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Identification of the Thresholds of Extreme Values and Synoptic Analysis of PM10 Pollution in the Atmosphere of Ahvaz

机译:阿瓦士大气中极值阈值的识别和PM10污染的天气分析

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摘要

Ahvaz can be regarded as one of the most polluted cities in the world in terms of air pollution. Successive years of drought and weather conditions in recent years have resulted in particulate matter (PM10) concentration in Ahvaz. In this study, using probability distribution techniques, an appropriate threshold to identify the PM10 maximum extreme concentrations (MEC) has been detected. Based on log-logistics probability distribution, which has the best fit to the data of PM10 concentration in Ahvaz, the 0.99 percentile threshold which is specified by 1516 μg/m3 is known as the primary PM10 concentrations in Ahvaz air. Based on the mentioned threshold, 24 days in which the PM10 concentration was equal to or more than the threshold were selected for synoptic analysis. Analysis of the circulation of weather types showed that two weather types circulations at 500 hPa level provide the climatic conditions for the occurrence of (MEC) caused by PM10 concentration ≥1516 μg/m3 in Ahvaz in the first type (which is for hot days). Under such condition, the closed high pattern of 500 hPa level is accompanied by the ground low pressures. In the second type (which is for cold and transitional days) the closed high pattern of 500 hPa level is accompanied by the ground high pressures. In addition, this study showed that the (MEC) of PM10 in both models fed with several different sources at different levels and due to being multi-source, storms can create MEC.
机译:就空气污染而言,阿瓦士可被视为世界上污染最严重的城市之一。近年来连续数年的干旱和天气状况已导致阿瓦士的颗粒物(PM10)浓度升高。在这项研究中,使用概率分布技术,已经检测到识别PM10最大极端浓度(MEC)的适当阈值。基于对数逻辑概率分布,该分布最适合于阿瓦士的PM10浓度数据,由1516μg/ m3指定的0.99%阈值被称为阿瓦士空气中的主要PM10浓度。根据上述阈值,选择PM10浓度等于或大于阈值的24天进行天气分析。对天气类型环流的分析表明,在第一种类型(在炎热的日子)中,Ahvaz中PM10浓度≥1516μg/ m3引起的两种在500 hPa水平的天气类型环流为发生(MEC)提供了气候条件。 。在这种情况下,500 hPa水平的闭合高压模式伴随着地面低压。在第二种类型(用于寒冷和过渡时期)中,500 hPa水平的封闭高压模式伴随着地面高压。此外,这项研究表明,在两个模型中,PM10的PMC(MEC)都来自不同级别的几种不同来源,并且由于是多来源的,因此暴风雨可以产生MEC。

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