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Titlebook: Computational Fluid Dynamics 2006; Proceedings of the F Herman Deconinck,E. Dick Conference proceedings 20091st edition Springer-Verlag Ber

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https://doi.org/10.1007/978-3-540-92779-2algorithm; algorithms; computational fluid dynamics; design; finite element method; fluid dynamics; fluid
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978-3-662-50090-3Springer-Verlag Berlin Heidelberg 2009
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https://doi.org/10.1007/978-1-4471-0679-1A residual-based compact (RBC) scheme has been developed in [1]-[3] for computing compressible flows on structured grids; . and .-order versions of the scheme were successfully applied to inviscid/viscous steady/unsteady flows, with good shock capturing properties. Building on these results, several extensions are currently explored.
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Stochastic Algorithms for Visual TrackingTaking advantage of the notion of vorticity preserving schemes introduced by Morton and Roe for acoustics, and on the residual-based schemes family proposed by Lerat and Corre, an implicit second order accurate residual-based vorticity preserving scheme is presented and applied to blade vortex interaction.
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Statistical Learning of Probabilistic BDDsHigh order finite difference methods have been constructed to be strictly stable for linear hyperbolic and parabolic problems. The methods employ high order central approximations in the interior and special boundary stencils to satisfy the summation by parts (SBP) property leading to discrete energy estimates [1][2][3][4][5].
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Recent Advances of Multi-phase Flow Computation with the Adaptive Soroban-grid Cubic Interpolated PrRecent developments of simulation technology have enabled the combined analysis of solid, liquid and gas. However, it is still challenging to establish simultaneous treatment of materials undergoing phase state transition. This is because the conventional combined analysis relies on the separate treatment of each phase.
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High-order residual distribution : discontinuity capturing crosswind dissipation and diffusionWe review a class of compact methods to approximate steady solutions to
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