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Computational Methods For Two-phase Flows [Hardback]

(Xi'an Jiaotong - Univ Of Liverpool, Suzhou, China), (Univ Of Sci & Tech Of China, Hefei, China), (Univ Claude Bernard Lyon 1, France)
  • Formāts: Hardback, 350 pages
  • Sērija : Advances In Computational Fluid Dynamics
  • Izdošanas datums: 29-Feb-2024
  • Izdevniecība: World Scientific Publishing Co Pte Ltd
  • ISBN-10: 9814280976
  • ISBN-13: 9789814280976
Citas grāmatas par šo tēmu:
  • Hardback
  • Cena: 152,25 €
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  • Formāts: Hardback, 350 pages
  • Sērija : Advances In Computational Fluid Dynamics
  • Izdošanas datums: 29-Feb-2024
  • Izdevniecība: World Scientific Publishing Co Pte Ltd
  • ISBN-10: 9814280976
  • ISBN-13: 9789814280976
Citas grāmatas par šo tēmu:
This book uniquely presents an overview of methods for the numerical simulation of a wide range of two-phase flows, aimed at a broad readership of engineers and scientists at graduate level. Given that numerous methods have been proposed recently in this field, the new book series could not have been more timely and much needed for an up-to-date overview of the advances, whilst not restricting the focus on two-phase flows or any particular method. The book is written by a team of leading experts who have contributed substantially to the development of the methods and who have also applied the concepts and theories to a diverse range of applications.Computational Methods for Two-Phase Flows is self-contained, and aims to elucidate and analyze the strong relations between the various numerical methods, beyond merely giving detailed summary of the various methods. A unique enhanced feature of the book is that the sample codes that come with the book provide further benefits and ease of use to readers to implement the various numerical methods. The book is the first volume of a new book series entitled Advances in Computational Fluid Dynamics, published by World Scientific.
Interface Capturing and Tracking Methods; Coupling Two-Phase
Navier-Stokes Solvers with Interface Capturing Methods; Basic Numerical
Techniques; Issues in Interface Capturing; Adaptive Mesh Refinement; Complex
Geometries; Numerical Methods for Asymptotic Regimes.