伊比利亚半岛南部爆发撒哈拉干旱沙尘期间 WRF-chem 气溶胶方案的相互比较

IF 4.2 2区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Atmospheric Environment Pub Date : 2024-10-15 DOI:10.1016/j.atmosenv.2024.120872
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引用次数: 0

摘要

本研究所在的伊比利亚半岛(IP)在过去几十年中经历了撒哈拉气溶胶沙尘爆发频率和强度的增加,这可能会对其区域气候产生影响。结合化学的天气研究与预报模型(WRF-chem)已在全球范围内用于模拟沙尘暴,可为分析此类潜在影响提供支持。不过,该模型包含多种气溶胶参数选择,但尚未在研究地区进行便捷的评估。在此,我们对三种最流行的 WRF-chem 气溶胶参数化方案,即戈达德化学气溶胶辐射和传输(GOCART)、模拟气溶胶相互作用和化学模型(MOSAIC)以及欧洲模态气溶胶动力学模型(MADE)方案,在 2021 年 7 月 IP 南部强干燥沙尘暴期间进行了相互比较。结果表明,这三种方案预测的沙尘入侵模式在本质上相似,与地面观测结果一致,模型间沙尘负荷差异小于 4%。然而,它们的平均沙尘粒径分布却有明显差异。GOCART 与观测结果基本一致,而 MOSAIC 则低估了亚微米直径尘粒的数量,高估了大颗粒尘粒的数量,而 MADE 则与此相反。在 MOSAIC 和 MADE 中,这对尘埃光学特性的预测性能有很大的不利影响,这至少部分与尘埃发射和光学特性计算过程中所需的尘埃参数截面间再分布问题有关。总的来说,GOCART 似乎是南纬度地区强干沙尘爆发事件的更好选择。在湿沙尘爆发时,仍需对其进行评估,这项工作正在进行中。
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Intercomparison of WRF-chem aerosol schemes during a dry Saharan dust outbreak in Southern Iberian Peninsula
The Iberian Peninsula (IP), where this study is conducted, has experienced an increase of the frequency and intensity of Saharan aerosol dust outbreaks over the latest decades, which may have an impact on its regional climate. The Weather Research and Forecasting model coupled with chemistry (WRF-chem) has been used worldwide to simulate dust outbreaks and can support the analysis of such potential impacts. However, it includes multiple alternative aerosol parameterization choices that have not been conveniently evaluated in the study region yet. Here, three of the most popular WRF-chem aerosol parameterization schemes, namely, the Goddard Chemistry Aerosol Radiation and Transport (GOCART), the Model for Simulating Aerosol Interactions and Chemistry (MOSAIC) and the Modal Aerosol Dynamics Model for Europe (MADE) schemes, are inter-compared during a strong and dry dust outbreak on July 2021 in southern IP. The results show that the three schemes predict qualitatively similar dust intrusion patterns that are consistent with ground observations and have inter-model dust loading differences smaller than 4%. However, their average dust size distributions differ notably. While GOCART is reasonably consistent with observations, MOSAIC underpredicts the amount of dust particles with sub-micron diameters and overpredicts that of large particles and MADE does the opposite. This is found to have a strong detrimental impact on the prediction performance of dust optical properties in MOSAIC and MADE, which is related, at least partially, with issues in the required inter-sectional redistribution of dust parameters during the dust emission and calculation of optical properties. Overall, GOCART generally appears a better choice for strong and dry dust outbreak events in southern IP. It remains to be evaluated during wet dust outbreaks, which is a work underway.
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来源期刊
Atmospheric Environment
Atmospheric Environment 环境科学-环境科学
CiteScore
9.40
自引率
8.00%
发文量
458
审稿时长
53 days
期刊介绍: Atmospheric Environment has an open access mirror journal Atmospheric Environment: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. Atmospheric Environment is the international journal for scientists in different disciplines related to atmospheric composition and its impacts. The journal publishes scientific articles with atmospheric relevance of emissions and depositions of gaseous and particulate compounds, chemical processes and physical effects in the atmosphere, as well as impacts of the changing atmospheric composition on human health, air quality, climate change, and ecosystems.
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