Invited Speakers.- Two new techniques for generating exactly incompressible approximate velocities.- Role of High-End Computing in Meeting NASA#x2019;s Science and Engineering Challenges.- Recent Advances of Multi-phase Flow Computation with the Adaptive Soroban-grid Cubic Interpolated Propagation (CIP) Method.- Schemes.- On the Computation of Steady-State Compressible Flows Using a DG Method.- Space-Time Discontinuous Galerkin Method for Large Amplitude Nonlinear Water Waves.- A discontinuous Galerkin method with Hancock-type time integration for hyperbolic systems with stiff relaxation source terms.- Very High Order, Non-Oscillatory Fluctuation Distribution Schemes.- High-order residual distribution : discontinuity capturing crosswind dissipation and diffusion.- High-Order Fluctuation-Splitting Schemes for Advection-Diffusion Equations.- Construction of Higher Order Residual Distribution Schemes.- Stable and convergent residual distribution for time-dependent conservation laws.- An ALE Formulation of the Multidimensional Residual Distribution Scheme for Computations on Moving Meshes.- Solution of the steady Euler equations using Fluctuation Splitting schemes on quadrilateral elements.- A Residual-Based Compact Scheme for All-Speed Flows on Unstructured Grids.- Vorticity Preserving Scheme for Unsteady Compressible Flows.- Extension of the SD Method to Viscous Flow on Unstructured Grids.- Strictly Stable High Order Difference Methods for the Compressible Euler and Navier-Stokes Equations.- Uniform Flow Preserving Property of High Order Upwind Finite Difference Schemes on Generalized Coordinate System.- Implementation of an Enhanced Flux Formulation for Unsteady Navier-Stokes Solutions.- Computation of Eigenspaces of Hyperbolic Systems.- A Proposed Cure to the Carbuncle Phenomenon.- The High Order WLSQR Scheme and its Applications in Turbomachinery.- Building Better (Weighted) ENO Methods.- Discontinuity Diagnosis Essentially Non-Oscillatory Schemes.- Third Order Reconstruction on Unstructured Highly Irregular 3D Meshes.- An Intrinsically Multi-Dimensional Acoustics Convection Upstream Resolution Algorithm for the Euler Equations.- Multi-dimensional Limiting Process for Two- and Three-dimensional Flow Physics Analyses.- A Multidimensional Kinetic Upwind Method for Euler Equations.- High Resolution Quantum Kinetic Beam Schemes and Its Applications to Ideal Quantum Gas Dynamical Flows.- Semi-GLS Stabilization of FEM Applied to Incompressible Flows with Higher Reynolds Numbers.- Finite volume box scheme for a certain class of nonlinear conservation laws in mixed form.- Numerical study of the Colocated Clustered Finite Volume Scheme.- Arbitrary High Order Finite Volume Schemes on Unstructured Meshes.- Algorithms.- A high scalability parallel algebraic multigrid solver.- Jacobian-Free Newton-Krylov Methods: Issues and Solutions.- Non-stationary two-stage relaxation based on the principle of aggregation multi-grid.- The efficient and accurate solution of porous media flow problems with strongly discontinuous coefficients.- Stability of Pressure-Correction Algorithms for Low-Speed Reacting and Non-Reacting Flow Simulations.- A simple hybrid well-balanced method for a 2D viscous shallow water model.- A kinetic energy-preserving P1 iso P2/P1 finite-element method for computing unsteady incompressible flows.- Study on the segregation algorithms of the incompressible Navier-Stokes equations using P1P1/P2P1 finite element formulation.- A Mach-uniform algorithm: coupled versus segregated approach.- Crank-Nicolson Scheme for Solving Low Mach Number Unsteady Viscous Flows Using an Implicit Preconditioned Dual Time Stepping Technique.- Heated Wake by Deferred Corrected ULTRA.- Convergence Acceleration for Euler Equation based on SPR.- Acceleration of Unsteady Incompressible Flow Calculation Using Extrapolation Methods.- Improved Numerical Simulations of Incompressible Flows Based on Viscous/Inviscid Interaction Procedures.- AMR - Adaptive mesh
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The International Conference on Computational Fluid Dynamics (ICCFD) is the merger of the International Conference on Numerical Methods in Fluid Dynamics, ICNMFD (since 1969) and International Symposium on Computational Fluid Dynamics, ISCFD (since 1985). It is held every two years and brings together physicists, mathematicians and engineers to review and share recent advances in mathematical and computational techniques for modeling fluid dynamics. The proceedings of the 2006 conference (ICCFD4) held in Gent, Belgium, contain a selection of refereed contributions and are meant to serve as a source of reference for all those interested in the state of the art in computational fluid mechanics.
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Taschenbuch. Zustand: Neu. Neuware -The International Conference on Computational Fluid Dynamics (ICCFD) is the merger of the International Conference on Numerical Methods in Fluid Dynamics, ICNMFD (since 1969) and International Symposium on Computational Fluid Dynamics, ISCFD (since 1985). It is held every two years and brings together physicists, mathematicians and engineers to review and share recent advances in mathematical and computational techniques for modeling fluid dynamics. The proceedings of the 2006 conference (ICCFD4) held in Gent, Belgium, contain a selection of refereed contributions and are meant to serve as a source of reference for all those interested in the state of the art in computational fluid mechanics.Springer-Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 916 pp. Englisch. Artikel-Nr. 9783662500903
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - The International Conference on Computational Fluid Dynamics (ICCFD) is the merger of the International Conference on Numerical Methods in Fluid Dynamics, ICNMFD (since 1969) and International Symposium on Computational Fluid Dynamics, ISCFD (since 1985). It is held every two years and brings together physicists, mathematicians and engineers to review and share recent advances in mathematical and computational techniques for modeling fluid dynamics. The proceedings of the 2006 conference (ICCFD4) held in Gent, Belgium, contain a selection of refereed contributions and are meant to serve as a source of reference for all those interested in the state of the art in computational fluid mechanics. Artikel-Nr. 9783662500903
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