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F. Wesenauer, Jordan, C. , Birkelbach, F. , Pichler, M. , Harasek, M. , and Winter, F. , Pore-forming additives in brick production and their behaviour in the burning process - first results of an ongoing investigation, in 15th Minisymposium Verfahrenstechnik, Leoben, Austria, 2019.
B. D. Weiß and Harasek, M. , Solubility Data of Potential Salts in the MgO-CaO-SO2-H2O-O2 System for Process Modeling, Processes, vol. 9, no. 1, p. 50, 2021.
E. - M. Wartha, A Study on New Developments and Chemical Time Scale Definitions for the Eddy Dissipation Concept, Institut für Verfahrenstechnik, Umwelttechnik und Technische Biowissenschaften, 2017.
E. M. Wartha, Ormaza, M. D. Cabrerea, Bösenhofer, M. , and Harasek, M. , Artificial Neural Networks to Substitute the ODE Solver in Reactive Flow Simulations. pp. 266-271, 2021.
E. - M. Wartha, Bösenhofer, M. , and Harasek, M. , Characteristic Chemical Time Scales for Reactive Flow Modeling, Combustion Science and Technology, pp. 1-26, 2020.
E. - M. Wartha, Birkelbach, F. , Bösenhofer, M. , and Harasek, M. , Enhanced kinetic model identification for gas–solid reactions through Computational Fluid Dynamics, Chemical Engineering Journal, vol. 430, p. 132850, 2022.
E. - M. Wartha, Bösenhofer, M. , and Harasek, M. , Importance of considering interstitial fluid effects in the kinetic theory of granular flow for raceway formation prediction, Chemical Engineering Science, vol. 247, p. 117026, 2022.
E. - M. Wartha, Bösenhofer, M. , Jordan, C. , and Harasek, M. , Mesh Partitioning of Reactive Flow Simulations – Speed-up and Other Side Effects, in 9th European Combustion Meeting, Lisbon, Portugal, 2019.
E. - M. Wartha, Bösenhofer, M. , and Harasek, M. , Combining an implicit solution with an explicit corrector step for the solution of the continuity equations in a two-fluid solver, in 14th International Conference on CFD in 6 Oil & Gas, Metallurgical and Process Industries SINTEF, Trondheim, Norway, October 12–14, 2020, Trondheim, Norway, 2020.
E. - M. Wartha, Bösenhofer, M. , and Harasek, M. , Computational Improvements for the Eddy Dissipation Concept by Operator Splitting and Tabulation, in Proceedings of the 28th European Symposium on Computer Aided Process Engineering, vol. 43, 2018, pp. 1687–1692.