doc. RNDr. Miroslav Doložílek, CSc.

E-mail:   dolozilek@fme.vutbr.cz 
Dept.:   Institute of Physical Engineering
Dept. of Micromechanics of Materials and Engineering Acoustics
Position:   Associate Professor
Room:   A2/504

Education and academic qualification

  • 1972, RNDr., Faculty of Science MU in Brno, branch Applied Physics
  • 1972 - 1975, Postgradual study, Faculty of Mathematics and Physics, Charles University in Prague, branch Experiental nuclear physics
  • 1981, CSc.,University of Defence, Brno, branch Weapons and Protection against them
  • 1987, Doc., Faculty of Mechanical Engineering, BUT Brno, branch Nuclear and Subnuclear Physics

Career overview

  • 1968-1983, worker specialist, Research and Testing Center 020, University of Defence, Brno
  • 1983-1984, scietific worker, Research Institute of Transport, Brno
  • 1984-till now, associate professor, Institute of Physical Engineering, FME TU of Brno

Pedagogic activities

  • Basic Physics Course for Bachelor study (bf)
  • Computer Physics  (0pf. t1f, t2f) – garant
  • Computers in Experiments (tpe) – garant
  • Diagnostics of Environment (tdi) – garant
  • Monitoring and Decreasing the Noise (9msh) – garant
  • Controlling the Experiment by PC - garant

Scientific activities

  • Technical Acoustics, Musical Acoustics, Measurement Methods, Virtual Instrumentation
  • Pedagogical Physics, Computer Aided Teaching

Academic internships abroad

  • 1991 - Towson State University, USA - instructor of the course Computer physics
  • 1994, University of Salford, England, Tempus program
  • 1998 - F.-S.-University Jena, Germany - instructor of the course Laboratory measurement in physics

University activities

  • 2001-till now, Member of Editing Board FME, TU of Brno

Non-University activities

  • The Union of czech mathematicians and physicists - member

Projects

  • Study of the acoustical characteristics of the materials from polymer waste. Grant Fondu rozvoje VŠ č.0952 T.o.2. 1994.
  • Preparation of the course Noise and vibration in environment on Technical Universities. Grant Fondu rozvoje VŠ č.0716/1995 T.o.7. 1995.
  • Antivibration properties of the polymer waste materials. Grant VUT č.FU 350045. 1995.
  • Development of Wave Propagation Techniques for the Ultrasonic Characterization of Structural Materials. Grant Copernicus CIPA CT94 0132. 1995.
  • Utilisation of the polymer waste for effective absorption characteristics of a noise isolation element. Grant FR VUT č. FU 370012.
  • Computer support of the base physics course on Technical Universities. FRVŠ č.0801/F4. 1997.
  • Computer support of the teaching of technological courses - modelling in the Mathcad environment. FRVŠ č.0216/F1. 1998.
  • Innovation of the computer laboratory. FRVŠ č. 1486/A. 2000.
  • Innovation of the course Computer in experiment. FRVŠ č.009/2001.
  • Innovation of the course Monitoring and reducing of the noise in environment. FRVŠ č.1745/2002.
  • New cement composites for building elements and constructions complying special technical and ecological requirements. Project of the research development MPO ČR č.FF-P/015. 2003 - 2004.
  • Simulation modeling of the mechatronic systems. Project MSM 0021630518. 2005 - 2009.
  • Innovation of the course Noise and vibration. FRVŠ č.601/2006.
  • Acoustic demonstrations of the vibrations and waves. FRVŠ č.462/2008.
  • Tasks for measurement in physical laboratory. FRVŠ č.2826/2009.
  • Measurement of the turbine set acoustic characteristics. Innovation voucher JIC č.2011030026. 
  • Detection of the radial crush of the paper core by winded plastic wrap Innovation voucher JIC č. 16/2013

Sum of citations (without self-citations) indexed within ISI Web of Knowledge

0

Sum of other citations (without self-citations)

3

Supervised courses:

Publications:

  • KLUS, J.; DOLOŽÍLEK, M.:
    Remote experiment Charging and discharging capacitor,
    7. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí Sborník příspěvkú, část 2 - fyzika, pp.57-62, ISBN 978-80-7231-816-2, (2011), Univerzita Obrany
    conference paper
    akce: 7. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí, Brno, 22.09.2011-22.09.2011
  • PUCZOK, D.; DOLOŽÍLEK, M.:
    Representation of Transient Phenomena of Forced Oscillations,
    6. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí, pp.423-430, ISBN 978-80-7231-667-0, (2009), Univerzita obrany Brno
    conference paper
    akce: 6. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí, Univerzita obrany, Brno, 10.09.2009-10.09.2009
  • PUCZOK, D.; DOLOŽÍLEK, M.:
    Směrové charakteristiky hudebních nástrojů,
    77. akustický seminář, pp.17-23, ISBN 978-80-01-04190-1, (2008), CsAS
    conference paper
    akce: 77. akustický seminář, Zlenice, 07.10.2008-09.10.2008
  • POKLUDA, J.; ŠANDERA, P.; OHLÍDAL, M.; ČERNÝ, M.; PILCH, J.; FLORIAN, Z.; SLÁMEČKA, K.; ŠESTÁK, P.; DOLOŽÍLEK, M.; HORNÍKOVÁ, J.:
    Physical Engineering: Research Support of Mechatronic Models,
    Simulation Modelling of Mechatronic Systems II, pp.15-27, ISBN 978-80-214-3559-9, (2007), VUT v Brně
    conference paper
  • RYNDOVÁ, A., DOLOŽÍLEK, M., VÁLKA, L.:
    Sound Insulation of Bariers from Wood,
    Inter - noise 2004, pp.109-115, ISBN 80-01-03055-5, (2004), ČVUT Praha
    conference paper
    akce: inter.noise 2004, Praha, 22.08.2004-25.08.2004

List of publications at Portal BUT

Abstracts of most important papers:

  • PUCZOK, D.; DOLOŽÍLEK, M.:
    Representation of Transient Phenomena of Forced Oscillations,
    6. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí, pp.423-430, ISBN 978-80-7231-667-0, (2009), Univerzita obrany Brno
    conference paper
    akce: 6. konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí, Univerzita obrany, Brno, 10.09.2009-10.09.2009

    Various approaches can be used for representation of signals; Fourier transformation and time dependence of physical quantity are the most commonly applied but these methods give no information about time dependence of frequency spectra. For this purpose the Short-time Fourier transformation can be applied. Also acoustical representation can be very impressive. All these methods are demonstrated on a simple example of forced oscillations. The presented results can be fruitfully used in teaching of physics.
  • DOLOŽÍLEK, M.; PILCH, J.; RYNDOVÁ, A.:
    A Sound Card of the PC for Sonification of the Oscillations and Interference of the Sound Waves,
    4th International Conference on Physics Teaching in Engineering Education, pp.9-5-13, ISBN 2-914771-28-2, (2005)
    conference paper
    akce: Physics Teaching in Engineering Education - PTEE 2005, Brno, 29.06.2005-01.07.2005

    A stereo sound card and loudspeakers possess every PC. Applying the user matched software we are able relatively easy generate the sounds which increase the meaningfulness and memorability of the numerical output of our simulations. This process is particularly inherent for demonstration of the superposition of the oscillations, interference of the waves or numerical solution of the differential equation of harmonic, inharmonic, dumped or forced oscillations. In our contribution we will present Mathcad as a tabular programming environment for this type of experiments. Using one loudspeaker we can generate the sounds representing the superposition of oscillations with different frequency, amplitude or phase. Using two loudspeakers in stereo mode we can demonstrate the interference of the waves.
  • DOLOŽÍLEK, M.; PILCH, J.:
    Gold Wave for Sonification of Oscillations and Waves.,
    4th International Conference on Physics Teaching in Engineering Education, pp.w-2-5, ISBN 2-914771-28-2, (2005)
    conference paper
    akce: Physics Teaching in Engineering Education - PTEE 2005, Brno, 29.06.2005-01.07.2005

    GoldWave is a sound editor, player, recorder, and converter. A full set of effects and editing features are included for professional sound production. GoldWave also includes an expression evaluator, which allows user to generate the sounds by means of analytical formula defined by conventional expressions. It can be a simple way to realize the oscillation and wave superposition experiments.
  • DOLOŽÍLEK, M.; RYNDOVÁ, A.; PILCH, J.:
    Interference zvukových vln.,
    4. konference o matematice a fyzice na vysokých školách technických s mezinárodní účast, pp.247-252, ISBN 80-85960-91-5, (2005)
    conference paper
    akce: 4.konference o matematice a fyzice na vysokých školách technických s mezinárodní účastí., Brno, 15.09.2005-15.09.2005

    The students like listening the music and work with sound files. Some physical phenomena are very close connected with sound and it is a pity that the experiments with sound are still not enough utilised in demonstration in physics teaching. At the same time the tools for theirs realization are commonly available. Graphic presentation backed by sound emphasis the understanding the physical relations. In our contribution we present the Mathcad programming environment for demonstration of interference of the waves. These experiments can be realized both in a bigger lecture room and small laboratory.
  • DOLOŽÍLEK, M., RYNDOVÁ, A., VAŇKOVÁ, M.:
    Hodnocení akustických vlastností venkovních protihlukových clon.,
    VI. konference. Nové stavební hmoty a výrobky., pp.128-131, (2002), ?????
    conference paper
    akce: VI. konference Nové stavební hmoty a výrobky, VUSTAH Brno, 16.10.2002-18.10.2002

    Noise barriers are used for trafic noise reduction in the vicinity road. The testing method of noise performance characteristics are described.