1990
DOI: 10.1051/m2an/1990240101331
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A second-order upwinding finite difference scheme for the steady Navier-Stokes equations in primitive variables in a driven cavity with a multigrid solver

Abstract: A second-order upwinding finite difference scheme for the steady Navier-Stokes equations in primitive variables in a driven cavity with a multigrid solver

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Cited by 6 publications
(8 citation statements)
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“…Similar accuracy is achieved for the secondary zones. We find similar agreement with the maximum streamfunction value and location given by the average of values reported by Zhang (1990), Ghia et (11. (1982), Schreiber and Keller (19831, and Vanka (1985) for the unit aspect ratio problem.…”
Section: Accurricy Of the Resultssupporting
confidence: 92%
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“…Similar accuracy is achieved for the secondary zones. We find similar agreement with the maximum streamfunction value and location given by the average of values reported by Zhang (1990), Ghia et (11. (1982), Schreiber and Keller (19831, and Vanka (1985) for the unit aspect ratio problem.…”
Section: Accurricy Of the Resultssupporting
confidence: 92%
“…For the long cavity (A = 2) the secondary zone becomes very large at Re = I000 and by Re = 5000 it is very similar to that shown for the shear-driven cavity at Re = 5610 in Figure 3c. These doublecounter rotating recirculation zones have been reported in the literature (Gatski er al., 1982;Zhang, 1990). Quantitatively, the location and maximum streamfunction value for the shallow cavity (A = 2) agree with Zhang (1990) to within 4.4% at Re = 5000.…”
Section: Accurricy Of the Resultssupporting
confidence: 52%
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