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A Study on the Effects of the Ice Microphysics on Tropical Cyclones

机译:冰微物理对热带气旋影响的研究

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The effects of the ice microphysical processes on the development of weak vortices and tropical cyclones (TCs) are examined by numerical experiments with a nonhydrostatic model. Since it has been understood that the ice phase generally enhances the eyewall circulation in strong TCs because of additional heat release and insignificant effect of rainwater evaporation, this study focuses on the development of relatively weak vortices and TCs. Some past studies showed that the development is slower by the effects of the ice phase through cooling due to the melting of snow and graupel, whereas this study indicates that cooling due to evaporation of rainwater in the subcloud layer plays a much more important role in the slower development, and much more solid substances in the mid-troposphere, which are produced through the ice phase processes, contribute to more rainwater evaporation in the subcloud layer. The relative importance of many processes of the ice microphysics is also examined as a basis for future improvements of parameterization of the microphysical processes.
机译:通过使用非静水模型的数值实验,研究了冰的微物理过程对弱涡旋和热带气旋(TC)发展的影响。由于已经了解到,由于额外的热量释放和雨水蒸发的影响不大,冰期通常会增强强TC中的眼壁循环,因此本研究着重研究相对较弱的涡旋和TC。过去的一些研究表明,由于雪和gra的融化,冰相通过降温的作用使发育变慢,而这项研究表明,由于亚云层中雨水蒸发而导致的降温作用在降雪中起着更为重要的作用。发展缓慢,对流层中层通过冰期过程产生的更多固体物质,导致亚云层中更多的雨水蒸发。还检查了冰微物理学许多过程的相对重要性,将其作为未来改进微物理过程参数化的基础。

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