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Titlebook: Computational Fluid Dynamics 2000; Proceedings of the F Nobuyuki Satofuka Conference proceedings 2001 Springer-Verlag Berlin Heidelberg 200

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Large-Scale Parallel Unstructured Mesh Computations Using a Multigrid Approachis is particularly challenging because, while unstructured grid strategies greatly simplify the grid generation process for complex industrial geometries, they also require substantial additional memory and CPU time compared to block-structured or overset grid methods for a given mesh size.
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An Adaptive Unstructured Explicit/Implicit Numerical Technique for Unsteady Viscous Flows with Shockeady shock wave interactions with bodies. The mathematical model is based on the Navier-Stokes equations. The most important ingredients of the method are specially tailored adaptive unstructured grids and an efficient combination of explicit and implicit time integration modes which are chosen to be best suited for underlying flow physics.
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Nobuyuki SatofukaIncludes supplementary material:
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Stimulation and Inhibition of Neuronss. Then, the relations among the BGK scheme, the central difference, Godunov, kinetic Flux Vector Splitting, and Lattice Boltzmann method will be discussed. A few comments on CFD algorithm development will also be presented.
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Refik Kanjhan,Mark C. Bellinghamccuracy of numerical solutions, and adjoint error correction to improve the order of accuracy of derived output functionals such as far-field boundary integrals. Numerical results for the 1D Helmholtz equation on an irregular grid show fourth order accuracy for the numerical solution, and sixth order accuracy for the boundary value.
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https://doi.org/10.1007/978-3-642-33311-8o adapt structured meshes in conjunction with a node movement method based on weighted averaging. Adaptation using this sensor is tested for flows over wings which are obtained by an in-house developed 3-D Euler code. The adapted meshes are shown to improve the solution accuracy considerably.
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