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Bernhard Weigand
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2020 – today
- 2024
- [j9]Hannes Mandler
, Bernhard Weigand
:
A review and benchmark of feature importance methods for neural networks. ACM Comput. Surv. 56(12): 318:1-318:30 (2024) - 2023
- [j8]Alexander Straub
, Grzegorz Karol Karch
, Jonas Steigerwald
, Filip Sadlo
, Bernhard Weigand
, Thomas Ertl
:
Visual analysis of interface deformation in multiphase flow. J. Vis. 26(6): 1321-1338 (2023) - 2020
- [j7]Jonathan Reutzsch
, Corine Kieffer-Roth, Bernhard Weigand
:
A consistent method for direct numerical simulation of droplet evaporation. J. Comput. Phys. 413: 109455 (2020)
2010 – 2019
- 2018
- [j6]Grzegorz Karol Karch
, Fabian Beck, Moritz Ertl
, Christian Meister, Kathrin Schulte
, Bernhard Weigand
, Thomas Ertl
, Filip Sadlo:
Visual Analysis of Inclusion Dynamics in Two-Phase Flow. IEEE Trans. Vis. Comput. Graph. 24(5): 1841-1855 (2018) - 2017
- [j5]Martin Reitzle, Corine Kieffer-Roth, Harald Garcke
, Bernhard Weigand
:
A volume-of-fluid method for three-dimensional hexagonal solidification processes. J. Comput. Phys. 339: 356-369 (2017) - [i1]Grzegorz Karol Karch, Filip Sadlo, Sebastian Boblest, Moritz Ertl
, Bernhard Weigand, Kelly P. Gaither, Thomas Ertl:
Topology of Feature Dynamics in Advected Scalar Fields. CoRR abs/1705.05138 (2017) - 2016
- [j4]Kathrin Eisenschmidt
, Moritz Ertl, Hassan Gomaa, Corine Kieffer-Roth, Christian Meister, Philipp Rauschenberger, Martin Reitzle, Karin Schlottke, Bernhard Weigand
:
Direct numerical simulations for multiphase flows: An overview of the multiphase code FS3D. Appl. Math. Comput. 272: 508-517 (2016) - 2015
- [j3]Philipp Rauschenberger, Bernhard Weigand
:
A Volume-of-Fluid method with interface reconstruction for ice growth in supercooled water. J. Comput. Phys. 282: 98-112 (2015) - [j2]Philipp Rauschenberger, Bernhard Weigand
:
Direct numerical simulation of rigid bodies in multiphase flow within an Eulerian framework. J. Comput. Phys. 291: 238-253 (2015) - 2013
- [c2]Grzegorz Karol Karch, Filip Sadlo, Christian Meister, Philipp Rauschenberger, Kathrin Eisenschmidt
, Bernhard Weigand
, Thomas Ertl:
Visualization of piecewise linear interface calculation. PacificVis 2013: 121-128 - [p7]Chengxiang Zhu, Moritz Ertl
, Christian Meister, Philipp Rauschenberger, Andreas Birkefeld, Bernhard Weigand
:
Direct Numerical Simulation of Inelastic Non-Newtonian Jet Breakup. High Performance Computing in Science and Engineering 2013: 321-335 - 2011
- [p6]Philipp Rauschenberger, Jan Schlottke, Bernhard Weigand
:
A Computation Technique for Rigid Particle Flows in an Eulerian Framework Using the Multiphase DNS Code FS3D. High Performance Computing in Science and Engineering 2011: 309-323 - 2010
- [p5]Christian Huber, Hassan Gomaa, Bernhard Weigand
:
Application of a Novel Turbulence Generator to Multiphase Flow Computations. High Performance Computing in Science and Engineering 2010: 273-286 - [p4]Sven Olaf Neumann, Naseem Uddin
, Bernhard Weigand
:
Grid Sensitivity of LES Heat Transfer Results of a Turbulent Round Impinging Jet. High Performance Computing in Science and Engineering 2010: 307-325
2000 – 2009
- 2008
- [j1]Jan Schlottke, Bernhard Weigand
:
Direct numerical simulation of evaporating droplets. J. Comput. Phys. 227(10): 5215-5237 (2008) - [c1]Helga Steinbrück, Sebastian Zehner, Bernhard Weigand
, Sven Olaf Neumann:
Combination of Natural and Numerical Optimization Methods at the Example of an Internal Gas Turbine Cooling Channel. PPSN 2008: 316-324 - [p3]Hassan Gomaa, Bernhard Weigand
, Mark Haas, Claus-Dieter Munz:
Direct Numerical Simulation (DNS) on the Influence of Grid Refinement for the Process of Splashing. High Performance Computing in Science and Engineering 2008: 241-255 - [p2]Naseem Uddin
, Sven Olaf Neumann, Peter Lammers, Bernhard Weigand
:
Thermal & Flow Field Analysis of Turbulent Swirling Jet Impingement Using Large Eddy Simulation. High Performance Computing in Science and Engineering 2008: 301-315 - 2006
- [p1]Wolfgang Sander, Bernhard Weigand
, Kai Jellinghaus, Klaus D. Beheng:
Direct Numerical Simulation of Breakup Phenomena in Liquid Jets and of Colliding Raindrops. High Performance Computing in Science and Engineering 2006: 129-142
Coauthor Index
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