A brief review of the computation of incompressible turbulent flow in complex geometries is given. A 2D finite volume method for the calculation of turbulent flow in general curvilinear co-ordinates is described. This method is based on a staggered grid arrangement and the contravariant flux components are chosen as primitive variables. Turbulence is modelled either by the standard k-epsilon model or by a k-epsilon model based on RNG theory. Convection is approximated with central differences for the mean flow quantities and a TVD-type MUSCL scheme for the turbulence equations. The sensitivity of the method to the grid properties is investigated. An application of this method to a complex turbulent flow is presented. The results of computations are compared with experimental data and other numerical solutions and are found to be satisfactory.
机构:
Depto. de Eng. Quimica, Centro Tecnológico, Univ. Regl. de Blumenau (FURB), C.P. 1507, CEP 89010-971 Blumenau-SC, BrazilDepto. de Eng. Quimica, Centro Tecnológico, Univ. Regl. de Blumenau (FURB), C.P. 1507, CEP 89010-971 Blumenau-SC, Brazil
Meier, H.F.
Alves, J.J.N.
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机构:
Depto. de Eng. Quimica, Centro de Ciencias e Tecnologia, Universidade Fed. da Paraiba (UFPb), CEP 58100-000 Campina Grande-Pb, BrazilDepto. de Eng. Quimica, Centro Tecnológico, Univ. Regl. de Blumenau (FURB), C.P. 1507, CEP 89010-971 Blumenau-SC, Brazil
Alves, J.J.N.
Mori, M.
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机构:
Depto. de Processos Químicos, Faculdade de Eng. Quimica (FEQ), Univ. Estadual de Campinas (UNICAMP), C.P. 6066, CEP 13081-970 Campinas-SP, BrazilDepto. de Eng. Quimica, Centro Tecnológico, Univ. Regl. de Blumenau (FURB), C.P. 1507, CEP 89010-971 Blumenau-SC, Brazil
Mori, M.
Computers and Chemical Engineering,
1999,
23
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: 247
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262