![]() ![]() | Coheur, J., Magin, T., Chatelain, P., & Arnst, M. (2023). Bayesian identification of pyrolysis model parameters for thermal protection materials using an adaptive gradient-informed sampling algorithm with application to a Mars atmospheric entry. International Journal for Uncertainty Quantification, 13 (2), 53-80. doi:10.1615/int.j.uncertaintyquantification.2022042928 |
![]() ![]() | Coheur, J., Torres-Herrador, F., Chatelain, P., Mansour, N., Magin, T., & Arnst, M. (2021). Analytical solution for multi-component pyrolysis simulations of thermal protection materials. Journal of Materials Science. doi:10.1007/s10853-020-05727-8 ![]() |
![]() ![]() | Coheur, J. (2021). Uncertainty quantification of aerothermal flow-material simulations of low-density ablative thermal protection systems [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/265844 |
![]() ![]() | Torres-Herrador, F.* , Coheur, J.* , Panerai, F., Magin, T., Arnst, M., Mansour, N., & Blondeau, J. (2020). Competitive kinetic model for the pyrolysis of the Phenolic Impregnated Carbon Ablator. Aerospace Science and Technology. doi:10.1016/j.ast.2020.105784 ![]() * These authors have contributed equally to this work. |
Coheur, J., Arnst, M., Magin, T., & Chatelain, P. (24 June 2019). Bayesian parameter inference for PICA devolatilization pyrolysis at high heating rates [Paper presentation]. 3rd International Conference on Uncertainty Quantification in Computational Sciences and Engineering, Hersonissos, Crete, Greece. |
![]() ![]() | Coheur, J., Magin, T., Arnst, M., & Chatelain, P. (2019). Bayesian parameter inference for PICA devolatilization pyrolysis at high heating rates. In Proceedings of the 10th VKI PhD Symposium. |
![]() ![]() | Coheur, J., Magin, T., Chatelain, P., & Arnst, M. (April 2018). Bayesian Inference on Uncertain Kinetic Parameters for the Pyrolysis of Composite Ablators [Paper presentation]. SIAM Conference on Uncertainty Quantification (UQ18), Los Angeles, United States. |
![]() ![]() | Coheur, J., Thierry, M., Arnst, M., & Chatelain, P. (2018). A First Step Towards the Bayesian Inference of Uncertain Kinetic Parameters of Pyrolysis Decomposition Laws. In Proceedings of the 9th VKI PhD Symposium. |
![]() ![]() | Schrooyen, P., Coheur, J., Bellas-Chatzigeorgis, G., Turchi, A., Hillewaert, K., Barbante, P., Chatelain, P., & Magin, T. (August 2017). Unified flow-material simulations of light-weight carbon ablators in the VKI Plasmatron: a step forward [Paper presentation]. 9th Ablation Workshop, Bozeman, Montana, United States. |
![]() ![]() | Schrooyen, P., Coheur, J., Turchi, A., & Magin, T. (2017). Numerical simulations of a non-charring ablator in high enthalpy flows by means of a unified flow-material solver. In 47th AIAA Thermophysics Conference : AIAA Aviation Forum, 5-9 June, Denver, CO. |
![]() ![]() | Coheur, J., Schrooyen, P., Turchi, A., & Magin, T. (2017). Development of a unified model for flow-material interaction applied to porous charring ablators. In 47th AIAA Thermophysics Conference : AIAA Aviation Forum, 5-9 June, Denver, CO. doi:10.2514/6.2017-3684 |
![]() ![]() | Coheur, J., Arnst, M., Chatelain, P., & Magin, T. (01 March 2017). Uncertainty Quantification of Aerothermal Flow Simulation Through Low-Density Ablative Thermal Protection Materials [Poster presentation]. 8th VKI PhD Symposium, Rhode-Saint-Genèse, Belgium. |
![]() ![]() | Coheur, J. (2016). Development of a unified model for flow-material interaction applied to porous ablators [Master’s dissertation, von Karman Institute for Fluid Dynamics]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/263536 |
![]() ![]() | Coheur, J. (2015). Sensitivity Analysis and Uncertainty Quantification of Plasma Jet Instabilities in the VKI Plasmatron [Master’s dissertation, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/220329 |