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Variability of winter and summer surface ozone in Mexico City on the intraseasonal timescale

机译:季节内墨西哥城冬季和夏季地表臭氧的变化

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Surface ozone concentrations in Mexico City frequently exceed the Mexican standard and have proven difficult to forecast due to changes in meteorological conditions at its tropical location. The Madden–Julian Oscillation (MJO) is largely responsible for intraseasonal variability in the tropics. Circulation patterns in the lower and upper troposphere and precipitation are associated with the oscillation as it progresses eastward around the planet. It is typically described by phases (labeled 1 through 8), which correspond to the broad longitudinal location of the active component of the oscillation with enhanced precipitation. In this study we evaluate the intraseasonal variability of winter and summer surface ozone concentrations in Mexico City, which was investigated over the period 1986–2014 to determine if there is a modulation by the MJO that would aid in the forecast of high-pollution episodes. brbr Over 1?000?000 hourly observations of surface ozone from five stations around the metropolitan area were standardized and then binned by active phase?of the MJO, with phase?determined using the real-time multivariate MJO index. Highest winter ozone concentrations were found in Mexico City on days when the MJO was active and in phase?2 (over the Indian Ocean), and highest summer ozone concentrations were found on days when the MJO was active and in phase?6 (over the western Pacific Ocean). Lowest winter ozone concentrations were found during active MJO phase?8 (over the eastern Pacific Ocean), and lowest summer ozone concentrations were found during active MJO phase?1 (over the Atlantic Ocean). Anomalies of reanalysis-based cloud cover and UV-B radiation supported the observed variability in surface ozone in both summer and winter: MJO phases with highest ozone concentration had largest positive UV-B radiation anomalies and lowest cloud-cover fraction, while phases with lowest ozone concentration had largest negative UV-B radiation anomalies and highest cloud-cover fraction. Furthermore, geopotential height anomalies at 250?hPa favoring reduced cloudiness, and thus elevated surface ozone, were found in both seasons during MJO phases with above-normal ozone concentrations. Similar height anomalies at 250?hPa favoring enhanced cloudiness, and thus reduced surface ozone, were found in both seasons during MJO phases with below-normal ozone concentrations. These anomalies confirm a physical pathway for MJO modulation of surface ozone via modulation of the upper troposphere.
机译:墨西哥城的地表臭氧浓度经常超过墨西哥的标准,由于其热带地区的气象条件发生变化,因此难以预测。 Madden-Julian涛动(MJO)很大程度上负责热带地区的季节内变化。对流层上下的环流模式和降水与振荡有关,因为它绕着行星向东传播。它通常由阶段(标记为1至8)描述,这些阶段对应于具有增强降水的振荡活动成分的宽纵向位置。在这项研究中,我们评估了墨西哥城冬季和夏季地表臭氧浓度的季节内变化,该变化在1986年至2014年期间进行了调查,以确定是否存在MJO的调节有助于预测高污染事件。 标准化了都市圈周围五个站点每小时1 000 000 000多个地面臭氧的观测值,然后根据MJO的活动相位进行分档,并使用实时多元MJO指数确定相位。在MJO活跃且处于第2阶段(在印度洋上)的墨西哥城,发现冬季臭氧浓度最高,而在MJO活跃且处于第6阶段(在整个印度洋上)的夏季臭氧浓度最高。西太平洋)。在活跃的MJO阶段8(在东太平洋)发现了最低的冬季臭氧浓度,在活跃的MJO阶段1(大西洋上)发现了最低的夏季臭氧浓度。基于重新分析的云量和紫外线辐射的异常值支持了夏季和冬季观测到的表面臭氧的变化:臭氧浓度最高的MJO相具有最大的正UV-B辐射异常值和最低的云层覆盖率,而最低的相臭氧浓度具有最大的负UV-B辐射异常和最高的云层覆盖率。此外,在MJO阶段的两个季节中,臭氧浓度都高于正常值,在250?hPa的地势高度异常有利于减少混浊,从而增加了表面臭氧的含量。在MJO阶段的两个季节,臭氧浓度都低于正常值,在250?hPa处出现了相似的高度异常,有利于增强混浊度,从而减少了表面臭氧。这些异常证实了通过对流层上层的调制对表面臭氧进行MJO调制的物理途径。

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