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Fluid-Structure Interaction: Modeling, Adaptive Discretisations and Solvers [Kõva köide]

Edited by , Contributions by , Edited by , Edited by , Contributions by , Contributions by , Edited by , Contributions by , Contributions by , Edited by
  • Formaat: Hardback, 386 pages, kõrgus x laius: 240x170 mm, kaal: 788 g, 106 Illustrations, color; 53 Illustrations, black and white
  • Sari: Radon Series on Computational and Applied Mathematics
  • Ilmumisaeg: 20-Nov-2017
  • Kirjastus: De Gruyter
  • ISBN-10: 3110495279
  • ISBN-13: 9783110495270
  • Formaat: Hardback, 386 pages, kõrgus x laius: 240x170 mm, kaal: 788 g, 106 Illustrations, color; 53 Illustrations, black and white
  • Sari: Radon Series on Computational and Applied Mathematics
  • Ilmumisaeg: 20-Nov-2017
  • Kirjastus: De Gruyter
  • ISBN-10: 3110495279
  • ISBN-13: 9783110495270
This monograph discusses modeling, adaptive discretisation techniques and the numerical solution of fluid structure interaction. An emphasis in part I lies on innovative discretisation and advanced interface resolution techniques. The second part covers the efficient and robust numerical solution of fluid-structure interaction.

In part III, recent advances in the application fields vascular flows, binary-fluid-solid interaction, and coupling to fractures in the solid part are presented. Moreover each chapter provides a comprehensive overview in the respective topics including many references to concurring state-of-the art work.





Contents Part I: Modeling and discretization On the implementation and benchmarking of an extended ALE method for FSI problems The locally adapted parametric finite element method for interface problems on triangular meshes An accurate Eulerian approach for fluid-structure interactions

Part II: Solvers Numerical methods for unsteady thermal fluid structure interaction Recent development of robust monolithic fluid-structure interaction solvers A monolithic FSI solver applied to the FSI 1,2,3 benchmarks

Part III: Applications Fluid-structure interaction for vascular flows: From supercomputers to laptops Binary-fluidsolid interaction based on the NavierStokesCahnHilliard Equations Coupling fluid-structure interaction with phase-field fracture: Algorithmic details
S. Frei, Heidelberg, Germany; B. Holm, KTH, Sweden; T. Richter, Erlangen, Germany; T. Wick and H. Yang, RICAM, Austria.