Author of the publication

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Computational uncertainty quantification for some strongly degenerate parabolic convection-diffusion equations, and . journal of computational and applied mathematics, (2019)Stochastic models for nonlinear convection-dominated flows. Universität Stuttgart, München, Dissertation, (2013)Finite volume schemes for hyperbolic balance laws with multiplicative noise, and . Appl. Numer. Math., 62 (4): 441--456 (2012)Stochastic Modeling for Heterogeneous Two-Phase Flow, , and . Finite Volumes for Complex Applications VII-Methods and Theoretical Aspects, volume 77 of Springer Proceedings in Mathematics & Statistics, Springer International Publishing, (2014)Finite volume methods for conservation laws with noise. Finite volumes for complex applications V, page 527-534. Hoboken, NJ, Wiley, (2008)The deep arbitrary polynomial chaos neural network or how Deep Artificial Neural Networks could benefit from data-driven homogeneous chaos theory, , , , , and . Neural networks, 166 (September): 85-104 (2023)Datasets and executables of data-driven uncertainty quantification benchmark in carbon dioxide storage, , , , , , , , , and 1 other author(s). (November 2017)Computational uncertainty quantification for a clarifier-thickener model with several random perturbations: A hybrid stochastic Galerkin approach, , , and . COMPUTERS & CHEMICAL ENGINEERING, (June 2016)A computational approach to identifiability analysis for a model of the propagation and control of COVID-19 in Chile, , , and . Journal of biological dynamics, 17 (1): 2256774 (2023)Optimal Exposure Time in Gamma-Ray Attenuation Experiments for Monitoring Time-Dependent Densities, , , , , , , and . Transport in Porous Media, 143 (2): 463-496 (2022)