Numerical prediction of cavitation erosion in pumps
Schreiner, F., Haese, M. & Skoda, R. (2023). Three-dimensional flow simulation and cavitation erosion modeling for the assessment of incubation time and erosion rate. Wear, 524-525, 204747. DOI: 10.1016/j.wear.2023.204747. BibTeX
Haese, M., Schreiner, F. & Skoda, R. (2021). Evaluation of compressible and incompressible 3D flow solution methods for the assessment of cavitation erosion in ultrasonic erosion devices, Proceedings of the 11th International Symposium on Cavitation (CAV2021), Daejeon, Korea, May 10-13, 2021.
Liu, Z., Haese, M. & Skoda, R. (2025). Numerical 3D flow simulation of cloud cavitation on a hydrofoil induced by re-entrant jets and bubbly shock waves. 10th IAHR Workgroup Meeting on Cavitation and Dynamic Problems in Hydraulic Machinery and Systems 2025, 01.-02. Oktober, Brno, Czech Republic.
Haese, M. & Skoda, R. (2024). Compressible CFD method for the calculation of viscous effects in cloud cavitation. Fünftes Kolloquium Kavitation und Kavitationserosion, 05.-06. November, Bochum, Deutschland.
Werker, J., Weiterentwicklung eines skalenadaptiven Turbulenzmodells anhand direkter numerischer Simulationen, Masterarbeit, 2022.
E-Mail: Magnus.Haese@rub.de