Numerical analysis of laminar fluid flow characteristics past an elliptic cylinder
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Publication:2967211
DOI10.1108/HFF-10-2012-0225zbMath1356.76143MaRDI QIDQ2967211
Immanuvel Paul, S. Vengadesan, K. Arul Prakash
Publication date: 28 February 2017
Published in: International Journal of Numerical Methods for Heat & Fluid Flow (Search for Journal in Brave)
Related Items (3)
Study of Momentum and Thermal Wakes Due to Elliptic Cylinders of Various Axes Ratios Using the Immersed Boundary Method ⋮ Analysis and characterisation of momentum and thermal wakes of elliptic cylinders ⋮ Passive pitching of splitters in the trailing edge of elliptic cylinders
Cites Work
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- Vortex shedding characteristics of a circular cylinder with an oscillating wake splitter plate
- Predicted low frequency structures in the wake of elliptical cylinders
- An immersed boundary technique for simulating complex flows with rigid boundary
- Flow around the impulsively started elliptic cylinder at various angles of attack
- Momentum and heat transfer from cylinders in laminar crossflow at \(10^{-4}\leqq Re\leqq 200\)
- Direct numerical simulation of flow past elliptic cylinders
- Experiments on the flow past a circular cylinder at low Reynolds numbers
- Low-Reynolds-number flow past an elliptic cylinder
- IMMERSED BOUNDARY METHODS
- Assessment of regularized delta functions and feedback forcing schemes for an immersed boundary method
- Numerical study and physical analysis of the pressure and velocity fields in the near wake of a circular cylinder
- A finite-element study of the onset of vortex shedding in flow past variously shaped bodies
- Experiments on the flow past a circular cylinder at very high Reynolds number
- Laminar flow past an abruptly accelerated elliptic cylinder at 45° incidence
- Low-frequency unsteadiness in the wake of a normal flat plate
- Numerical simulation of the unsteady flow over an elliptic cylinder at different orientations
- Feedback control of von Kármán vortex shedding behind a circular cylinder at low Reynolds numbers
- Numerical solutions for steady flow past a circular cylinder at Reynolds numbers up to 100
- A new method of solving Oseen’s equations and its application to the flow past an inclined elliptic cylinder
- Accurate projection methods for the incompressible Navier-Stokes equations
- An immersed-boundary finite volume method for simulations of flow in complex geometries
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