Compatible Finite Element Methods for Geophysical Flows by Thomas H. Gibson
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Compatible Finite Element Methods for Geophysical Flows

Compatible Finite Element Methods for Geophysical Flows


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About the Book

Preface.- Geophysical Fluid Dynamics and Simulation.- Finite Element Methods for Geophysical Flows.- Firedrake.- Models in Two-Dimensions.- Models in Three-Dimensions.- References.- Index.

About the Author:

Thomas Gibson is a PhD student in the Department of Mathematics at Imperial College London. He is supported and funded by the EPSRC Centre for Doctoral Training in The Mathematics of Planet Earth. His current interests are in the development of scalable numerical algorithms for simulating climate, weather, and ocean dynamics. He is an active developer of the Firedrake project.

Andrew McRae is a Research Associate working on reduced-precision weather forecasting in the Department of Physics at Oxford University. He received his PhD from Imperial College London on the use of finite element methods for weather prediction.

Colin Cotter is a Reader in Numerical Analysis and Scientific Computing at Imperial College London. His research focusses on the design, analysis, and implementation of numerical methods for weather forecasting, ocean modelling, and climate simulation.

Lawrence Mitchell is an Assistant Professor in the Department of Computer Science at Durham University. He received his PhD from the University of Edinburgh in condensed matter physics. His current research is in the development of scientific software for unstructured mesh problems and scalable solver algorithms for discretized PDEs. He is a leading developer of the Firedrake project.

David Ham is a Senior Lecturer in the Department of Mathematics at Imperial College London. His research interests center on the development of high-level abstractions for scientific computing. His interests span computational and computer science and include both new numerical schemes for geophysical fluid dynamics and novel approaches to their implementation. He is the founding developer of the Firedrake project.



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Product Details
  • ISBN-13: 9783030239565
  • Publisher: Springer International Publishing
  • Publisher Imprint: Springer
  • Height: 234 mm
  • No of Pages: 118
  • Spine Width: 7 mm
  • Weight: 240 gr
  • ISBN-10: 303023956X
  • Publisher Date: 06 Sep 2019
  • Binding: Paperback
  • Language: English
  • Returnable: Y
  • Sub Title: Automation and Implementation Using Firedrake
  • Width: 156 mm


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