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Nicole Marheineke
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- affiliation: University of Trier, Germany
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2020 – today
- 2024
- [j16]Kevin Tolle, Nicole Marheineke:
Nonlinear reduction using the extended group finite element method. Comput. Appl. Math. 43(3): 125 (2024) - [i10]Lukas Kannengiesser, Walter Arne, Alexander Bier, Nicole Marheineke, Dirk W. Schubert, Raimund Wegener:
Simulation-based High-Speed Elongational Rheometer for Carreau-type Materials. CoRR abs/2403.01812 (2024) - [i9]Sarah-Alexa Hauschild, Nicole Marheineke:
On a port-Hamiltonian formulation and structure-preserving numerical approximations for thermodynamic compressible fluid flow. CoRR abs/2404.05358 (2024) - [i8]Andreas Bartel, Malak Diab, Andreas Frommer, Michael Günther, Nicole Marheineke:
Splitting Techniques for DAEs with port-Hamiltonian Applications. CoRR abs/2404.13531 (2024) - 2023
- [i7]Andreas Frommer, Michael Günther, Björn Liljegren-Sailer, Nicole Marheineke:
Operator splitting for port-Hamiltonian systems. CoRR abs/2304.01766 (2023) - 2022
- [j15]Björn Liljegren-Sailer, Nicole Marheineke:
On Snapshot-Based Model Reduction Under Compatibility Conditions for a Nonlinear Flow Problem on Networks. J. Sci. Comput. 92(2): 62 (2022) - [j14]Björn Liljegren-Sailer, Nicole Marheineke:
Input-Tailored System-Theoretic Model Order Reduction for Quadratic-Bilinear Systems. SIAM J. Matrix Anal. Appl. 43(1): 1-39 (2022) - [j13]Björn Liljegren-Sailer, Nicole Marheineke:
On Port-Hamiltonian Approximation of a Nonlinear Flow Problem on Networks. SIAM J. Sci. Comput. 44(1): 834- (2022) - [j12]Dario Antweiler, Marc Harmening, Nicole Marheineke, Andre Schmeißer, Raimund Wegener, Pascal Welke:
Machine learning framework to predict nonwoven material properties from fiber graph representations. Softw. Impacts 14: 100423 (2022) - [i6]Nadine Stahl, Björn Liljegren-Sailer, Nicole Marheineke:
Certified Reduced Basis Method for the Damped Wave Equations on Networks. CoRR abs/2204.05010 (2022) - 2021
- [i5]Kevin Tolle, Nicole Marheineke:
Nonlinear Reduction using the Extended Group Finite Element Method. CoRR abs/2106.02372 (2021) - [i4]Björn Liljegren-Sailer, Nicole Marheineke:
On snapshot-based model reduction under compatibility conditions for a nonlinear flow problem on networks. CoRR abs/2110.04777 (2021) - 2020
- [i3]Kevin Tolle, Nicole Marheineke:
Extended Group Finite Element Method. CoRR abs/2005.06193 (2020) - [i2]Björn Liljegren-Sailer, Nicole Marheineke:
Port-Hamiltonian approximation of a nonlinear flow problem. Part I: Space approximation ansatz. CoRR abs/2009.11216 (2020) - [i1]Marc Harmening, Nicole Marheineke, Raimund Wegener:
Efficient Graph-based Tensile Strength Simulations of Random Fiber Structures. CoRR abs/2010.02805 (2020)
2010 – 2019
- 2019
- [j11]Manuel Wieland, Walter Arne, Robert Feßler, Nicole Marheineke, Raimund Wegener:
An efficient numerical framework for fiber spinning scenarios with evaporation effects in airflows. J. Comput. Phys. 384: 326-348 (2019) - 2018
- [j10]Walter Arne, Nicole Marheineke, Miguel Pérez-Saborid, Javier Rivero-Rodríguez, Raimund Wegener, Manuel Wieland:
Whipping of Electrified Visco-Capillary Jets in Airflows. SIAM J. Appl. Math. 78(1): 343-371 (2018) - [j9]Herbert Egger, Thomas Kugler, Björn Liljegren-Sailer, Nicole Marheineke, Volker Mehrmann:
On Structure-Preserving Model Reduction for Damped Wave Propagation in Transport Networks. SIAM J. Sci. Comput. 40(1) (2018) - 2015
- [j8]Walter Arne, Nicole Marheineke, Andreas Meister, Stefan Schießl, Raimund Wegener:
Finite volume approach for the instationary Cosserat rod model describing the spinning of viscous jets. J. Comput. Phys. 294: 20-37 (2015) - 2012
- [j7]Nicole Marheineke, René Pinnau:
Model hierarchies in space-mapping optimization: Feasibility study for transport processes. J. Comput. Methods Sci. Eng. 12(1-2): 63-74 (2012) - 2011
- [j6]Jan Marburger, Nicole Marheineke, René Pinnau:
Adjoint-based optimal control using meshfree discretizations. J. Comput. Appl. Math. 235(10): 3138-3150 (2011) - [j5]Sabine Repke, Nicole Marheineke, René Pinnau:
Two Adjoint-Based Optimization Approaches for a Free Surface Stokes Flow. SIAM J. Appl. Math. 71(6): 2168-2184 (2011)
2000 – 2009
- 2007
- [j4]T. Götz, Axel Klar, Nicole Marheineke, Raimund Wegener:
A Stochastic Model and Associated Fokker-Planck Equation for the Fiber Lay-Down Process in Nonwoven Production Processes. SIAM J. Appl. Math. 67(6): 1704-1717 (2007) - [j3]Nicole Marheineke, Raimund Wegener:
Fiber Dynamics in Turbulent Flows: Specific Taylor Drag. SIAM J. Appl. Math. 68(1): 1-23 (2007) - [j2]Luis L. Bonilla, T. Götz, Axel Klar, Nicole Marheineke, Raimund Wegener:
Hydrodynamic Limit of a Fokker--Planck Equation Describing Fiber Lay-Down Processes. SIAM J. Appl. Math. 68(3): 648-665 (2007) - 2006
- [j1]Nicole Marheineke, Raimund Wegener:
Fiber Dynamics in Turbulent Flows: General Modeling Framework. SIAM J. Appl. Math. 66(5): 1703-1726 (2006)
Coauthor Index
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