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美国国家航空航天局(NASA)飓风和海洋观测强化计划(HS3)野外考察期间尘埃对2012年飓风纳丁路径的影响

Dust Impacts on the 2012 Hurricane Nadine Track during the NASA HS3 Field Campaign.

作者信息

Nowottnick E P, Colarco P R, Braun S A, Barahona D O, da Silva A, Hlavka D L, McGill M J, Spackman J R

机构信息

GESTAR/Universities Space Research Association, Columbia, MD, 21046, USA.

Atmospheric Chemistry and Dynamics Laboratory, Code 614, NASA GSFC, Greenbelt, MD, 20771, USA.

出版信息

J Atmos Sci. 2018 Jul;75(7):2473-2489. doi: 10.1175/JAS-D-17-0237.1. Epub 2018 Jul 11.

Abstract

During the 2012 deployment of the NASA Hurricane and Severe Storm Sentinel (HS3) field campaign, several flights were dedicated to investigating Hurricane Nadine. Hurricane Nadine developed in close proximity to the dust-laden Saharan Air Layer, and is the fourth longest-lived Atlantic hurricane on record, experiencing two strengthening and weakening periods during its 22-day total lifecycle as a tropical cyclone. In this study, the NASA GEOS-5 atmospheric general circulation model and data assimilation system was used to simulate the impacts of dust during the first intensification and weakening phases of Hurricane Nadine using a series of GEOS-5 forecasts initialized during Nadine's intensification phase (12 September 2012). The forecasts explore a hierarchy of aerosol interactions within the model: no aerosol interaction, aerosol-radiation interactions, and aerosol-radiation and aerosol-cloud interactions simultaneously, as well as variations in assumed dust optical properties. When only aerosolradiation interactions are included, Nadine's track exhibits sensitivity to dust shortwave absorption, as a more absorbing dust introduces a shortwave temperature perturbation that impacts Nadine's structure and steering flow, leading to a northward track divergence after 5 days of simulation time. When aerosol-cloud interactions are added, the track exhibits little sensitivity to dust optical properties. This result is attributed to enhanced longwave atmospheric cooling from clouds that counters shortwave atmospheric warming by dust surrounding Nadine, suggesting that aerosol-cloud interactions are a more significant influence on Nadine's track than aerosol-radiation interactions. These findings demonstrate that tropical systems, specifically their track, can be impacted by dust interaction with the atmosphere.

摘要

在2012年美国国家航空航天局飓风与严重风暴哨兵(HS3)野外考察期间,有几次飞行任务专门用于对飓风纳丁进行调查。飓风纳丁在靠近沙尘弥漫的撒哈拉空气层的区域发展形成,是有记录以来在大西洋持续时间第四长的飓风,在其作为热带气旋的22天总生命周期内经历了两次增强和减弱阶段。在本研究中,利用美国国家航空航天局的GEOS - 5大气环流模型和数据同化系统,通过在纳丁增强阶段(2012年9月12日)初始化的一系列GEOS - 5预报,来模拟飓风纳丁首次增强和减弱阶段沙尘的影响。这些预报探讨了模型内气溶胶相互作用的层次结构:无气溶胶相互作用、气溶胶 - 辐射相互作用、同时存在气溶胶 - 辐射和气溶胶 - 云相互作用,以及假定沙尘光学特性的变化。当仅考虑气溶胶 - 辐射相互作用时,纳丁的路径对沙尘短波吸收表现出敏感性,因为吸收性更强的沙尘会引入短波温度扰动,影响纳丁的结构和引导气流,导致在模拟时间5天后路径向北偏离。当加入气溶胶 - 云相互作用时,路径对沙尘光学特性几乎没有敏感性。这一结果归因于云层增强的大气长波冷却抵消了纳丁周围沙尘引起的大气短波变暖,这表明气溶胶 - 云相互作用对纳丁路径的影响比气溶胶 - 辐射相互作用更为显著。这些发现表明,热带系统,特别是其路径,会受到沙尘与大气相互作用的影响。

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