Adaptive Mesh Refinement - Theory and Applications: Lecture Notes in Computational Science and Engineering, cartea 41
Editat de Tomasz Plewa, Timur Linde, V. Gregory Weirsen Limba Engleză Paperback – 8 dec 2004
Din seria Lecture Notes in Computational Science and Engineering
- 18%
Preț: 2074.95 lei - 18%
Preț: 1333.50 lei -
Preț: 369.74 lei - 20%
Preț: 952.45 lei - 15%
Preț: 620.67 lei - 15%
Preț: 625.32 lei -
Preț: 388.07 lei - 18%
Preț: 925.72 lei - 18%
Preț: 923.70 lei -
Preț: 381.54 lei - 18%
Preț: 917.30 lei - 15%
Preț: 616.64 lei - 15%
Preț: 618.04 lei - 15%
Preț: 621.70 lei - 18%
Preț: 1337.15 lei -
Preț: 414.88 lei -
Preț: 414.35 lei - 18%
Preț: 1182.28 lei - 20%
Preț: 640.50 lei - 15%
Preț: 631.61 lei - 15%
Preț: 622.37 lei - 18%
Preț: 912.45 lei - 18%
Preț: 1181.92 lei - 18%
Preț: 873.61 lei - 20%
Preț: 945.72 lei - 15%
Preț: 615.01 lei - 18%
Preț: 917.40 lei - 18%
Preț: 752.87 lei - 18%
Preț: 916.02 lei - 15%
Preț: 618.03 lei - 18%
Preț: 932.44 lei - 18%
Preț: 1202.63 lei - 15%
Preț: 627.69 lei - 18%
Preț: 710.10 lei
Preț: 1274.47 lei
Preț vechi: 1554.23 lei
-18%
Puncte Express: 1912
Carte tipărită la comandă
Livrare economică 29 mai-12 iunie
Specificații
ISBN-13: 9783540211471
ISBN-10: 3540211470
Pagini: 576
Ilustrații: XIV, 554 p. 275 illus., 11 illus. in color.
Dimensiuni: 155 x 235 x 36 mm
Greutate: 0.97 kg
Ediția:2005
Editura: Springer
Colecția Lecture Notes in Computational Science and Engineering
Seria Lecture Notes in Computational Science and Engineering
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3540211470
Pagini: 576
Ilustrații: XIV, 554 p. 275 illus., 11 illus. in color.
Dimensiuni: 155 x 235 x 36 mm
Greutate: 0.97 kg
Ediția:2005
Editura: Springer
Colecția Lecture Notes in Computational Science and Engineering
Seria Lecture Notes in Computational Science and Engineering
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
ResearchCuprins
Scientific Computing.- Computational Science “Same Old Silence, Same Old Mistakes” “Something More Is Needed … ”.- Massively Parallel Simulations with DOE?s ASCI Supercomputers: An Overview of the Los Alamos Crestone Project.- Methods.- Adaptive Mesh Refinement on Overlapping Grids.- A Dynamically Adaptive Arbitrary Lagrangian-Eulerian Method for Hydrodynamics.- Front Tracking Algorithm Using Adaptively Refined Meshes.- An accuracy study of mesh refinement on mapped grids.- Efficiency Gains from Time Refinement on AMR Meshes and Explicit Timestepping.- Using Krylov-Schwarz methods in an adaptive mesh refinement environment.- Dimensional Split Divergence-Free Reconstruction and Prolongation for Adaptive Mesh Refinement.- Multiresolution-based adaptive schemes for Hyperbolic Conservation Laws.- Multiresolution adaptive space refinement in geophysical fluid dynamics simulation.- Anisotropic mesh adaptivity in CFD.- A Posteriori Error Estimation and Mesh Adaptivity for Finite Volume and Finite Element Methods.- AMR for low Mach number reacting flow.- Simulations of Relativistic Astrophysical Flows.- AMR applied to non-linear Elastodynamics.- A Parallel AMR Implementation of The Discrete Ordinates Method for Radiation Transport.- Radiation Transport in AMR.- Software.- HERA: A Hydrodynamic AMR Platform for Multi-Physics Simulations.- Parallel Multi-dimensional and Multi-material Eulerian Staggered Mesh Schemes using Localised Patched Based Adaptive Mesh Refinement (AMR) for Strong Shock Wave Phenomena..- A general adaptive multi-resolution approach to ocean modelling: experiments in a primitive equation model of the north Atlantic.- An Overview of the PARAMESH AMR Software Package and Some of Its Applications.- AstroBEAR: AMR for Astrophysical Applications - I:Methods.- Introducing Enzo, an AMR Cosmology Application.- Toward Optimizing Enzo, an AMR Cosmology Application.- Construction and Application of an AMR Algorithm for Distributed Memory Computers.- Adaptive Mesh Refinement in a Grid Computing Environment.- Performance of Vector/Parallel Orientated Hydrodynamic Code.- On the efficiency of AMR in NIRVANA3.- Dynamic Load Balancing of SAMR Applications.- Applications.- The Impact of AMR in Numerical Astrophysics and Cosmology.- Recent Advances in the Collapse and Fragmentation of Turbulent Molecular Cloud Cores: The Formation of Low Mass Stars.- 3D AMR Simulations of Point-Symmetric Nebulae.- Mesh Refinement Calculations of Gravitational Waves and Black Holes in 3-Dimensions.- AstroBEAR: AMR for Astrophysical Applications - II: Tests and Applications.- Parallel, AMR MHD for Global Space Weather Simulations.- Adaptive Mesh Refinement for MHD Fusion Applications.- AMR for global atmospheric modelling.- Simulation of Vortex-Dominated Flows Using the FLASH Code.