基于中分辨率全球气候模式FORTE2的亚洲系统区域气溶胶扰动(SyRAP)

IF 4.4 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Advances in Modeling Earth Systems Pub Date : 2024-12-06 DOI:10.1029/2023MS004171
Camilla W. Stjern, Manoj Joshi, Laura J. Wilcox, Amee Gollop, Bjørn H. Samset
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引用次数: 0

摘要

人为气溶胶的排放在数量、组成和地理分布方面正在迅速变化。特别是在东亚和南亚,强烈的气溶胶趋势加上高人口密度意味着对气候变化的潜在脆弱性很高。迫切需要提高对近期气候和天气如何影响这些变化的认识,以便制定更明智的适应战略。为了理解和分解区域气溶胶排放变化对局地和远地气候的影响,我们使用降低复杂性气候模式FORTE 2.0 (FORTE2)进行了一套系统区域气溶胶摄动(SyRAP)。吸收和散射气溶胶分别在东亚和南亚进行扰动,以评估它们对气候的不同影响。在本文中,我们首先提出了FORTE2的更新版本,其中包括对气溶胶-云相互作用的处理。然后,我们记录并验证了对一系列参数的局部响应,例如,在东亚和南亚,去除吸收气溶胶的排放预计会导致局部干燥,以及一系列更广泛的影响。我们发现SyRAP-FORTE2能够重现文献中记录的亚洲气溶胶变化的响应,并且它可以帮助我们分解两个地区气溶胶的区域气候影响。最后,我们展示了SyRAP-FORTE2如何在温度和降水方面具有区域线性响应,并且可以用作模拟器和可调简单气候模型的输入,并作为预测亚洲气溶胶排放近期变化的本地和远程影响的现成工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Systematic Regional Aerosol Perturbations (SyRAP) in Asia Using the Intermediate-Resolution Global Climate Model FORTE2

Emissions of anthropogenic aerosols are rapidly changing, in amounts, composition and geographical distribution. In East and South Asia in particular, strong aerosol trends combined with high population densities imply high potential vulnerability to climate change. Improved knowledge of how near-term climate and weather influences these changes is urgently needed, to allow for better-informed adaptation strategies. To understand and decompose the local and remote climate impacts of regional aerosol emission changes, we perform a set of Systematic Regional Aerosol Perturbations (SyRAP) using the reduced-complexity climate model FORTE 2.0 (FORTE2). Absorbing and scattering aerosols are perturbed separately, over East Asia and South Asia, to assess their distinct influences on climate. In this paper, we first present an updated version of FORTE2, which includes treatment of aerosol-cloud interactions. We then document and validate the local responses over a range of parameters, showing for instance that removing emissions of absorbing aerosols over both East Asia and South Asia is projected to cause a local drying, alongside a range of more widespread effects. We find that SyRAP-FORTE2 is able to reproduce the responses to Asian aerosol changes documented in the literature, and that it can help us decompose regional climate impacts of aerosols from the two regions. Finally, we show how SyRAP-FORTE2 has regionally linear responses in temperature and precipitation and can be used as input to emulators and tunable simple climate models, and as a ready-made tool for projecting the local and remote effects of near-term changes in Asian aerosol emissions.

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来源期刊
Journal of Advances in Modeling Earth Systems
Journal of Advances in Modeling Earth Systems METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
11.40
自引率
11.80%
发文量
241
审稿时长
>12 weeks
期刊介绍: The Journal of Advances in Modeling Earth Systems (JAMES) is committed to advancing the science of Earth systems modeling by offering high-quality scientific research through online availability and open access licensing. JAMES invites authors and readers from the international Earth systems modeling community. Open access. Articles are available free of charge for everyone with Internet access to view and download. Formal peer review. Supplemental material, such as code samples, images, and visualizations, is published at no additional charge. No additional charge for color figures. Modest page charges to cover production costs. Articles published in high-quality full text PDF, HTML, and XML. Internal and external reference linking, DOI registration, and forward linking via CrossRef.
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