云和降水粒子运动的理论研究综述

Pao K. Wang
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引用次数: 0

摘要

本文简要回顾了关于落云和降水颗粒周围流场的理论研究。这些粒子统称为水成物,它们的流体动力学对云的发展和消散至关重要,影响着短期天气和长期气候过程。本文综述了围绕着落水流星的适当的Navier-Stokes方程的解,特别是用数值方法得到的解。这里回顾的水成物包括云滴、雨滴、云冰晶、雪团、圆锥形霰、光滑的和分叶的冰雹。这篇综述主要是按时间顺序进行的,以便读者可以了解这个领域的研究是如何随着时间的推移而进展的。虽然本文的重点是理论研究,但也提供了关于该主题的实验室实验和现场观察的简要总结,以证实计算结果。最后展望了未来的工作,以提高我们在这方面的知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Studies on the Motions of Cloud and Precipitation Particles—A Review
The theoretical studies on the flow fields around falling cloud and precipitation particles are briefly reviewed. The hydrodynamics of these particles, collectively called hydrometeors, are of central importance to cloud development and dissipation, which impact both the short-term weather and long-term climate processes. This review focuses on the solutions of the appropriate Navier–Stokes equations around the falling hydrometeor, particularly those obtained by numerical methods. The hydrometeors reviewed here include cloud drops, raindrops, cloud ice crystals, snow aggregates, conical graupel, and smooth and lobed hailstones. The review is made largely in chronological order so that readers can obtain a sense of how the research in this field has progressed over time. Although this review focuses on theoretical studies, brief summaries of laboratory experiments and field observations on this subject are also provided so as to substantiate the calculation results. An outlook is given at the end to describe future works necessary to improve our knowledge in this area.
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