Linear Forcing of Compressible Isotropic Turbulence in Rectangular Domains with Adapted Locally Refined Grids
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-030-90727-3_12
Reference18 articles.
1. Bassenne, M., Urzay, J., Park, G.I., Moin, P.: Constant-energetics physical-space forcing methods for improved convergence to homogeneous-isotropic turbulence with application to particle-laden flows. Phys. Fluids 28(3), 035114 (2016)
2. Bengoechea, S., Gray, J., Reiss, J., Moeck, J., Paschereit, O., Sesterhenn, J.: Detonation initiation in pipes with a single obstacle for mixtures of hydrogen and oxygen-enriched air. Combust. Flame 198, 290–304 (2018)
3. Bogey, C., Cacqueray, N., Bailly, C.: A shock-capturing methodology based on adaptative spatial filtering for high-order non-linear computations. J. Comput. Phys. 228, 1447–1465 (2009)
4. Springer Proceedings in Mathematics & Statistics;J Brouwer,2014
5. Campos, A., Morgan, B.: The effect of artificial bulk viscosity in simulations of forced compressible turbulence. J. Comput. Phys. 371, 111–121 (2018)
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