Influence of atmospheric circulation on the interannual variability of transport from global and regional emissions into the Arctic

IF 5.2 1区 地球科学 Q1 ENVIRONMENTAL SCIENCES Atmospheric Chemistry and Physics Pub Date : 2024-06-17 DOI:10.5194/acp-24-6965-2024
Cheng Zheng, Yutian Wu, Mingfang Ting, Clara Orbe
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Abstract

Abstract. Trace gases and aerosols play a crucial role in shaping Arctic climate through their impacts on radiation and chemistry. The concentration of these substances over the Arctic is largely determined by long-range transport originating from midlatitude and tropical source regions. In this study, we explore how atmospheric circulation modulates the interannual variability of long-range transport into the Arctic by utilizing a chemistry–climate model. Idealized tracers, which have fixed lifetimes and spatially varying but temporally fixed surface emissions corresponding to the climatology of anthropogenic emissions of the year 2000, are employed to isolate the role of atmospheric transport from emission and chemistry in modulating interannual variability. Tracers emitted from different source regions are tagged to quantify their relative contributions. Model simulations reveal that tracers from Europe, East Asia, and North America contribute the most to Arctic tracer mass, followed by those from the Tibetan Plateau and South Asia, as well as the Middle East. These regional tracers are predominantly transported into the Arctic middle to upper troposphere, with the exception of tracers from Europe during winter, which are transported into the Arctic lower troposphere. Our analysis shows that the interannual variability of transport into the Arctic for each regional tracer is determined by the atmospheric circulation over the corresponding emission region; i.e., anomalous poleward and eastward winds over the source region promote transport into the Arctic. Considering tracers with global emissions, a southward shift of the midlatitude jet during winter favors increased transport into the Arctic, particularly for tracers emitted over Asia, aligning with previous studies. Comparisons of tracers with different lifetimes indicate that the interannual variability of shorter lifetime tracers is predominantly influenced by regional tracers with shorter transport pathways into the Arctic (e.g., Europe), while the interannual variability of longer lifetime tracers is more contributed by regional tracers with higher emissions (e.g., East Asia).
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大气环流对全球和区域排放物向北极迁移的年际变化的影响
摘要痕量气体和气溶胶通过对辐射和化学的影响,在塑造北极气候方面发挥着至关重要的作用。这些物质在北极上空的浓度主要取决于来自中纬度和热带源区的长程飘移。在这项研究中,我们利用化学-气候模型,探讨了大气环流如何调节进入北极的长程飘移的年际变化。理想化的示踪剂具有固定的生命周期和空间变化但时间固定的表面排放量,与 2000 年的人为排放气候学相对应。对不同来源地区排放的示踪剂进行标记,以量化它们的相对贡献。模型模拟显示,来自欧洲、东亚和北美的示踪剂对北极示踪剂质量的贡献最大,其次是来自青藏高原、南亚和中东的示踪剂。这些区域示踪剂主要被输送到北极对流层中上层,只有冬季来自欧洲的示踪剂被输送到北极对流层下层。我们的分析表明,每种区域示踪剂迁移到北极的年际变化都是由相应排放区域的大气环流决定的;也就是说,来源区域上空的异常极向风和东向风促进了向北极的迁移。考虑到全球排放的示踪剂,冬季中纬度喷流南移有利于增加向北极的传输,尤其是亚洲排放的示踪剂,这与之前的研究一致。对不同寿命示踪剂的比较表明,寿命较短的示踪剂的年际变化主要受到进入北极的传输路径较短的区域示踪剂(如欧洲)的影响,而寿命较长的示踪剂的年际变化则更多地受到排放量较高的区域示踪剂(如东亚)的影响。
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来源期刊
Atmospheric Chemistry and Physics
Atmospheric Chemistry and Physics 地学-气象与大气科学
CiteScore
10.70
自引率
20.60%
发文量
702
审稿时长
6 months
期刊介绍: Atmospheric Chemistry and Physics (ACP) is a not-for-profit international scientific journal dedicated to the publication and public discussion of high-quality studies investigating the Earth''s atmosphere and the underlying chemical and physical processes. It covers the altitude range from the land and ocean surface up to the turbopause, including the troposphere, stratosphere, and mesosphere. The main subject areas comprise atmospheric modelling, field measurements, remote sensing, and laboratory studies of gases, aerosols, clouds and precipitation, isotopes, radiation, dynamics, biosphere interactions, and hydrosphere interactions. The journal scope is focused on studies with general implications for atmospheric science rather than investigations that are primarily of local or technical interest.
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