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portada Compatible Finite Element Methods for Geophysical Flows: Automation and Implementation Using Firedrake
Type
Physical Book
Publisher
Language
English
Pages
118
Format
Paperback
Dimensions
23.4 x 15.6 x 0.7 cm
Weight
0.19 kg.
ISBN13
9783030239565

Compatible Finite Element Methods for Geophysical Flows: Automation and Implementation Using Firedrake

Thomas H. Gibson (Author) · Andrew T. T. McRae (Author) · Colin J. Cotter (Author) · Springer · Paperback

Compatible Finite Element Methods for Geophysical Flows: Automation and Implementation Using Firedrake - Gibson, Thomas H. ; McRae, Andrew T. T. ; Cotter, Colin J.

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Synopsis "Compatible Finite Element Methods for Geophysical Flows: Automation and Implementation Using Firedrake"

This book introduces recently developed mixed finite element methods for large-scale geophysical flows that preserve essential numerical properties for accurate simulations. The methods are presented using standard models of atmospheric flows and are implemented using the Firedrake finite element library. Examples guide the reader through problem formulation, discretisation, and automated implementation. The so-called "compatible" finite element methods possess key numerical properties which are crucial for real-world operational weather and climate prediction. The authors summarise the theory and practical implications of these methods for model problems, introducing the reader to the Firedrake package and providing open-source implementations for all the examples covered. Students and researchers with engineering, physics, mathematics, or computer science backgrounds will benefit from this book. Those readers who are less familiar with the topic are providedwith an overview of geophysical fluid dynamics.

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