p>Forecasting and modelling fog formation, development, and dissipation is a significant challenge. Fog dynamics involve subtle interactions between small‐'/> How important are aerosol–fog interactions for the successful modelling of nocturnal radiation fog?
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How important are aerosol–fog interactions for the successful modelling of nocturnal radiation fog?

机译:夜间辐射雾成功建模的气雾雾相互作用是多么重要?

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abstract type="main" xml:lang="en"> p>Forecasting and modelling fog formation, development, and dissipation is a significant challenge. Fog dynamics involve subtle interactions between small‐scale turbulence, radiative transfer and microphysics. Recent studies have highlighted the role of aerosol and related cloud microphysical properties in the evolution of fog. In this article, we investigate this role using very high‐resolution large eddy simulations coupled with a newly developed multi‐moment cloud microphysics scheme (CASIM), which has been designed to model aerosol–cloud interactions. The simulation results demonstrate the sensitivity of the fog structure to the properties of the aerosol population (e.g. number concentration). This study also demonstrates the importance of the treatment of aerosol activation in fog formation and discusses future work required to improve the representation of aerosol–fog interactions for simulations of fog./p> /abstract>
机译:&摘要类型=“main”xml:lang =“en”> >预测和建模雾形成,开发和耗散是一项重大挑战。雾动态涉及小规模湍流,辐射转移和微物质学之间的微妙相互作用。最近的研究突出了气溶胶和相关云微神经性质在雾中的作用中的作用。在本文中,我们使用与新开发的多立体云微物理学计划(Casim)相结合的非常高分辨率的大型涡流模拟来调查此作用,该方案旨在模拟气溶胶云相互作用。仿真结果表明了雾结构对气溶胶种群的性质的敏感性(例如,数量浓度)。本研究还表明,在雾地层中治疗气溶胶活化的重要性,并讨论了改善雾模拟气雾雾相互作用所需的未来工作。& /&摘要>

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