Data Assimilation and its Applications: Pageoph Topical Volumes
Editat de Maithili Sharan, Jean Pierre Issartelen Limba Engleză Paperback – 19 mai 2012
This volume contains many original findings in data assimilation and its applications related to atmospheric, oceanic and environmental systems. This covers various data assimilation techniques with in Bayesian and non-Bayesian framework ranging from Least-Square, nudging, three dimensional variational (3DVAR), four-dimensional variational (4DVAR), Local Ensemble Kalman filter, Genetic algorithm etc. This also covers the applications to extreme weather event, hurricane, Asian summer monsoon, structure of the barrier layer in the equatorial Pacific ocean and identification of emission sources.
This volume will be useful as a reading material in graduate level courses dealing with data assimilation and its application to meteorology, ocean and air quality. The scientific community at large especially younger scientists will find this book a useful addition to their personal and institutional libraries.
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Specificații
ISBN-13: 9783034804417
ISBN-10: 3034804415
Pagini: 286
Ilustrații: VI, 286 p.
Dimensiuni: 193 x 260 x 20 mm
Greutate: 0.6 kg
Ediția:2012
Editura: Springer
Colecția Birkhäuser
Seria Pageoph Topical Volumes
Locul publicării:Basel, Switzerland
ISBN-10: 3034804415
Pagini: 286
Ilustrații: VI, 286 p.
Dimensiuni: 193 x 260 x 20 mm
Greutate: 0.6 kg
Ediția:2012
Editura: Springer
Colecția Birkhäuser
Seria Pageoph Topical Volumes
Locul publicării:Basel, Switzerland
Public țintă
ResearchCuprins
Preface.- A. General Techniques.- B. Data Assimilation with Applications to the Atmosphere.- C. Data Assimilation with Applications to Air Quality.- D. Data Assimilation with Applications to the Ocean.
Textul de pe ultima copertă
Data assimilation is a novel, versatile methodology for estimating atmospheric and oceanic variables. The estimation of a quantity of interest via data assimilation involves the combination of observational data with the underlying dynamical principles governing the system under observation.
This volume contains many original findings in data assimilation and its applications related to atmospheric, oceanic and environmental systems. This covers various data assimilation techniques with in Bayesian and non-Bayesian framework ranging from Least-Square, nudging, three dimensional variational (3DVAR), four-dimensional variational (4DVAR), Local Ensemble Kalman filter, Genetic algorithm etc. This also covers the applications to extreme weather event, hurricane, Asian summer monsoon, structure of the barrier layer in the equatorial Pacific ocean and identification of emission sources.
This volume will be useful as a reading material in graduate level courses dealing with data assimilation and its application to meteorology, ocean and air quality. The scientific community at large especially younger scientists will find this book a useful addition to their personal and institutional libraries.
This volume contains many original findings in data assimilation and its applications related to atmospheric, oceanic and environmental systems. This covers various data assimilation techniques with in Bayesian and non-Bayesian framework ranging from Least-Square, nudging, three dimensional variational (3DVAR), four-dimensional variational (4DVAR), Local Ensemble Kalman filter, Genetic algorithm etc. This also covers the applications to extreme weather event, hurricane, Asian summer monsoon, structure of the barrier layer in the equatorial Pacific ocean and identification of emission sources.
This volume will be useful as a reading material in graduate level courses dealing with data assimilation and its application to meteorology, ocean and air quality. The scientific community at large especially younger scientists will find this book a useful addition to their personal and institutional libraries.
Caracteristici
Presents an up-to-date and versatile methodology Contains many original findings for atmospheric, oceanic and environmental systems Suitable researchers as well as for graduate level courses