Publications

Wolfgang Hauser. Analysis and agent-based modelling of lifestyle aspects influencing the residential energy demand in France and Germany. Universität Stuttgart, 2013. [PUMA: , 300, Agent-based Agentenbasierte Elektrizitätsverbrauch Energieverbrauch Internationaler Lastkurven Lebensstil Lifestyle Modelling Simulation Simulation, Vergleich, curve demand energy load residential] URL

Seiichi Suzuki. Topology-Driven Form-Finding: Interactive Computational modelling of bending-active and textile hybrid structures through active-topology based real-time physics simulations, and ist emerging design potentials. In Jan Knippers (Hrsg.), Forschungsberichte aus dem Institut für Tragkonstruktionen und Konstruktives Entwerfen, Stuttgart: Institut für Tragkonstruktionen und Konstruktives Entwerfen, ITKE, Stuttgart, Germany, März 2020. [PUMA: 2020 active-topology bending-active computational diss dissertation form-finding from:petraheim hybrid interactive itke modelling simulation structure suzuki textile topology-driven]

Seiichi Suzuki. Topology-Driven Form-Finding: Interactive Computational modelling of bending-active and textile hybrid structures through active-topology based real-time physics simulations, and ist emerging design potentials. In Jan Knippers (Hrsg.), Forschungsberichte aus dem Institut für Tragkonstruktionen und Konstruktives Entwerfen, Stuttgart: Institut für Tragkonstruktionen und Konstruktives Entwerfen, ITKE, Stuttgart, Germany, März 2020. [PUMA: 2020 active-topology bending-active computational diss form-finding hybrid interactive itke modelling simulation structure suzuki textile topology-driven]

Nikolay N. Nedialkov, S.E. Imamova, Petar A. Atanasov, Gerhard Heusel, Detlef Breitling, Andreas Ruf, Helmut Hügel, Friedrich Dausinger, und Peter Berger. Laser ablation of iron by ultrashort laser pulses. Thin Solid Films, (453-454):496-500, April 2004. [PUMA: Ablation Laser Modelling Simulation myown]

Nikolay N. Nedialkov, S.E. Imamova, Petar A. Atanasov, Gerhard Heusel, Detlef Breitling, Andreas Ruf, Helmut Hügel, Friedrich Dausinger, und Peter Berger. Laser ablation of iron by ultrashort laser pulses. Thin Solid Films, (453-454):496-500, April 2004. [PUMA: myown Simulation Laser Modelling Ablation from:peterberger]

Petar A. Atanasov, Nikolay N. Nedialkov, S.E. Imamova, Andreas Ruf, Helmut Hügel, Friedrich Dausinger, und Peter Berger. Laser ablation of Ni by ultrashort pulses: molecular dynamics simulation. Applied Surface Science, (186):369-373, 2002. [PUMA: Simulation Laser Modelling Ablation from:peterberger]

M. Pfeiffer, S. Copplestone, T. Binder, S. Fasoulas, und C.-D. Munz. Comparison of plasma plume expansion simulations using fully kinetic electron treatment and electron fluid models Proceeding. AIP Conference Proceedings, (1786)130005November 2016. [PUMA: 2016 chemistry fluid laser modelling physical plasma sfb716 sfb716-b8 simulation vis(us) visus:munzcs] URL

Valerio Ferrario, Niels Hansen, und Jürgen Pleiss. Interpretation of cytochrome P450 monooxygenase kinetics by modeling of thermodynamic activity. Journal of Inorganic Biochemistry, (183)2018. [PUMA: 2018 biomolecular chemistry modelling physical sfb716 sfb716-a9 sfb716-c1 simulation vis(us) visus:hansenns]

Christian Freitag, Rudolf Weber, und Thomas Graf. Polarization dependence of laser interaction with carbon fibers and CFRP. Optics Express, (22)2:1474-1479, 2014. [PUMA: Laser LaserMatterInteraction Modelling Simulation]

Karin Heller, Steffen Kessler, Friedhelm Dorsch, Peter Berger, und Thomas Graf. Analytical description of the surface temperature for the characterization of laser welding processes. International Journal of Heat and Mass Transfer, (106):958-969, 2017. [PUMA: Laser Modelling Simulation Welding]

Florian Fetzer, Peter Stritt, Peter Berger, Rudolf Weber, und Thomas Graf. Fast numerical method to predict the depth of laser welding. Journal of Laser Applications, (29)2:022012, 2017. [PUMA: Laser Modelling Peer Simulation Welding]

Xiangzhong Jin, Peter Berger, und Thomas Graf. Multiple reflections and Fresnel absorption in an actual 3D keyhole during deep penetration laser welding. Journal of Physics D: Applied Physics, (39):4703, 2006. [PUMA: Laser LaserMatterInteraction Modelling Peer Simulation Welding]

Florian Fetzer, Peter Stritt, Peter Berger, Rudolf Weber, und Thomas Graf. Fast numerical method to predict the depth of laser welding. Journal of Laser Applications, (29)2:022012, 2017. [PUMA: Laser Modelling Peer Simulation Welding from:peterberger myown]

Karin Heller, Steffen Kessler, Friedhelm Dorsch, Peter Berger, und Thomas Graf. Analytical description of the surface temperature for the characterization of laser welding processes. International Journal of Heat and Mass Transfer, (106):958-969, 2017. [PUMA: Laser Modelling Simulation Welding from:peterberger myown peer]

Florian Fetzer, Peter Stritt, Peter Berger, Rudolf Weber, und Thomas Graf. Fast numerical method to predict the depth of laser welding. Journal of Laser Applications, (29)2:022012, 2017. [PUMA: Laser Modelling Peer Simulation Welding]

Karin Heller, Steffen Kessler, Friedhelm Dorsch, Peter Berger, und Thomas Graf. Analytical description of the surface temperature for the characterization of laser welding processes. International Journal of Heat and Mass Transfer, (106):958-969, 2017. [PUMA: Laser Modelling Simulation Welding]

Christian Freitag, Rudolf Weber, und Thomas Graf. Polarization dependence of laser interaction with carbon fibers and CFRP. Optics Express, (22)2:1474-1479, 2014. [PUMA: Laser LaserMatterInteraction Modelling Simulation from:peterberger myown]

Christian Freitag, Rudolf Weber, und Thomas Graf. Polarization dependence of laser interaction with carbon fibers and CFRP. Optics Express, (22)2:1474-1479, 2014. [PUMA: Laser LaserMatterInteraction Modelling Simulation]

Xiangzhong Jin, Peter Berger, und Thomas Graf. Multiple reflections and Fresnel absorption in an actual 3D keyhole during deep penetration laser welding. Journal of Physics D: Applied Physics, (39):4703, 2006. [PUMA: Laser LaserMatterInteraction Modelling Peer Simulation Welding from:peterberger myown]

R. Klieber, Andreas Michalowski, R. Neuhaus, und D. Suter. Nuclear quadrupole resonance of an electronically excited statefrom high-resolution hole-burning spectroscopy. Physical Review B, (67):184103-1 - 184103-6, 2003. [PUMA: Modelling Laser Diagnostics LaserMatterInteraction from:peterberger Peer Simulation]