prof. Ing. Jaroslav Zapoměl, DrSc.


Position:  Head of branch office
Department:  Department D 3 - Dynamics and Vibration
Phone: (+420) 597323267
Location:  Ostrava Branch Office, VŠB-TU Ostrava, A751, 17. listopadu 15/2172, Ostrava
E-mail:
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Employments

1982-1989 Mechanical Engineering and Metallurgy Research Institute, VÍTKOVICE s.p., Ostrava, research engineer
1989-1998 VŠB-Technical University of Ostrava, Faculty of Mechanical Engineering, lecturer, Department of Mechanics
1998-2008 VŠB-Technical University of Ostrava, Faculty of Mechanical Engineering, Associate Professor, Department of Mechanics
2008-now VŠB-Technical University of Ostrava, Faculty of Mechanical Engineering, Professor, Department of Mechanics
2006-now Institute of Thermomechanics, v.v.i., Prague, Centre of Inteligent systems and Structures, head of the department

Education

1977-1982 study at the University of Mining and Metallurgy of Ostrava, Faculty of Mechanical and Electrical Engineering, study branch - Equipment of Mines and Metallurgy Plants
1989-1993 postgraduate study at the Brno University of Technology, Faculty of Mechanical Engineering, scientific degree CSc. (equiv. of PhD), dissertation thesis: Computer Modelling of a Four-High Rolling Mill Stand Including the Nonlinearity of Dry Friction
1995 study stay at the University of Teesside, Middlesbrough, England
1996 study stay at the Institute of Sound and Vibration Research, University of Southampton, England
1997 study stay at the University of Nottingham, Nottingham, England
1998 academy degree "docent" (Associate Professor), thesis : Approaches to Implementation of Material Damping into Computer Models of Mechanical Systems
2000 scientific degree "DrSc." (Doctor of Sciencies), doctoral thesis: Approaches to Dynamical Analysis of Lateral Vibration of Rotor Systems with Fluid Film Bearings Using a Computer Modelling Method
2008 academy degree "profesor" (Professor)

Teaching

VSB - Technical University of Ostrava

Applied Dynamics
Multibody Mechanics
Rotor Dynamics

Grants

2015–2017GA15-06621SModelling of smart damping elements of rotating systems utilizing the physical properies of magnetorheological fluids