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Complex experiment on studying the microphysical, chemical, and optical properties of aerosol particles and estimating the contribution of atmospheric aerosol-to-earth radiation budget

机译:气溶胶颗粒的微神科,化学和光学性质研究和估算大气气溶胶到地球辐射预算的贡献的复杂实验

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摘要

The primary objective of this complex aerosol experiment was the measurement of microphysical, chemical, and optical properties of aerosol particles in the surface air layer and free atmosphere. The measurement data were used to retrieve the whole set of aerosol optical parameters, necessary for radiation calculations. Three measurement cycles were performed within the experiment during 2013: in spring, when the aerosol generation is maximal; in summer (July), when atmospheric boundary layer altitude and, hence, mixing layer altitude are maximal; and in late summer/early autumn, during the period of nucleation of secondary particles. Thus, independently obtained data on the optical, meteorological, and microphysical parameters of the atmosphere allow intercalibration and inter-complement of the data and thereby provide for qualitatively new information which explains the physical nature of the processes that form the vertical structure of the aerosol field.
机译:该复杂气溶胶实验的主要目的是测量表面空气层和游离大气中的气溶胶颗粒的微神科,化学和光学性质。 测量数据用于检索辐射计算所需的整套气溶胶光学参数。 在2013年期间在实验中进行三个测量循环:在春天,当气溶胶产生最大时; 夏季(7月),当大气边界层高度时,因此,混合层高度最大; 在夏末/初秋,在次级粒子成核期间。 因此,独立地获得了对大气的光学,气象和微微物理参数的数据允许数据的闭架和间相互补充,从而提供了定性的新信息,该信息解释了形成气溶胶场的垂直结构的过程的物理性质 。

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