Cargando…

Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts

This book provides an introduction to PDE-constrained optimisation using finite elements and the adjoint approach. The practical impact of the mathematical insights presented here are demonstrated using the realistic scenario of the optimal placement of marine power turbines, thereby illustrating th...

Descripción completa

Detalles Bibliográficos
Autores principales: Schwedes, Tobias, Ham, David A, Funke, Simon W, Piggott, Matthew D
Lenguaje:eng
Publicado: Springer 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/978-3-319-59483-5
http://cds.cern.ch/record/2276937
_version_ 1780955222552608768
author Schwedes, Tobias
Ham, David A
Funke, Simon W
Piggott, Matthew D
author_facet Schwedes, Tobias
Ham, David A
Funke, Simon W
Piggott, Matthew D
author_sort Schwedes, Tobias
collection CERN
description This book provides an introduction to PDE-constrained optimisation using finite elements and the adjoint approach. The practical impact of the mathematical insights presented here are demonstrated using the realistic scenario of the optimal placement of marine power turbines, thereby illustrating the real-world relevance of best-practice Hilbert space aware approaches to PDE-constrained optimisation problems. Many optimisation problems that arise in a real-world context are constrained by partial differential equations (PDEs). That is, the system whose configuration is to be optimised follows physical laws given by PDEs. This book describes general Hilbert space formulations of optimisation algorithms, thereby facilitating optimisations whose controls are functions of space. It demonstrates the importance of methods that respect the Hilbert space structure of the problem by analysing the mathematical drawbacks of failing to do so. The approaches considered are illustrated using the optimisation problem arising in tidal array layouts mentioned above. This book will be useful to readers from engineering, computer science, mathematics and physics backgrounds interested in PDE-constrained optimisation and their real-world applications.
id cern-2276937
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
publisher Springer
record_format invenio
spelling cern-22769372021-04-21T19:08:28Zdoi:10.1007/978-3-319-59483-5http://cds.cern.ch/record/2276937engSchwedes, TobiasHam, David AFunke, Simon WPiggott, Matthew DMesh dependence in PDE-constrained optimisation: an application in tidal turbine array layoutsMathematical Physics and MathematicsThis book provides an introduction to PDE-constrained optimisation using finite elements and the adjoint approach. The practical impact of the mathematical insights presented here are demonstrated using the realistic scenario of the optimal placement of marine power turbines, thereby illustrating the real-world relevance of best-practice Hilbert space aware approaches to PDE-constrained optimisation problems. Many optimisation problems that arise in a real-world context are constrained by partial differential equations (PDEs). That is, the system whose configuration is to be optimised follows physical laws given by PDEs. This book describes general Hilbert space formulations of optimisation algorithms, thereby facilitating optimisations whose controls are functions of space. It demonstrates the importance of methods that respect the Hilbert space structure of the problem by analysing the mathematical drawbacks of failing to do so. The approaches considered are illustrated using the optimisation problem arising in tidal array layouts mentioned above. This book will be useful to readers from engineering, computer science, mathematics and physics backgrounds interested in PDE-constrained optimisation and their real-world applications.Springeroai:cds.cern.ch:22769372017
spellingShingle Mathematical Physics and Mathematics
Schwedes, Tobias
Ham, David A
Funke, Simon W
Piggott, Matthew D
Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title_full Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title_fullStr Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title_full_unstemmed Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title_short Mesh dependence in PDE-constrained optimisation: an application in tidal turbine array layouts
title_sort mesh dependence in pde-constrained optimisation: an application in tidal turbine array layouts
topic Mathematical Physics and Mathematics
url https://dx.doi.org/10.1007/978-3-319-59483-5
http://cds.cern.ch/record/2276937
work_keys_str_mv AT schwedestobias meshdependenceinpdeconstrainedoptimisationanapplicationintidalturbinearraylayouts
AT hamdavida meshdependenceinpdeconstrainedoptimisationanapplicationintidalturbinearraylayouts
AT funkesimonw meshdependenceinpdeconstrainedoptimisationanapplicationintidalturbinearraylayouts
AT piggottmatthewd meshdependenceinpdeconstrainedoptimisationanapplicationintidalturbinearraylayouts