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Titlebook: 3D-Computation of Incompressible Internal Flows; Proceedings of the G Gabriel Sottas,Inge L. Ryhming Conference proceedings 1993 Springer F

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Image Restoration, Spatial StatisticsThe flow in the runner and the draft tube of the GAMM turbine was analyzed using two different types of Euler codes. The theoretical basis of the codes is outlined and the computational details are given, as well as some additional results.
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Sampling from Finite PopulationsThe three-dimensional computation of incompressible internal flows was carried out for the runner and the distributor of the GAMM Francis turbine. The runner is calculated as potential flow using the finite element method and the distributor as viscous flow using the finite volume method.
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https://doi.org/10.1007/978-94-011-2102-6olume discretization scheme with an explicit time integration and absorbing inflow/outflow boundary conditions is used. By comparing the numerical solution with measurements a good agreement was obtained.
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Scattering and Inverse Scattering,ns. A finite volume technique is used for the discretization of the governing equations, which are modified via the artificial compressibility procedure, and steady solutions are obtained by explicit (pseudo-)time marching. For both the configurations examined good agreement with experimental data i
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Scattering and Inverse Scattering,er equations. The Euler solver uses the artificial compressibility technique in order to find a steady solution. The governing equations are numerically solved using a finite volume discretisation in space and explicit Runge-Kutta integration in time. Artificial damping must be added to the numerica
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