Full name Familienname, Vorname
Gompper, Gerhard
 

Results 1-11 of 11 (Search time: 0.001 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Hydrodynamic correlations of viscoelastic fluids by multiparticle collision dynamics simulationsArtikel Article 2019
2Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Generalized Multiparticle Collision Dynamics: Non-Newtonian Fluid Dynamics on GPUsPräsentation Presentation2017
3Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Intrinsically Complex Fluids in Multiparticle Collision DynamicsPräsentation Presentation2017
4Toneian, David ; Kahl, Gerhard ; Likos, Christos N. ; Blaak, Ronald ; Winkler, Roland G. ; Gompper, Gerhard Magnetically Functionalised Star Polymers and Intrinsically Viscoelastic MPC FluidsPräsentation Presentation2017
5Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Simulating multi-scale non-Newtonian fluid systems with generalized MPCPräsentation Presentation2016
6Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Non-Newtonian Hydrodynamics in Generalized Multiparticle Collision DynamicsPräsentation Presentation2016
7Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Highly parallel simulations of the dynamics of non-Newtonian fluids on GPUsPräsentation Presentation2016
8Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Extension of Multiparticle Collision Dynamics for Complex FluidsPräsentation Presentation2015
9Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Multiparticle collision dynamics simulations of viscoelastic fluids: Time correlation functionsPräsentation Presentation2015
10Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Non-Newtonian Hydrodynamics in Generalized Multiparticle Collision DynamicsPräsentation Presentation2015
11Toneian, David ; Kahl, Gerhard ; Gompper, Gerhard ; Winkler, Roland G. Multiparticle Collision Dynamics Simulations of Viscoelastic FluidsPräsentation Presentation2015