Fundamentals of atmospheric modeling / Mark Z. Jacobson

By: Jacobson, Mark ZMaterial type: TextTextPublication details: Cambridge, UK; New York: Cambridge University Press, 2005Edition: 2nd. edDescription: xiv, 813 p.: ill.; 26 cmISBN: 9780521548656 (pbk.); 9780521839709 (hbk.) ; 052183970X (hbk.) ; 0521548659 (pbk.)DDC classification: 551.51011
Contents:
1. Introduction 2. Atmospheric structure, composition and thermodynamics 3. The continuity and thermodynamic energy equations 4. The momentum equation in Cartesian and spherical coordinates 5. Vertical-coordinate conversions 6. Numerical solutions to partial differential equations 7. Finite-differencing the equations of atmospheric dynamics 8. Boundary-layer and surface processes 9. Radiative energy transfer 10. Gas-phase species, chemical reactions and reaction rates 11. Urban, free-tropospheric and stratospheric chemistry 12. Methods of solving chemical ordinary differential equations 13. Particle components, size distributions and size structures 14. Aerosol emission and nucleation 15. Coagulation 16. Condensation, evaporation, deposition and sublimation 17. Chemical equilibrium and dissolution processes 18. Cloud thermodynamics and dynamics 19. Irreversible aqueous chemistry 20. Sedimentation, dry deposition and air-sea exchange 21. Model design, application and testing
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1. Introduction
2. Atmospheric structure, composition and thermodynamics
3. The continuity and thermodynamic energy equations
4. The momentum equation in Cartesian and spherical coordinates
5. Vertical-coordinate conversions
6. Numerical solutions to partial differential equations
7. Finite-differencing the equations of atmospheric dynamics
8. Boundary-layer and surface processes
9. Radiative energy transfer
10. Gas-phase species, chemical reactions and reaction rates
11. Urban, free-tropospheric and stratospheric chemistry
12. Methods of solving chemical ordinary differential equations
13. Particle components, size distributions and size structures
14. Aerosol emission and nucleation
15. Coagulation
16. Condensation, evaporation, deposition and sublimation
17. Chemical equilibrium and dissolution processes
18. Cloud thermodynamics and dynamics
19. Irreversible aqueous chemistry
20. Sedimentation, dry deposition and air-sea exchange
21. Model design, application and testing

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