首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Planning, implementation, and scientific goals of the Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC~4RS) field mission
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Planning, implementation, and scientific goals of the Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC~4RS) field mission

机译:区域调查(SEAC〜4RS)实地考察的排放与大气成分,云与气候耦合研究的计划,实施和科学目标

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The Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Surveys (SEAC~4RS) fieldmission based at Ellington Field, Texas, during August and September 2013 employed the most comprehensive airborne payload to date to investigate atmospheric composition over North America. The NASA ER-2, DC-8, and SPEC Inc. Learjet flew 57 science flights fromthe surface to 20 km. The ER-2 employed seven remote sensing instruments as a satellite surrogate and eight in situ instruments. The DC-8 employed 23 in situ and five remote sensing instruments for radiation, chemistry, and microphysics. The Learjet used 11 instruments to explore cloud microphysics. SEAC~4RS launched numerous balloons, augmented AErosol RObotic NETwork, and collaborated with many existing ground measurement sites. Flights investigating convection included close coordination of all three aircraft. Coordinated DC-8 and ER-2 flights investigated the optical properties of aerosols, the influence of aerosols on clouds, and the performance of new instruments for satellite measurements of clouds and aerosols. ER-2 sorties sampled stratospheric injections of water vapor and other chemicals by local and distant convection. DC-8 flights studied seasonally evolving chemistry in the Southeastern U.S., atmospheric chemistry with lower emissions of NO_x and SO_2 than in previous decades, isoprene chemistry under high and lowNO_x conditions at different locations, organic aerosols, air pollution near Houston and in petroleum fields, smoke from wildfires in western forests and from agricultural fires in the Mississippi Valley, and the ways in which the chemistry in the boundary layer and the upper troposphere were influenced by vertical transport in convective clouds.
机译:2013年8月至9月,基于德克萨斯州埃灵顿场的区域调查(SEAC〜4RS)场发射对排放与大气成分,云与气候耦合的研究采用了迄今为止最全面的机载有效载荷来调查北美的大气成分。 NASA ER-2,DC-8和SPEC Inc. Learjet从地面飞到了20公里,进行了57次科学飞行。 ER-2使用了七种遥感仪器作为卫星替代物和八种原位仪器。 DC-8在辐射,化学和微观物理学方面采用了23台原位和5台遥感仪器。 Learjet使用了11种仪器来探索云微观物理学。 SEAC〜4RS发射了许多气球,增强的AErosol RObotic NETwork,并与许多现有的地面测量站点进行了合作。调查对流的航班包括所有三架飞机的紧密配合。协调的DC-8和ER-2飞行研究了气溶胶的光学特性,气溶胶对云的影响以及用于卫星测量云和气溶胶的新型仪器的性能。 ER-2通过局部和远距离对流对平流层注入的水蒸气和其他化学物质进行采样。 DC-8航班研究了美国东南部的季节性化学变化,与过去几十年相比NO_x和SO_2排放量较低的大气化学,在不同地点的高和低NO_x条件下的异戊二烯化学,有机气溶胶,休斯顿附近和油田的空气污染,西部森林的野火和密西西比河谷的农业大火产生的烟雾,以及对流云中垂直传输对边界层和对流层上部化学成分的影响方式。

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