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Measurement report: Effect of wind shear on PM 10 concentration vertical structure in the urban boundary layer in a complex terrain

机译:测量报告:风剪切在复杂地形中城市边界层中PM 10浓度垂直结构的影响

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The paper shows wind shear impact on PM 10 vertical profiles in Kraków, southern Poland. The data used consist of background data for two cold seasons (September?2018 to April?2019 and September?2019 to April?2020) and data for several case studies from November?2019 to March?2020. The data are composed of PM 10 measurements, model data, and wind speed and direction data. The background model data come from operational forecast results of the AROME model. PM 10 concentration in the vertical profile was measured with a sightseeing balloon. Significant spatial variability of the wind field was found. The case studies represent the conditions with much lower wind speed and a much higher PM 10 level than the seasonal average. The inversions were much more frequent than on average too. Wind shear turned out to be the important factor in terms of PM 10 vertical profile modification. It is generated due to the relief impact, i.e. the presence of a large valley, blocked on one side with the hills. The analysis of PM 10 profiles from all flights allows us to distinguish three vertical zones of potential air pollution hazards within the valley (about 100?m deep) and the city of Kraków: (1)?up to about 60?m?a.g.l. – the zone where during periods of low wind speed, air pollution is potentially the highest and the duration of such high levels is the longest, i.e. the zone with the worst aerosanitary conditions; (2)?about 60–100?m?a.g.l. – transitional zone where the large decrease in PM 10 levels with height is observed; (3)?above 100–120?m?a.g.l. – the zone where air quality is significantly better than in zone 1, either due to the increase in the wind speed or due to the wind direction change and advection of different, clean air masses.
机译:本文显示了对波兰南部克拉科夫的PM 10垂直曲线的风剪切影响。使用的数据包括两个冷季节的背景数据(九月?2018年4月到4月2019年至4月?2019年至4月?2020年)和7月份的几个案例研究的数据?2019到3月份?2020。数据由PM 10测量,模型数据和风速和方向数据组成。背景模型数据来自Arome模型的运营预测结果。用观光气球测量垂直轮廓中的PM 10浓度。发现风场的显着空间变异。案例研究代表风速下降得多的条件,比季节性平均水平更高的PM 10水平。逆转比平均更频繁。风剪在PM 10垂直型材改性方面是重要因素。它是由于浮雕影响而产生的,即大山谷的存在,在与山上的一侧堵塞。来自所有航班的PM 10型材的分析使我们能够区分山谷内潜在的空气污染危害的三个垂直区域(大约100?M深)和克拉科夫市:(1)?最多约60?M?A.G.L。 - 在低风速期间,空气污染可能是最高,这种高水平的持续时间是最长的,即雾化条件最差的区域; (2)?约60-100?m?a.g.l。 - 观察到PM 10水平的大幅减少的过渡区; (3)?超过100-120?米?A.G.L。 - 由于风速增加或由于风向变化和不同,清洁空气群众,空气质量明显优于1区的区域。

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