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Representation of microphysical processes in cloud-resolving models: Spectral (bin) microphysics versus bulk parameterization

机译:在云分辨模型中表示微物理过程:光谱(bin)微物理与批量参数化

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摘要

Most atmospheric motions of different spatial scales and precipitation are closely related to phase transitions in clouds. The continuously increasing resolution of large-scale and mesoscale atmospheric models makes it feasible to treat the evolution of individual clouds. The explicit treatment of clouds requires the simulation of cloud microphysics. Two main approaches describing cloud microphysical properties and processes have been developed in the past four and a half decades: bulk microphysics parameterization and spectral (bin) microphysics (SBM). The development and utilization of both represent an important step forward in cloud modeling. This study presents a detailed survey of the physical basis and the applications of both bulk microphysics parameterization and SBM. The results obtained from simulations of a wide range of atmospheric phenomena, from tropical cyclones through Arctic clouds using these two approaches are compared. Advantages and disadvantages, as well as lines of future development for these methods are discussed.
机译:不同空间尺度和降水的大多数大气运动与云层的相变密切相关。大规模和中尺度大气模型分辨率的不断提高使得处理单个云的演化成为可能。对云的显式处理需要模拟云的微观物理学。在过去的四个半世纪中,已经开发出两种主要的方法来描述云的微物理性质和过程:体微物理参数化和光谱(bin)微物理(SBM)。两者的开发和利用代表着云建模向前迈出的重要一步。这项研究提供了详细的物理基础的调查,以及批量微物理参数化和SBM的应用。比较了使用两种方法从热带气旋到北极云的各种大气现象的模拟结果。讨论了这些方法的优缺点以及未来的发展方向。

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