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- W3118560944 abstract "A novel simulation approach is presented for modeling particle-laden jets using large eddy simulations in an Eulerian-Lagrangian framework based on the spectral element method. Turbulent round jets are simulated under the same conditions as experiments in Mostafa et al. (1989), for single-phase and particle-laden cases under different mass loading ratios. Realistic inflow conditions are imposed, where the interaction between gas and solid phase, prior to exiting the inlet pipe, is accounted for. Gas- and solid-phase mean flow statistics are compared against experiments. A parametric study of particle inflow conditions is performed to minimize discrepancies between numerical and experimental data. The effect of particle collisions, particle sub-cycling, hydrodynamic forces and grid resolution on the mean flow is analyzed. Results show how particle injection velocity and location inside the pipe can be varied to match the experimental results with simulations, with particle collisions playing a secondary role in improving the accuracy of simulations and other parameters having negligible effects on the flow." @default.
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- W3118560944 date "2021-01-04" @default.
- W3118560944 modified "2023-10-16" @default.
- W3118560944 title "Large Eddy Simulation of Turbulent Particle-laden Jets using the Spectral Element Method" @default.
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- W3118560944 doi "https://doi.org/10.2514/6.2021-0635" @default.
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