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Impact of typhoons on the composition of the upper troposphere within the Asian summer monsoon anticyclone: the SWOP campaign in Lhasa 2013

机译:台风对亚洲夏季季风阳岩山上对流层组成的影响:Lhasa 2013中的跨越式运动

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In the frame of the SWOP (sounding water vapour, ozone, and particle) campaign during the Asian summer monsoon (ASM), ozone and water vapour profiles were measured by balloon-borne sensors launched from Lhasa (29.66°?N, 91.14°?E, elevation 3650?m), China, in August 2013. In total, 24 soundings were launched, nearly half of which show strong variations in the relationship between ozone and water vapour in the tracer–tracer correlation in the upper troposphere and lower stratosphere (UTLS). For each sounding, 20-day backward trajectories were calculated using the trajectory module of the Chemical Lagrangian Model of the Stratosphere (CLaMS) to analyse these variations. The trajectory calculations demonstrate that three tropical cyclones (tropical storm Jebi, typhoons Utor and Trami), which occurred over the western Pacific Ocean during August?2013, had a considerable impact on the vertical distribution of ozone and water vapour by uplifting marine air masses to altitudes of the ASM anticyclone. Air parcels subsequently arrived at the observation site via two primary pathways: firstly via direct horizontal transport from the location of the typhoon to the station within approximately 3?days, and secondly via transport following the clockwise wind flow of the ASM within a timescale of 1?week. Furthermore, the interplay between the spatial position of the ASM anticyclone and tropical cyclones plays a key role in controlling the transport pathways of air parcels from the boundary layer of the western Pacific to Lhasa in horizontal and vertical transport. Moreover, the statistical analysis shows that the strongest impact by typhoons is found at altitudes between 14.5 and 17?km (365–375?K). Low ozone values (50–80?ppbv) were observed between 370 and 380?K due to the strong vertical transport within tropical cyclones.
机译:在亚洲夏季季风(ASM)期间的SWOP(探测水蒸气,臭氧和粒子)活动中,通过从拉萨发射的球囊传感器测量臭氧和水蒸气型材(29.66°Δn,91.14°? e,海拔3650?m),中国,2013年8月。总共启动了24个探测,其中近一半表示臭氧和水蒸气之间的关系强烈变化,在上层对流层上层和较低的平流层中的示论性跟踪相关性(UTL)。对于每个探测,使用平流层(蛤蜊)的化学拉格朗日模型的轨迹模块计算20天的向后轨迹来分析​​这些变化。轨迹计算表明,在8月期间西太平洋的三个热带气旋(热带风暴Jebi,Typhoons Utor和Trami)对2013年的西太平洋发生了相当大的影响,对臭氧和水蒸气的垂直分布进行了相当大的影响,通过升高海洋空气群众ASM AntiaceClone的海拔高度。随后通过两个主要途径到达观察部位的空气包:首先通过从台风的位置直接运输到大约3?天内的电位到车站,第二天通过运输在1的时间刻度之后的ASM中的顺时针风流量。 ?星期。此外,ASM反周气旋和热带气旋的空间位置之间的相互作用在控制来自西太平洋边界层的空气包裹到水平和垂直运输中的空气包裹的运输通路中起着关键作用。此外,统计分析表明,台风的最强烈的影响在14.5和17 km(365-375 k)之间存在。由于热带气旋内的强大垂直运输,观察到低臭氧值(50-80?PPBV)在370和380?K之间观察到。

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