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Download PDF by Yuri Bazilevs, Kenji Takizawa: Advances in Computational Fluid-Structure Interaction and

By Yuri Bazilevs, Kenji Takizawa

ISBN-10: 3319408259

ISBN-13: 9783319408255

ISBN-10: 3319408275

ISBN-13: 9783319408279

This contributed quantity celebrates the paintings of Tayfun E. Tezduyar at the celebration of his sixtieth birthday. The articles it comprises have been born out of the Advances in Computational Fluid-Structure interplay and circulate Simulation (AFSI 2014) convention, additionally devoted to Prof. Tezduyar and held at Waseda collage in Tokyo, Japan on March 19-21, 2014. The contributing authors characterize a gaggle of overseas specialists within the box who speak about fresh tendencies and new instructions in computational fluid dynamics (CFD) and fluid-structure interplay (FSI). prepared into seven unique components prepared by means of thematic issues, the papers incorporated disguise simple equipment and purposes of CFD, flows with relocating obstacles and interfaces, phase-field modeling, computing device technology and high-performance computing (HPC) facets of circulation simulation, mathematical tools, biomedical functions, and FSI. Researchers, practitioners, and complicated graduate scholars engaged on CFD, FSI, and comparable subject matters will locate this assortment to be a definitive and useful resource.

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Additional info for Advances in Computational Fluid-Structure Interaction and Flow Simulation: New Methods and Challenging Computations

Example text

We have also provided an overview of the SUPG/PSPG method and the DCDD. The DCDD was originally introduced to complement the SUPG/PSPG method in computation of incompressible flows with sharp solution gradients. It was also shown earlier to perform well in turbulent-flow test computations when compared to the Smagorinsky LES model. Those test computations were for 3D plane channel flow at a friction Reynolds number of Re D 180. The computational Flow Analysis of a Wave-Energy Air Turbine with the SUPG/PSPG Method and DCDD 51 analysis we presented here for a Wells turbine near-stall conditions, with an outcome that is quite consistent with the experimental data, showed that the DCDD, in combination with the SUPG/PSPG method, performs well also in turbomachinery flows.

Numer. Methods 61 964–989 (2004) 11. : Fluid-structure interaction using the particle finite element method. Comput. Methods Appl. Mech. Eng. 195, 2100–2113 (2006) 12. : Unified Lagrangian formulation for elastic solids and incompressible fluids: application to fluid-structure interaction problems via the {PFEM}. Comput. Methods Appl. Mech. Eng. 197(19–20), 1762–1776 (2008). Computational Methods in Fluid-Structure Interaction 13. : Multi-fluid flows with the particle finite element method. Comput.

Numer. Methods Eng. 50, 435–466 (2001) 23. : Orbital HP-clouds for solving Schrödinger equation in quantum mechanics. Comput. Methods Appl. Mech. Eng. 196, 3693–3705 (2007) Flow Analysis of a Wave-Energy Air Turbine with the SUPG/PSPG Method and DCDD Lucio Cardillo, Alessandro Corsini, Giovanni Delibra, Franco Rispoli, and Tayfun E. Tezduyar Abstract We present flow analysis of a wave-energy air turbine, specifically a Wells turbine. The analysis is based on the Streamline-Upwind/PetrovGalerkin (SUPG) and Pressure-Stabilizing/Petrov-Galerkin (PSPG) methods and discontinuity-capturing directional dissipation (DCDD).

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Advances in Computational Fluid-Structure Interaction and Flow Simulation: New Methods and Challenging Computations by Yuri Bazilevs, Kenji Takizawa


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