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Direct Numerical Simulation of Transitional and Turbulent Flow over a Heated FlatPlate Using Finite-Difference Schemes

机译:用有限差分格式直接模拟加热平板上的过渡和湍流流动

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The work in this report was conducted at NASA Ames Research Center during theperiod from August 1993 to January 1995 deals with the direct numerical simulation of transitional and turbulent flow at low Mach numbers using high-order-accurate finite-difference techniques. A computation of transition to turbulence of the spatially-evolving boundary layer on a heated flat plate in the presence of relatively high freestream turbulence was performed. The geometry and flow conditions were chosen to match earlier experiments. The development of the momentum and thermal boundary layers was documented. Velocity and temperature profiles, as well as distributions of skin friction, surface heat transfer rate, Reynolds shear stress, and turbulent heat flux were shown to compare well with experiment. The numerical method used here can be applied to complex geometries in a straightforward manner.

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