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An Introduction to Global Spectral Modeling (Hardcover, New): T.N. Krishnamurti, H. S. Bedi, V. M. Hardiker An Introduction to Global Spectral Modeling (Hardcover, New)
T.N. Krishnamurti, H. S. Bedi, V. M. Hardiker
R2,569 Discovery Miles 25 690 Ships in 10 - 15 working days

This book is an indispensable guide to the methods used by nearly all major weather forecast centers in the United States, England, Japan, India, France, and Australia. Designed for senior-level undergraduates and first-year graduate students, the book provides an introduction to global spectral modeling. It begins with an introduction to elementary finite-difference methods and moves on towards the gradual description of sophisticated dynamical and physical models in spherical coordinates. Topics include computational aspects of the spectral transform method, the planetary boundary layer physics, the physics of precipitation processes in large-scale models, the radiative transfer including effects of diagnostic clouds and diurnal cycle, the surface energy balance over land and ocean, and the treatment of mountains. The discussion of model initialization includes the treatment of normal modes and physical processes, and the concluding chapter covers the spectral energetics as a diagnostic tool for model evaluation.

An Introduction to Global Spectral Modeling (Hardcover, 2nd, rev. and enlarged ed. 2006): T.N. Krishnamurti, H. S. Bedi, V.... An Introduction to Global Spectral Modeling (Hardcover, 2nd, rev. and enlarged ed. 2006)
T.N. Krishnamurti, H. S. Bedi, V. Hardiker, Leela Watson-Ramaswamy
R2,312 R1,767 Discovery Miles 17 670 Save R545 (24%) Ships in 12 - 17 working days

This is an introductory textbook on global spectral modeling designed for senior-level undergraduates and possibly for first-year graduate students. This text starts with an introduction to elementary finite-difference methods and moves on towards the gradual description of sophisticated dynamical and physical models in spherical coordinates. Computational aspects of the spectral transform method, the planetary boundary layer physics, the physics of precipitation processes in large-scale models, the radiative transfer including effects of diagnostic clouds and diurnal cycle, the surface energy balance over land and ocean, and the treatment of mountains are some issues that are addressed. The topic of model initialization includes the treatment of normal modes and physical processes. A concluding chapter covers the spectral energetics as a diagnostic tool for model evaluation. This revised second edition of the text also includes three additional chapters. Chapter 11 deals with the formulation of a regional spectral model for mesoscale modeling which uses a double Fourier expansion of data and model equations for its transform. Chapter 12 deals with ensemble modeling. This is a new and important area for numerical weather and climate prediction. Finally, yet another new area that has to do with adaptive observational strategies is included as Chapter 13. It foretells where data deficiencies may reside in model from an exploratory ensemble run of experiments and the spread of such forecasts.

An Introduction to Global Spectral Modeling (Paperback, Softcover reprint of hardcover 2nd ed. 2006): T.N. Krishnamurti, H. S.... An Introduction to Global Spectral Modeling (Paperback, Softcover reprint of hardcover 2nd ed. 2006)
T.N. Krishnamurti, H. S. Bedi, V. Hardiker, Leela Watson-Ramaswamy
R1,609 Discovery Miles 16 090 Ships in 10 - 15 working days

This is an introductory textbook on global spectral modeling designed for senior-level undergraduates and possibly for first-year graduate students. This text starts with an introduction to elementary finite-difference methods and moves on towards the gradual description of sophisticated dynamical and physical models in spherical coordinates. Computational aspects of the spectral transform method, the planetary boundary layer physics, the physics of precipitation processes in large-scale models, the radiative transfer including effects of diagnostic clouds and diurnal cycle, the surface energy balance over land and ocean, and the treatment of mountains are some issues that are addressed. The topic of model initialization includes the treatment of normal modes and physical processes. A concluding chapter covers the spectral energetics as a diagnostic tool for model evaluation. This revised second edition of the text also includes three additional chapters. Chapter 11 deals with the formulation of a regional spectral model for mesoscale modeling which uses a double Fourier expansion of data and model equations for its transform. Chapter 12 deals with ensemble modeling. This is a new and important area for numerical weather and climate prediction. Finally, yet another new area that has to do with adaptive observational strategies is included as Chapter 13. It foretells where data deficiencies may reside in model from an exploratory ensemble run of experiments and the spread of such forecasts.

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