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Accurate 3D viscous incompressible flow calculations with the FEM

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Aslan, Alim Rüstem
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Wiley

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Summary: A second-order-accurate (in both time and space) formulation is developed and implemented for solution of the three-dimensional incompressible Navier-Stokes equations involving high-Reynolds-number flows past complex configurations. For stabilization, only a fourth-order-accurate artificial dissipation term in the momentum equations is used. The finite element method with an explicit time-marching scheme based on two-fractional-step integration is used for solution of the momentum equations. The element-by-element technique is employed for solution of the auxiliary potential function equation in order to ease the memory requirements for matrix. The cubic cavity problem, the laminar flow past a sphere at various Reynolds numbers and the flow around the fuselage of a helicopter are solved. Comparison of the results with the low-order solutions indicates that the flow details are depicted clearly even with coarse grids.

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International Journal for Numerical Methods in Fluids

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0271-2091

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CLOSED

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potential function equation, Navier-Stokes equations for incompressible viscous fluids, cubic cavity, sphere, high-Reynolds-number flows, fourth-order-accurate artificial dissipation term, fuselage of helicopter, two-fractional-step integration, explicit time-marching scheme, Finite element methods applied to problems in fluid mechanics, element-by-element technique

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