ref [2004] · 2508.04318 · notice #8645 · dispute
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Generation of inflow data f or spatially-developing boundary layer simulations. Journal of Computational Physics , 140(2):233-258, 1998. doi: 10.1006/jcph.1998.5882. X. Wu. Inflow turbulence generation methods. Annu. Rev. Fluid Mech., 45(1):23-49, 2017. S. Xu and M.P . Martin. Assessment of inflow boundary conditions for compressible turbulent boundary layers. Physics of Fluids, 16(7):2623-2639, 2004. doi: 10.1063/1.1758218. S. Lee, S.K. Lele, and P . Moin. Simulation of spatially evolving turbulence and the applicability of taylor's hypothesi s in compressible flow. Physics of Fluids , 4(7):1521-1530, 1992. A. Smirnov, S. Shi, and I. Celik. Random flow generation techn ique for large eddy simulation and particle-dynamcs modeling. Journal of Fluids Engineering , 123:359-371, 2001.
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Generation of inflow data f or spatially-developing boundary layer simulations. Journal of Computational Physics, 140(2):233-258, 1998. doi: 10.1006/jcph.1998.5882. X. Wu. Inflow turbulence generation methods. Annu. Rev. Fluid Mech., 45(1):23-49, 2017. S. Xu and M.P . Martin. Assessment of inflow boundary conditions for compressible turbulent boundary layers. Physics of Fluids, 16(7):2623-2639, 2004. doi: 10.1063/1.1758218. S. Lee, S.K. Lele, and P . Moin. Simulation of spatially evolving turbulence and the applicability of taylor's hypothesi s in compressible flow. Physics of Fluids, 4(7):1521-1530, 1992. A. Smirnov, S. Shi, and I. Celik. Random flow generation techn ique for large eddy simulation and particle-dynamcs modeling. Journal of Fluids Engineering, 123:359-371, 2001