Physics and Dynamics of Clouds and Precipitation

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This key new textbook provides a state-of-the-art view of the physics of cloud and precipitation formation, covering the most important topics in the field: the microphysics, thermodynamics and cloud-scale dynamics. Highlights include: the condensation process explained with new insights from chemical physics studies the impact of the particle curvature (the Kelvin equation) and solute effect (the Köhler equation) homogeneous and heterogeneous nucleation from recent molecular dynamic simulations and the hydrodynamics of falling hydrometeors and their impact on collision growth. 3D cloud-model simulations demonstrate the dynamics and microphysics of deep convective clouds and cirrus formation, and each chapter contains problems enabling students to review and implement their new learning. Packed with detailed mathematical derivations and cutting-edge stereographic illustrations, this is an ideal text for graduate and advanced undergraduate courses, and also serves as a reference for academic researchers and professionals working in atmospheric science, meteorology, climatology, remote sensing and environmental science.
- Contains in-depth explanations of physical concepts, combined with problems for each chapter, providing students with a clear understanding of cloud processes - - - Presents thorough derivation of equations, enabling students to understand the results and further their own research
- Summarises important, state-of-the-art research, providing an up-to-date overview of the field

Author(s): Pao K Wang
Edition: draft
Publisher: Cambridge University Press
Year: 2013

Language: English
Pages: 476
City: Cambridge
Tags: Науки о Земле;Метеорология и климатология;Физико-химические процессы в атмосфере. Методы измерений;

Physics and Dynamics of Clouds and Precipitation......Page 1
Contents......Page 7
Preface page......Page 9
1. Observation of clouds......Page 17
2. The shape and size of cloud and precipitation particles......Page 43
3. Molecular structures of water substance......Page 84
4. Bulk thermodynamic equilibrium among water vapor, liquid water, and ice......Page 102
5. Surface thermodynamics of water substance......Page 123
6. Aerosol in the atmosphere......Page 150
7. Nucleation......Page 172
8. Hydrodynamics of cloud and precipitation particles......Page 198
9. Diffusion growth and evaporation of cloud and precipitation particles......Page 244
10. Collision, coalescence, breakup, and melting......Page 268
11. Cloud drop population dynamics in the warm rain process......Page 304
12. Fundamental cloud dynamics......Page 321
13. Numerical cloud models......Page 343
14. Cloud electricity......Page 379
15. Clouds–environment interaction......Page 412
References......Page 445
Index......Page 461
Color Plates......Page 469