Research Group of Prof. Dr. M. Griebel
Institute for Numerical Simulation
maximize

Publications of Dr. Margrit Klitz:

[1] M. Griebel and M. Klitz. CLSVOF as a fast and mass-conserving extension of the level-set method for the simulation of two-phase flow problems. Numer. Heat Transfer, Part B, 71(1):1-36, 2017. Also available as INS Preprint No. 1505.
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[2] M. Klitz. Numerical Simulation of Droplets with Dynamic Contact Angles. Dissertation, Institut für Numerische Simulation, Universität Bonn, Dec. 2014.
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[3] J. Adelsberger, P. Esser, M. Griebel, S. Groß, M. Klitz, and A. Rüttgers. 3D incompressible two-phase flow benchmark computations for rising droplets. 2014. Proceedings of the 11th World Congress on Computational Mechanics (WCCM XI), Barcelona, Spain, also available as INS Preprint No. 1401 and as IGPM Preprint No. 393.
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[4] M. Griebel and M. Klitz. Simulation of droplet impact with dynamic contact angle boundary conditions. In Singular Phenomena and Scaling in Mathematical Models, pages 297-325. Springer International Publishing Switzerland, 2013. INS Preprint No. 1302.
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[5] M. Griebel and M. Klitz. Homogenisation and numerical simulation of flow in geometries with textile microstructures. SIAM MMS, 8(4), 2010. Also available as SFB611 preprint no 404 / 2008.
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[6] Mathematisches Forschungsinstitut Oberwolfach. Homogenisation and Numerical Simulation of Flow Problems in Geometries with Textile Microstructures, 2009.
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[7] B. Verleye, R. Croce, M. Griebel, M. Klitz, S. Lomov, G. Morren, H. Sol, I. Verpoest, and D. Roose. Permeability of textile reinforcements: simulation, influence of shear, validation. In Composites science and technology, volume 68, pages 2804-2810. Elsevier Applied Science Publishers, Oct. 2008.
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[8] B. Verleye, R. Croce, M. Griebel, M. Klitz, S. Lomov, G. Morren, H. Sol, I. Verpoest, and D. Roose. Permeability of textile reinforcements:simulation; influence of shear, nesting and boundary conditions; validation. In Proceedings of the 9th International Conference on Flow Processes in Composite Materials, volume 9, Québec, 2008. International Conference on Flow Processes in Composite Materials edition.
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[9] B. Verleye, M. Klitz, R. Croce, D. Roose, S. Lomov, and I. Verpoest. Computation of the permeability of textiles with experimental validation for monofilament and non crimp fabrics. In Computational Textile, volume 55 of Studies in Computational Intelligence, chapter 6, pages 93-110. Springer Berlin / Heidelberg, May 2007.
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[10] B. Verleye, R. Croce, M. Griebel, M. Klitz, S. Lomov, I. Verpoest, and D. Roose. Finite difference computation of the permeability of textile reinforcements with a fast stokes solver and new validation examples. In E. Cueto and F. Chinesta, editors, AIP Conference Proceedings, volume 907, pages 945-950, 2007.
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[11] M. Klitz. Homogenised Fluid Flow Equations in Porous Media with Application to Permeability Computations in Textiles. Diplomarbeit, Institut für Numerische Simulation, Universität Bonn, July 2006.
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[12] B. Verleye, M. Klitz, R. Croce, D. Roose, S. Lomov, and I. Verpoest. Computation of the permeability of textiles. Preprint 269, Sonderforschungsbereich 611, Rheinische Friedrich-Wilhelms-Universität Bonn, Apr. 2006. Also available as Report TW 455, K.U. Leuven, Department of Computer Science.
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[13] B. Verleye, M. Klitz, R. Croce, M. Griebel, S. Lomov, D. Roose, and I. Verpoest. Predicting the permeability of textile reinforcements via a hybrid Navier-Stokes/Brinkman solver. In Binetruy, editor, Proceedings of the 8th International Conference on Flow Processes in Composite Materials (FPCM-8), pages 65-72, Ecole des Mines de Douai, Douai, 2006.
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[14] B. Verleye, M. Klitz, R. Croce, D. Roose, S. Lomov, and I. Verpoest. Computation of permeability of textile reinforcements. In Proceedings of the 17th IMACS World Congress, Paris, France, 2005. Also as Preprint No. 228, SFB 611, University of Bonn.
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