Publications

J. K. Wlodarczyk, R. P. Schärer, K. A. Friedrich, J. O. Schumacher, and J. O. Schumacher. Upscaling of Reactive Mass Transport through Porous Electrodes in Aqueous Flow Batteries. 2024. [PUMA: Aqueous Batteries Electrodes Flow Mass Porous Reactive Transport Upscaling in of through]

Jonas Wagner, Peter Berger, Philipp He, Florian Fetzer, Rudolf Weber, and Thomas Graf. Reduced finite-volume model for the fast numerical calculation of the fluid flow in the melt pool in laser beam welding. IOP conference series: Materials Science and Engineering, (1135)1:012010, 2021. [PUMA: myown welding laser peer finite-volume from:jonaswagner fluid flow]

Christina Lienstromberg, Tania Pernas-Castano, and Juan J. L. Velázquez. Analysis of a two-fluid Taylor-Couette flow with one non-Newtonian fluid. J. Nonlinear Sci., (32)2:Paper No. 24, 55, 2022. [PUMA: Lienstromberg Taylor-Couette flow iadm two-fluid] URL

Christina Lienstromberg, Tania Pernas-Casta\ no, and Juan J. L. Velázquez. Analysis of a two-fluid Taylor-Couette flow with one non-Newtonian fluid. J. Nonlinear Sci., (32)2:Paper No. 24, 55, 2022. [PUMA: Lienstromberg iadm two-fluid from:elkepeter flow Taylor-Couette] URL

Jonas Wagner, Peter Berger, Philipp He, Florian Fetzer, Rudolf Weber, and Thomas Graf. Reduced finite-volume model for the fast numerical calculation of the fluid flow in the melt pool in laser beam welding. IOP conference series: Materials Science and Engineering, (1135)1:012010, 2021. [PUMA: finite-volume flow fluid laser myown peer welding]

Jonas Wagner, Peter Berger, Philipp He, Florian Fetzer, Rudolf Weber, and Thomas Graf. Reduced finite-volume model for the fast numerical calculation of the fluid flow in the melt pool in laser beam welding. IOP conference series: Materials Science and Engineering, (1135)1:012010, 2021. [PUMA: myown welding laser peer finite-volume from:jonaswagner fluid flow]

Samuel Burbulla, and Christian Rohde. A finite-volume moving-mesh method for two-phase flow in fracturing porous media. J. Comput. Phys., 111031, 2022. [PUMA: Discrete Dynamic Finite Fracture Moving-mesh Two-phase algorithm am aperture flow fracture from:brittalenz ians in matrix media methods models porous propagation volume] URL

Tobias Köppl, Gabriele Santin, Bernard Haasdonk, and Rainer Helmig. Numerical modelling of a peripheral arterial stenosis using dimensionally reduced models and kernel methods. International Journal for Numerical Methods in Biomedical Engineering, (34)8:e3095, 2018. [PUMA: anm blood dimensionally flow from:britsteiner ians kernel methods, mixed‐dimension models, peripheral real‐time reduced simulations simulations, stenosis, surrogate] URL

Tobias Köppl, Gabriele Santin, Bernard Haasdonk, and Rainer Helmig. Numerical modelling of a peripheral arterial stenosis using dimensionally reduced models and kernel methods. International Journal for Numerical Methods in Biomedical Engineering, (34)8:e3095, 2018. [PUMA: anm blood dimensionally flow ians kernel methods, mixed‐dimension models, peripheral real‐time reduced simulations simulations, stenosis, surrogate] URL

Daniel Contreras, and Krzysztof Rudion. Computing the feasible operating region of active distribution networks: Comparison and validation of random sampling and optimal power flow based methods. IET Generation, Transmission & Distribution, (15)10:1600-1612, May 2021. [PUMA: Comparison Computing active and based distribution feasible flow methods networks: of operating optimal power random region sampling the validation]

Andreas Weinläder, Stefan Tenbohlen, and R. Wittmaack. Prediction of the Oil Flow and Temperature Distribution in Power Transformers by CFD. 2010. [PUMA: CFD Distribution Flow Oil Power Temperature Transformers]

Andreas Weinläder, W. Wu, Stefan Tenbohlen, and Z. Wang. Prediction of the Oil Flow Distribution in Oil-immersed Transformer Windings by Network Modelling and CFD. IET Electric Power Applications, 2011. [PUMA: CFD Distribution Flow Modelling Network Oil Oil-immersed Transformer Windings]

Georg Kayser, Alexander Probst, Martin Braun, and Stefan Tenbohlen. Probabilistische Lastmodellierung von Haushaltslasten. 2012. [PUMA: Energy Load Parameter Power Probability computing consumption demand density distribution engineering estimation flow function modeling] URL

Christoph Kattmann, Ahmad Abdel-Majeed, and Stefan Tenbohlen. Database-Assisted Load Flow Simulation for Low Voltage Grids Using a Model Reduction Approach. 2014. [PUMA: Approach Flow Grids Load Low Model Reduction Simulation Voltage]

Christoph Kattmann, Krzysztof Rudion, and Stefan Tenbohlen. Clustering of smart meter data for data compression and fast power flow computation. CIRED 2015, 23rd International Conference and Exhibition on Electricity Distribution, Lyon, Frankreich, June 15-18, 2015, 2015. [PUMA: Clustering Compression Computationsend:unibiblio Data Fast Flow Meter Power Smart]

Stefan Tenbohlen, Nicolas Schmidt, C. Breuer, Saeed Khandan, and R. Lebreton. Optical and Numerical Investigation of Oil Flow Velocities Inside a Zigzag Cooled Winding Model. October 2016. [PUMA: Flow Oil Velocities]

D.S. Martínez, A. García, J.P. Solano, and A. Viedma. Heat transfer enhancement of laminar and transitional Newtonian and non-Newtonian flows in tubes with wire coil inserts. International Journal of Heat and Mass Transfer, (76):540 - 548, 2014. [PUMA: Heat Newtonian Non Transitional Wire coil enhancement, flow flow, inserts, myown transfer] URL

S. Hoher, P. Schindler, S. G?ttlich, V. Schleper, and S. Röck. System Dynamic Models and Real-time Simulation of Complex Material Flow Systems. In Hoda A. ElMaraghy (Eds.), Enabling Manufacturing Competitiveness and Economic Sustainability, 316-321, Springer Berlin Heidelberg, 2012. [PUMA: Material Real-time System dynamic flow from:mhartmann ians models simulation; system; vorlaeufig] URL

M. Köppel, I. Kröker, and C. Rohde. Stochastic Modeling for Heterogeneous Two-Phase Flow. In Jürgen Fuhrmann, Mario Ohlberger, and Christian Rohde (Eds.), Finite Volumes for Complex Applications VII-Methods and Theoretical Aspects, (77):353-361, Springer International Publishing, 2014. [PUMA: Flow Galerkin Hybrid finite from:mhartmann ians in media; method porous stochastic volume vorlaeufig] URL

Tobias Köppl, Gabriele Santin, Bernard Haasdonk, and Rainer Helmig. Numerical modelling of a peripheral arterial stenosis using dimensionally reduced models and kernel methods. International Journal for Numerical Methods in Biomedical Engineering, (0)ja:e3095, 2018. [PUMA: blood dimensionally flow from:mhartmann ians kernel methods, mixed-dimension models, peripheral real-time reduced simulations simulations, stenosis, surrogate vorlaeufig] URL