Modeling and application of a stochastic drag for fibers in turbulent flows N Marheineke, R Wegener International Journal of Multiphase Flow 37 (2), 136-148, 2011 | 84 | 2011 |
Fiber dynamics in turbulent flows: General modeling framework N Marheineke, R Wegener SIAM Journal on Applied Mathematics 66 (5), 1703-1726, 2006 | 82 | 2006 |
On structure-preserving model reduction for damped wave propagation in transport networks H Egger, T Kugler, B Liljegren-Sailer, N Marheineke, V Mehrmann SIAM Journal on Scientific Computing 40 (1), A331-A365, 2018 | 72 | 2018 |
A stochastic model and associated Fokker–Planck equation for the fiber lay-down process in nonwoven production processes T Götz, A Klar, N Marheineke, R Wegener SIAM Journal on Applied Mathematics 67 (6), 1704-1717, 2007 | 71 | 2007 |
Systematic derivation of an asymptotic model for the dynamics of curved viscous fibers S Panda, N Marheineke, R Wegener Mathematical Methods in the Applied Sciences 31 (10), 1153-1173, 2008 | 64 | 2008 |
Asymptotic model for the dynamics of curved viscous fibres with surface tension N Marheineke, R Wegener Journal of Fluid Mechanics 622, 345-369, 2009 | 63* | 2009 |
Hierarchy of mathematical models for production processes of technical textiles A Klar, N Marheineke, R Wegener ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2009 | 61 | 2009 |
Numerical analysis of Cosserat rod and string models for viscous jets in rotational spinning processes W Arne, N Marheineke, A Meister, R Wegener Mathematical Models and Methods in Applied Sciences 20 (10), 1941-1965, 2010 | 50 | 2010 |
Port-Hamiltonian modeling of district heating networks SA Hauschild, N Marheineke, V Mehrmann, J Mohring, AM Badlyan, ... Progress in differential-algebraic equations II, 333-355, 2020 | 45 | 2020 |
Fluid-fiber-interactions in rotational spinning process of glass wool production W Arne, N Marheineke, J Schnebele, R Wegener Journal of Mathematics in Industry 1, 1-26, 2011 | 43 | 2011 |
Hydrodynamic limit of a Fokker–Planck equation describing fiber lay-down processes LL Bonilla, T Götz, A Klar, N Marheineke, R Wegener SIAM Journal on Applied Mathematics 68 (3), 648-665, 2008 | 42 | 2008 |
Fiber dynamics in turbulent flows: Specific Taylor drag N Marheineke, R Wegener SIAM Journal on Applied Mathematics 68 (1), 1-23, 2007 | 40 | 2007 |
Asymptotic transition from Cosserat rod to string models for curved viscous inertial jets W Arne, N Marheineke, R Wegener Mathematical Models and Methods in Applied Sciences 21 (10), 1987-2018, 2011 | 34 | 2011 |
Melt-blowing of viscoelastic jets in turbulent airflows: Stochastic modeling and simulation M Wieland, W Arne, N Marheineke, R Wegener Applied Mathematical Modelling 76, 558-577, 2019 | 24 | 2019 |
Model reduction techniques for linear constant coefficient port-Hamiltonian differential-algebraic systems SA Hauschild, N Marheineke, V Mehrmann Control and Cybernetics 48 (1), 2019 | 24 | 2019 |
Finite volume approach for the instationary Cosserat rod model describing the spinning of viscous jets W Arne, N Marheineke, A Meister, S Schiessl, R Wegener Journal of Computational Physics 294, 20-37, 2015 | 24 | 2015 |
Aerodynamic web forming: process simulation and material properties S Gramsch, A Klar, G Leugering, N Marheineke, C Nessler, C Strohmeyer, ... Journal of Mathematics in Industry 6, 1-23, 2016 | 22 | 2016 |
Random field sampling for a simplified model of melt-blowing considering turbulent velocity fluctuations F Hübsch, N Marheineke, K Ritter, R Wegener Journal of Statistical Physics 150, 1115-1137, 2013 | 22 | 2013 |
Two adjoint-based optimization approaches for a free surface Stokes flow S Repke, N Marheineke, R Pinnau SIAM Journal on Applied Mathematics 71 (6), 2168-2184, 2011 | 17* | 2011 |
Virtual production of filaments and fleeces R Wegener, N Marheineke, D Hietel Currents in industrial mathematics: from concepts to research to education …, 2015 | 16* | 2015 |