activity
20052008
most citedRotational Energy Transfer in H2+H2

16 citations · 16 across the 4 of their papers we have counts for

collaborators

5 papers

physics.flu-dyn2008

Computer Simulations of Pulsatile Human Blood Flow Through 3D-Models of the Human Aortic Arch, Vessels of Simple Geometry and a Bifurcated Artery: Investigation of Blood Viscosity and Turbulent Effects

Renat A. Sultanov, Dennis Guster

We report computational results of blood flow through a model of the human aortic arch and a vessel of actual diameter and length. On the top of the aortic arch the branching of th…

physics.comp-ph2008

3D Computer Simulations of Pulsatile Human Blood Flows in Vessels and in the Aortic Arch: Investigation of Non-Newtonian Characteristics of Human Blood

Renat A. Sultanov, Dennis Guster, Brent Engelbrekt +1

Methods of Computational Fluid Dynamics are applied to simulate pulsatile blood flow in human vessels and in the aortic arch. The non-Newtonian behaviour of the human blood is inve…

physics.chem-ph200616 cited

Rotational Energy Transfer in H2+H2

Renat A. Sultanov, Dennis Guster

Quantum-mechanical close-coupling calculations for state-to-state cross sections and thermal rates are reported for H2+H2 collisions. Two recently developed potential energy surfac…

physics.chem-ph2006

Parallel computing for 4-atomic molecular dynamics calculations

Renat A. Sultanov, Mark Nordby, Dennis Guster

We report the results of intensive numerical calculations for four atomic H2+H2 energy transfer collision. A parallel computing technique based on LAM/MPI functions is used. In thi…

physics.chem-ph2005

State resolved rotational excitation cross sections and rates in H2+H2 collisions

Renat A. Sultanov, Dennis Guster

Rotational transitions in molecular hydrogen collisions are computed. The two most recently developed potential energy surfaces for the H2-H2 system are used from the following wor…