Carlo Di Cintio
Numerical investigations on boundary conditions with turbulence injection and their impact on a high-speed low pressure turbine cascade.
Rel. Andrea Ferrero. Politecnico di Torino, Master of science program in Aerospace Engineering, 2025
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Abstract
This master’s thesis investigates the impact of the inlet boundary conditions on the spatial evolution of the turbulence injected using a library-based method. The free-stream turbulence inflow data has been generated with a precursor approach through the Direct Numerical Simulation (DNS) of a Decaying Homogeneous Isotropic Turbulence (DHIT). Numerical studies have been carried out using the solver ArgoDG, developed at Cenaero, which is based on a high-order discontinuous Galerkin method. Firstly, a parametric study was conducted in a free domain to assess the influence of various simulation parameters (i.e. Reynolds number, Mach number, injection angle, type of boundary conditions and mesh) on the properties of a freely decaying turbulence.
The results show that imposing total conditions at the inlet leads the injected turbulence to become anisotropic
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