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Modelowanie zagadnień zewnętrznych metodą cząstek wirowych

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Warianty tytułu
Języki publikacji
PL
Abstrakty
EN
Vortex-in-cell method was used for the modeling of the flow over the solid body in infinite domain. This kind of problem belongs to the external problems. One of the main difficulty in external problems related to the necessities of putting the boundary condition far from the body. It stems from the fact that we use in our calculation the numerical grid and the computational domain must be finite. It was presented how one can obtain the exact value of boundary condition far from the solid body. The vortex particle method with the algorithm correction of the far field boundary value was tested for flow over the circular and elliptical, thin cylinder. It was obtained very good agreement with the experiment and with the calculations that were done by the other researchers.
Rocznik
Strony
1--8
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
  • Politechnika Wrocławska, Zakład Numerycznego Modelowania Przepływów, Wybrzeże Wyspiańskiego 27, 50-370
  • Politechnika Wrocławska, Zakład Numerycznego Modelowania Przepływów, Wybrzeże Wyspiańskiego 27, 50-370
Bibliografia
  • [1] ANDERSON CIL, R., REIDER M., B., A High Order Explicit Method for the Computation of Flow about a Circular Cylinder, J. Comp. Phys. 207-224 (1996)
  • [2] BECERRA SAGREDO, Z-Splines: Moment conserving Cardinal Splines Interpolation of Compact Support for Arbitrarily Spaced Data Research Report No. 2003-10 Zurich Switzerland
  • [3] COTTET G-H., KOUMOUTSAKOS P., Vortex Methods Theory and Practice, Cambridge University Press, Cambridge, (2000)
  • [4] FARLOW J., S., Partial Differential Equations for Scientists and Engineers, Dover Publications, New York (1993)
  • [5] GRAHAM J., M., R., Computation of viscous separated flows using a particle method Numerical Methods in Fluid Dynamics III, Oxford (1988)
  • [6] KOUMOUTSAKOS P., LEONARD A., High-resolution simulations of flow around an impulsively started cylinder using vortex method,J. Fluid Mech. 296 (1995)
  • [7] KOUMOUTSAKOS P., SHIELDS D., Simulations of the viscous flows normal to an impulsively started and uniformly accelerated flat plate,J. Fluid Mech. 328 177 (1996)
  • [8] KUDELA H., Application of the Vortex-In-Cell method for the simulation of two-dimensional viscous flow, Task Quarterly 3 No 3 (1999)
  • [9] VAN DAKE M., An Album of Fluid Motion, Stanford, California (1982)
  • [10] WANG Z., J. Efficient Implementation of the Exact Numerical Far field Boundary Condition for Poisson Equation on an Infinite Domain). Comp. Phys. 153, 666 (1999)
  • [11] WANG Z., J., LIU J., G., CHILDRESS S., Connection between corner vortices and shear layer instability in flow past an elapse, Physics of Fluids 11, No 9 (1999)
  • [12] WE IN AN E, JIAN-GUO LIU, Vorticity Boundary conditions and Related Issues for Finite Difference schemes).Comp. Phys. 124 368-382 (1996)
  • [13] WU J., Z., MA H, Y., ZHOU M., D. Vorticity and Vortex Dynamics, Springer 2005
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e85af96a-954c-42c1-b78a-03ce82f9ca0e
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