellite (MTSAT-1R). The simulated lee waves are accompanied by strong vertical shear, which leads to the separation of a vortex sheet from the surface, where small-scale vortices are generated successively. The vortex sheet is under favorable conditions for Kelvin-Helmholtz instability and may account for the generation of small-scale vortices. The simulated vortices, which are advected downstream, are accompanied by weak low-level wind patches. The Doppler lidar observation also captured the weak low-level wind patches with a horizontal scale of 1000-m moving downstream near the surface. An observed temporal variability in line-of-site wind speed decreased with increasing altitude from the surface. This feature was reproduced by the model in a qualitative sense, although the model tended to overestimate (underestimate) the variability below (above) a height of approximately 800 m.
机译:严重伴随着湍流的下坡风是航空安全的重要问题,冬季经常发生在藏王山脉的背风一侧。围绕2008年2月14日仙台机场周围的下坡风,进行了特殊的多普勒激光雷达观测和数值模拟,网格间距为100 m。该模型重现了稳定的背风波,其波长约为20 km,与观测到的水平方向一致来自日本对地静止多功能运输卫星(MTSAT-1R)的水蒸气图像的比例。模拟的背风波伴随着强烈的垂直剪切力,这导致涡旋片与表面分离,并在表面连续产生小规模的涡旋。涡旋片处于开尔文-亥姆霍兹不稳定性的有利条件下,并且可以解释小规模涡旋的产生。向下游平流的模拟涡流伴随着弱的低层风斑。多普勒激光雷达观测还捕获到了微弱的低层风斑,其水平尺度为1000 m,向地表下游移动。观测到的站点线风速随时间的变化随地面高度的增加而减小。尽管模型倾向于高估(低估)大约800 m以下(上方)的变异性,但该模型在定性上再现了此特征。

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