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 |
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 |
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 |
Regularized string model for nanofibre formation in centrifugal spinning methods S Noroozi, H Alamdari, W Arne, RG Larson, SM Taghavi Journal of Fluid Mechanics 822, 202-234, 2017 | 31 | 2017 |
Melt-Blowing of Viscoelastic Jets in Turbulent Airflows: Stochastic Modeling and Simulation M Wieland, W Arne, N Marheineke, R Wegener Applied Mathematical Modelling, 2019 | 24 | 2019 |
Melt-Blowing of Viscoelastic Jets in Turbulent Airflows: Stochastic Modeling and Simulation M Wieland, W Arne, N Marheineke, R Wegener Applied Mathematical Modelling, 2019 | 24 | 2019 |
Melt-Blowing of Viscoelastic Jets in Turbulent Airflows: Stochastic Modeling and Simulation M Wieland, W Arne, N Marheineke, R Wegener Applied Mathematical Modelling, 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 |
A comprehensive mathematical model for nanofibre formation in centrifugal spinning methods S Noroozi, W Arne, RG Larson, SM Taghavi Journal of Fluid Mechanics 892, A26, 2020 | 23 | 2020 |
An efficient numerical framework for fiber spinning scenarios with evaporation effects in airflows M Wieland, W Arne, R Feßler, N Marheineke, R Wegener Journal of Computational Physics 384, 326-348, 2019 | 12 | 2019 |
Whipping of electrified visco-capillary jets in airflows W Arne, N Marheineke, M Perez-Saborid, J Rivero-Rodriguez, ... SIAM Journal on Applied Mathematics 78 (1), 343-371, 2018 | 10 | 2018 |
Centrifugal spinning of polymeric solutions: Experiments and modelling S Noroozi, H Hassanzadeh, W Arne, RG Larson, SM Taghavi Journal of Non-Newtonian Fluid Mechanics 313, 104971, 2023 | 7 | 2023 |
Modeling and simulation of curved fibers in dry spinning scenarios M Wieland, W Arne, N Marheineke, R Wegener Results in Applied Mathematics 3, 100013, 2019 | 6 | 2019 |
On flow-enhanced crystallization in fiber spinning: asymptotically justified boundary conditions for numerics of a stiff viscoelastic two-phase model M Ettmüller, W Arne, N Marheineke, R Wegener Journal of Non-Newtonian Fluid Mechanics 296, 104636, 2021 | 5 | 2021 |
Model hierarchy of upper‐convected Maxwell models with regard to simulations of melt‐blowing processes M Wieland, W Arne, N Marheineke, R Wegener PAMM 19 (1), e201900018, 2019 | 5 | 2019 |
Centrifugal spinning of viscoelastic nanofibres S Noroozi, W Arne, RG Larson, SM Taghavi Journal of Fluid Mechanics 934, A9, 2022 | 4 | 2022 |
Industrial dry spinning processes: algorithmic for a two-phase fiber model in airflows M Wieland, W Arne, N Marheineke, R Wegener Journal of Mathematics in Industry 10, 1-22, 2020 | 4 | 2020 |
Product integration method for simulation of radial effects in dry spinning processes M Wieland, W Arne, R Feßler, N Marheineke, R Wegener PAMM 18 (1), e201800055, 2018 | 4 | 2018 |
Viskose Jets in rotatorischen Spinnprozessen W Arne Verlag Dr. Hut, 2013 | 4 | 2013 |
Nanoval Technology—An Intermediate Process between Meltblown and Spunbond T Höhnemann, J Schnebele, W Arne, I Windschiegl Materials 16 (7), 2932, 2023 | 3 | 2023 |