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Can Mountain Waves Contribute to Damaging Winds Far Away from the Lee Slope?

机译:山波可以有助于距离李坡的损坏风吗?

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On 25 December 2016, a 984-hPa cyclone departed Colorado and moved onto the northern plains, drawing a nearby Arctic front into the circulation and wrapping it cyclonically around the equatorward side of the cyclone. A 130-km-wide and 850-km-long swath of surface winds exceeding 25 m s(-1) originated underneath the comma head of the lee cyclone and followed the track of the Arctic front from Colorado to Minnesota. These strong winds formed in association with a downslope windstorm and mountain wave over Colorado and Wyoming, producing an elevated jet of strong winds. Central to the distribution of winds in this case is the Arctic air mass, which both shielded the elevated winds from surface friction behind the front and facilitated the mixing of the elevated jet down to the surface just behind the Arctic front, due to steep lapse rates associated with cold-air advection. The intense circulation south of the cyclone center transported the Arctic front and the elevated jet away from the mountains and out across Great Plains. This case is compared to an otherwise similar cyclone that occurred on 28-29 February 2012 in which a downslope windstorm occurred, but no surface mesoscale wind maximum formed due to the absence of a well-defined Arctic front and postfrontal stable layer. Despite the superficial similarities of this surface wind maximum to a sting jet (e.g., origin in the midtroposphere within the comma head of the cyclone, descent evaporating the comma head, acceleration to the top of the boundary layer, and an existence separate from the cold conveyor belt), this swath of winds was not caused by a sting jet.
机译:2016年12月25日,一个984-HPA旋风分离器离开科罗拉多州并搬到北部平原上,将附近的北极前沿进入循环并围绕旋风的赤道侧旋转缠绕。 130公里宽和850公里长的表面风,超过25米S(-1)起源于李旋风的逗号头下面,并从科尔多多斯到明尼苏达州的北极前面跟踪。这些强风与落水镜和山波与科罗拉多州和怀俄明一起联系起来,生产了强风的升高。在这种情况下,风的分布的核心是北极空气质量,两者都屏蔽了前面的表面摩擦,并且由于陡峭的流逝速率而促进了升高的喷射向北极前面的表面的混合。与冷空气平流有关。飓风中心南部的强烈循环将北极前沿和升高的喷射从山上传来,横跨大平原。这种情况与2012年2月28日28日28日28-29发生的其他类似旋风器进行了比较,其中发生了下坡风暴,但由于不存在明确定义的北极前和后置稳定层,没有形成表面Messcale风最大值。尽管这种表面风最大的浅表相似性,但是旋转射流(例如,在旋风逗号的逗号头内的中间层中的原点,蒸发逗号头的下降,加速到边界层的顶部,并且与寒冷分开的存在传送带),这种风的风速不是由刺戳引起的。

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