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首页> 外文期刊>Bulletin of the American Meteorological Society >The Arctic Cloud Puzzle: Using ACLOUD/PASCAL Multiplatform Observations to Unravel the Role of Clouds and Aerosol Particles in Arctic Amplification
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The Arctic Cloud Puzzle: Using ACLOUD/PASCAL Multiplatform Observations to Unravel the Role of Clouds and Aerosol Particles in Arctic Amplification

机译:北极云拼图:使用Acloud / Pascal多功能性观测观察,解开云和气溶胶颗粒在北极放大中的作用

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Clouds play an important role in Arctic amplification. This term represents the recently observed enhanced warming of the Arctic relative to the global increase of near-surface air temperature. However, there are still important knowledge gaps regarding the interplay between Arctic clouds and aerosol particles, and surface properties, as well as turbulent and radiative fluxes that inhibit accurate model simulations of clouds in the Arctic climate system. In an attempt to resolve this so-called Arctic cloud puzzle, two comprehensive and closely coordinated field studies were conducted: the Arctic Cloud Observations Using Airborne Measurements during Polar Day (ACLOUD) aircraft campaign and the Physical Feedbacks of Arctic Boundary Layer, Sea Ice, Cloud and Aerosol (PASCAL) ice breaker expedition. Both observational studies were performed in the framework of the German Arctic Amplification: Climate Relevant Atmospheric and Surface Processes, and Feedback Mechanisms (AC)(3) project. They took place in the vicinity of Svalbard, Norway, in May and June 2017. ACLOUD and PASCAL explored four pieces of the Arctic cloud puzzle: cloud properties, aerosol impact on clouds, atmospheric radiation, and turbulent dynamical processes. The two instrumented Polar 5 and Polar 6 aircraft; the icebreaker Research Vessel (R/V) Polarstern; an ice floe camp including an instrumented tethered balloon; and the permanent ground-based measurement station at Ny-angstrom lesund, Svalbard, were employed to observe Arctic low- and mid-level mixed-phase clouds and to investigate related atmospheric and surface processes. The Polar 5 aircraft served as a remote sensing observatory examining the clouds from above by downward-looking sensors; the Polar 6 aircraft operated as a flying in situ measurement laboratory sampling inside and below the clouds. Most of the collocated Polar 5/6 flights were conducted either above the R/V Polarstern or over the Ny-angstrom lesund station, both of which monitored the clouds from below using similar but upward-looking remote sensing techniques as the Polar 5 aircraft. Several of the flights were carried out underneath collocated satellite tracks. The paper motivates the scientific objectives of the ACLOUD/PASCAL observations and describes the measured quantities, retrieved parameters, and the applied complementary instrumentation. Furthermore, it discusses selected measurement results and poses critical research questions to be answered in future papers analyzing the data from the two field campaigns.
机译:云在北极扩增中发挥着重要作用。该术语代表最近观察到北极的增强变暖相对于全球近表面空气温度的增加。然而,仍然存在关于北极云和气溶胶颗粒之间的相互作用的重要知识差距,以及表面性质,以及抑制北极气候系统中云准确模型模拟的湍流和辐射助熔剂。在尝试解决这一所谓的北极云难题,进行了两项全面和密切的协调的实地研究:北极云观察在极地(ACLoud)飞机运动期间使用空气测量和北极边界层,海冰,海冰的物理反馈云和气溶胶(Pascal)破碎机远征。在德国北极扩增的框架中进行了观察研究:气候相关的大气和表面过程,以及反馈机制(AC)(3)项目。他们在挪威斯瓦尔巴德附近,于2017年5月和6月举行。Acloud和Pascal探索了四件北极云拼图:云属性,气溶胶对云,大气辐射和湍流动态过程的影响。这两种仪表型极性5和极6架飞机;破冰船研究容器(R / V)偏光型;冰川营地包括仪表束缚的球囊;和NY-Angstrom Lesund,Svalbard的永久地基测量站被用来观察北极低位和中级混合阶段云,并调查相关的大气和表面过程。 Polar 5飞机作为遥感天文台,通过向上的传感器检查云;极性6架飞机随着云层内部和下方的飞行原位测量实验室采样。大多数并置的极性5/6飞行在R / V偏光柱上方或纽约埃·埃克斯坦的Lesund站之上进行,两者都使用类似但向上看遥感技术作为极地5飞机监测下面的云。在并置卫星轨道下面进行了几种航班。本文激励了Acloud / Pascal观察的科学目标,并描述了测量的数量,检索参数和应用的互补仪器。此外,它讨论了所选的测量结果,并在未来论文中回答了关键的研究问题,分析了两个现场运动的数据。

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