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ICON–ART 1.0 – a new online-coupled model system from the global to regional scale

机译:ICON–ART 1.0 –一种从全球到区域规模的新型在线耦合模型系统

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We present the first stage of a new online-coupled global to regional-scale modeling framework for the simulation of the spatiotemporal evolution of aerosols and trace gases. The underlying meteorological model is the new nonhydrostatic model system ICON (ICOsahedral Nonhydrostatic) which allows a local grid refinement with two-way interactions between the grids. We develop the extension ART (Aerosol and Reactive Trace gases) with the goal of simulating interactions between trace substances and the state of the atmosphere. Within this paper, we present the basic equations and give an overview of the physical parameterizations as well as numerical methods we use. First applications of the new model system for trace gases, monodisperse particles and polydisperse particles are shown. The simulated distribution of two very short-lived substances (VSLS), bromoform (CHBr3) and dibromomethane (CH2Br2) reflecting the fast upward transport shows a good agreement with observations and previous model studies. Also, the shape of the simulated tropical profiles is well reproduced. As an example for the treatment of monodisperse particles we present the simulated ash plume of the Eyjafjallaj?kull eruption in April 2010. Here, a novel approach for the source function is applied. The pattern of the simulated distribution of volcanic ash particles shows a good agreement with previous studies. As an example for the treatment of a polydisperse aerosol, where number densities and mass concentrations are accounted for, we simulated the annual emissions of sea salt. We obtain a total emission flux of 26.0 Pg yr−1 and an emission flux of particles with diameter less than 10 μm of 7.36 Pg yr−1.
机译:我们介绍了一个新的在线耦合的全球到区域规模的建模框架的第一阶段,该框架用于模拟气溶胶和痕量气体的时空演变。基本的气象模型是新的非静水模型系统ICON(ICOsahedral Nonhydrostatic),它可以通过网格之间的双向交互来优化局部网格。我们开发扩展ART(气溶胶和反应性痕量气体)的目的是模拟痕量物质与大气状态之间的相互作用。在本文中,我们介绍了基本方程式,并概述了所使用的物理参数化方法和数值方法。 展示了新模型系统在痕量气体,单分散颗粒和多分散颗粒上的首次应用。两种极短寿命物质(VSLS)的模拟分布:溴仿(CHBr 3 )和二溴甲烷(CH 2 Br 2 )反映了快速向上的运输与观测和以前的模型研究显示出很好的一致性。同样,模拟的热带剖面的形状也可以很好地再现。作为处理单分散颗粒的示例,我们在2010年4月展示了Eyjafjallaj?kull喷发的模拟烟羽。在这里,应用了一种新的源函数方法。火山灰颗粒的模拟分布模式与以前的研究显示出很好的一致性。作为处理多分散气溶胶(其中考虑了密度和质量浓度)的示例,我们模拟了海盐的年排放量。我们获得的总发射通量为26.0 Pg yr -1 和直径小于10μm的粒子的发射通量为7.36 Pg yr -1

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