A new numerical simulation method of high reynolds number flow around a cylinder
β Scribed by T. Guo; Y.T. Chew; S.C. Luo; M.D. Su
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 867 KB
- Volume
- 158
- Category
- Article
- ISSN
- 0045-7825
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β¦ Synopsis
A new finite-difference method is presented to solve the unsteady two-dimensional Navier-Stokes equations in the vorticity stream function form and tested for the flow around a cylinder at Reynolds number Re of IO?-104. The simulation uses a body-fitting Cartesian coordinate system in the physical plane which is transformed by conformal mapping to a grid with uniform mesh sizes in the computational domain. A new mixed difference scheme coupling the 3rd-order upwind scheme with the 4th.order central scheme is used for the discretization of the vorticity transport equation, while a 2nd.order central scheme is used for the discretization of the stream function equation.
Some numerical results for flow past a circular cylinder at Re = 1000 to 9500 and an elliptic cylinder with different angle of attack are given. This numerIcal method gives results comparable to those of previously published methods but does so using much less memory and computer time. The ease of setting boundary condition is another advantage of the present method. The influence of the initial condition and the grid system, time step is also discussed.
π SIMILAR VOLUMES
High Reynolds number flows (Re ΒΌ 1 Γ 10 6 , 2 Γ 10 6 and 3.6 Γ 10 6 , based on the free stream velocity and cylinder diameter) covering the supercritical to upper-transition flow regimes around a twodimensional (2D) smooth circular cylinder, have been investigated numerically using 2D Unsteady Reyno