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A parcel model for the combined treatment of microphysical and multiphase chemical processes

机译:组合处理微物理和多相化学过程的包裹模型

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摘要

The accurate and efficient description of aerosol microphysical and chemical processes is required for the assessment of radiative and chemical effects of natural and anthropogenic atmospheric aerosols. The combined modeling of microphysical and chemical processes in the gas and aqueous phase such as meteorological changes, transformation of chemical species in the gas and liquid phase and the transfer of species from one phase to the other is required. Since the aforementioned processes proceed on similar time scales the usual time splitting schemes which perform process by process in a sequential order are not appropriate. In contrast to other approaches where a microphysical and a cloud chemistry model are coupled, the new approach treats both processes in a unified way both from the modeling and numerical point of view. It is argued that this new model type is better suited for incorporation in multidimensional atmospheric and transport models. Essential parts of the model are outlined. The differential equations are discretized in mass space by a discontinuous Galerkin method and integrated after that in time by an implicit-explicit time integration scheme. Numerous simulations are performed to show the reliability of the new approach. The Eulerian fixed grid approach is compared with a 2000 bin moving simulation to demonstrate the merits and demerits of a fixed grid.
机译:评估自然和人为大气气溶胶的辐射和化学效应需要对气溶胶的微物理和化学过程进行准确而有效的描述。需要对气相和水相中的微物理和化学过程进行组合建模,例如气象变化,气相和液相中的化学物质转化以及物质从一相到另一相的转移。由于前述过程以相似的时间尺度进行,因此按顺序执行逐个过程的常规时间划分方案是不合适的。与其他将微物理模型和云化学模型耦合在一起的方法相比,新方法从建模和数值角度都以统一的方式处理这两个过程。有人认为,这种新的模型类型更适合于纳入多维大气和运输模型。概述了模型的主要部分。通过不连续的Galerkin方法将微分方程离散在质量空间中,然后通过隐式-显式时间积分方案对其进行积分。进行了许多仿真,以显示新方法的可靠性。将欧拉固定网格方法与2000 bin移动模拟进行比较,以证明固定网格的优缺点。

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