Ouvrages publiés en collaboration (1)

  1. 1. Wendt, J. F., Anderson, J. D. J. J., Dick, E., Vierendeels, J., Degroote, J., Degrez, G., & Grundmann, R. (2009). Computational fluid dynamics: An introduction. doi:10.1007/978-3-540-85056-4
  2.   Parties d'ouvrages collectifs (6)

  3. 1. Degrez, G. (2009). Implicit time-dependent methods for inviscid and viscous compressible flows. In J. Wendt (Ed.), Computational Fluid Dynamics: An introduction (3 ed., pp. 183-234). Berlin: Springer-Verlag.
  4. 2. Degrez, G. (2009). Implicit time-dependent methods for inviscid and viscous compressible flows, with a discussion of the concept of numerical dissipation. In Computational Fluid Dynamics (pp. 183-234). Springer Berlin Heidelberg. doi:10.1007/978-3-540-85056-4_9
  5. 3. Ozgen, S., Degrez, G., Sarma, G. S. R. P., & Carbonaro, M. (1999). Two-fluid-layer flow stability. In W. Shyy & R. Narayanan (Eds.), Fluid Dynamics at Interfaces. Cambridge University Press.
  6. 4. Knight, D., & Degrez, G. (1998). Shock wave boundary layer interactions in high Mach number flows: A critical survey of current CFD prediction capabilities. In Hypersonic Experimental and Computational Capability, Improvement and Validation.(AGARD AR, 319).
  7. 5. Degrez, G. (1996). Implicit time-dependent methods for inviscid and viscous compressible flows. In J. Wendt (Ed.), Computational Fluid Dynamics: An introduction (2 ed., pp. 180-229). Berlin: Springer-Verlag.
  8. 6. Degrez, G. (1992). Implicit time-dependent methods for inviscid and viscous compressible flows. In J. Wendt (Ed.), Computational Fluid Dynamics: An introduction (1 ed., pp. 180-222). Berlin: Springer-Verlag.
  9.   Articles dans des revues avec comité de lecture (67)

  10. 1. Matouk, R., Degrez, G., & Christophe, J. (2015). Aerodynamics and aeroacoustics study of the flow around an automotive fan airfoil. International journal of aeroacoustics, 14, 1049–1070.
  11. 2. Khaji, M., Britun, N., Degrez, G., Parente, A., & Van Der Mullen, J.-J. (2021). Boosting the dissociation of CO2 by employing shock-free supersonic expansion. Plasma processes and polymers.
  12. 3. Khaji, M., Peerenboom, K., Van Der Mullen, J., & Degrez, G. (2020). 2D Numerical modeling for plasma-assisted CO2 pooling in supersonic nozzles: importance of a proper nozzle contour design. Journal of physics. D, Applied physics. doi:10.1088/1361-6463/abd355
  13. 4. Khaji, M., Peerenboom, K., van der Mullen, J. J. A. M., & Degrez, G. (2020). 1D numerical analysis of CO2vibrational non-equilibrium in supersonic expansions. Journal of physics. D, Applied physics, 53(39), 395201. doi:10.1088/1361-6463/ab904c
  14. 5. Garicano-Mena, J., & Degrez, G. (2019). On the well-posedness of the multi-dimensional Roe–Liu–Vinokur linearization for residual distribution schemes. Journal of computational physics, 378, 760-769. doi:10.1016/j.jcp.2018.11.007

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