Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems

2029 Ogledov
1365 Prenosov
Izvoz citacije: ABNT
JAKŠIČ, Nikola ;BOLTEŽAR, Miha ;KUHELJ, Anton .
Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems. 
Strojniški vestnik - Journal of Mechanical Engineering, [S.l.], v. 42, n.1-2, p. 27-36, july 2017. 
ISSN 0039-2480.
Available at: <https://www.sv-jme.eu/sl/article/computer-simulation-of-torsional-vibrations-of-branched-chain-topology-systems/>. Date accessed: 20 dec. 2024. 
doi:http://dx.doi.org/.
Jakšič, N., Boltežar, M., & Kuhelj, A.
(1996).
Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems.
Strojniški vestnik - Journal of Mechanical Engineering, 42(1-2), 27-36.
doi:http://dx.doi.org/
@article{.,
	author = {Nikola  Jakšič and Miha  Boltežar and Anton  Kuhelj},
	title = {Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems},
	journal = {Strojniški vestnik - Journal of Mechanical Engineering},
	volume = {42},
	number = {1-2},
	year = {1996},
	keywords = {TORZIJA; Computer Simulation; Torsional Vibrations; Topology; },
	abstract = {This paper describes the torsional vibrations modelling of branched chain-topology systems using the transfer matrix method. The computer program named TORZIJA, developed for this purpose, allows to predict eigenfrequencies, eigenvectors and the response of a system to harmonic forcing for undamped and damped linear models. The development and testing of the computer program are described. The user-friendly graphic interface for modelling is presented. The results of the simulations have been compared to those obtained analytically as well as those given in references.},
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	url = {https://www.sv-jme.eu/sl/article/computer-simulation-of-torsional-vibrations-of-branched-chain-topology-systems/}
}
Jakšič, N.,Boltežar, M.,Kuhelj, A.
1996 July 42. Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems. Strojniški vestnik - Journal of Mechanical Engineering. [Online] 42:1-2
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%X This paper describes the torsional vibrations modelling of branched chain-topology systems using the transfer matrix method. The computer program named TORZIJA, developed for this purpose, allows to predict eigenfrequencies, eigenvectors and the response of a system to harmonic forcing for undamped and damped linear models. The development and testing of the computer program are described. The user-friendly graphic interface for modelling is presented. The results of the simulations have been compared to those obtained analytically as well as those given in references.
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%0 Journal Article
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%V 42
%N 1-2
%@ 0039-2480
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Jakšič, Nikola, Miha  Boltežar, & Anton  Kuhelj.
"Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems." Strojniški vestnik - Journal of Mechanical Engineering [Online], 42.1-2 (1996): 27-36. Web.  20 Dec. 2024
TY  - JOUR
AU  - Jakšič, Nikola 
AU  - Boltežar, Miha 
AU  - Kuhelj, Anton 
PY  - 1996
TI  - Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems
JF  - Strojniški vestnik - Journal of Mechanical Engineering
DO  - 
KW  - TORZIJA; Computer Simulation; Torsional Vibrations; Topology; 
N2  - This paper describes the torsional vibrations modelling of branched chain-topology systems using the transfer matrix method. The computer program named TORZIJA, developed for this purpose, allows to predict eigenfrequencies, eigenvectors and the response of a system to harmonic forcing for undamped and damped linear models. The development and testing of the computer program are described. The user-friendly graphic interface for modelling is presented. The results of the simulations have been compared to those obtained analytically as well as those given in references.
UR  - https://www.sv-jme.eu/sl/article/computer-simulation-of-torsional-vibrations-of-branched-chain-topology-systems/
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	author = {Jakšič, N., Boltežar, M., Kuhelj, A.},
	title = {Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems},
	journal = {Strojniški vestnik - Journal of Mechanical Engineering},
	volume = {42},
	number = {1-2},
	year = {1996},
	doi = {},
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TY  - JOUR
AU  - Jakšič, Nikola 
AU  - Boltežar, Miha 
AU  - Kuhelj, Anton 
PY  - 2017/07/06
TI  - Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems
JF  - Strojniški vestnik - Journal of Mechanical Engineering; Vol 42, No 1-2 (1996): Strojniški vestnik - Journal of Mechanical Engineering
DO  - 
KW  - TORZIJA, Computer Simulation, Torsional Vibrations, Topology, 
N2  - This paper describes the torsional vibrations modelling of branched chain-topology systems using the transfer matrix method. The computer program named TORZIJA, developed for this purpose, allows to predict eigenfrequencies, eigenvectors and the response of a system to harmonic forcing for undamped and damped linear models. The development and testing of the computer program are described. The user-friendly graphic interface for modelling is presented. The results of the simulations have been compared to those obtained analytically as well as those given in references.
UR  - https://www.sv-jme.eu/sl/article/computer-simulation-of-torsional-vibrations-of-branched-chain-topology-systems/
Jakšič, Nikola, Boltežar, Miha, AND Kuhelj, Anton.
"Computer Simulation of Torsional Vibrations of Branched Chain Topology Systems" Strojniški vestnik - Journal of Mechanical Engineering [Online], Volume 42 Number 1-2 (06 July 2017)

Avtorji

Inštitucije

  • University of Ljubljana, Faculty of Mechanical Engineering, Slovenia
  • University of Ljubljana, Faculty of Mechanical Engineering, Slovenia
  • University of Ljubljana, Faculty of Mechanical Engineering, Slovenia

Informacije o papirju

Strojniški vestnik - Journal of Mechanical Engineering 42(1996)1-2, 27-36
© The Authors, CC-BY 4.0 Int. Change in copyright policy from 2022, Jan 1st.

This paper describes the torsional vibrations modelling of branched chain-topology systems using the transfer matrix method. The computer program named TORZIJA, developed for this purpose, allows to predict eigenfrequencies, eigenvectors and the response of a system to harmonic forcing for undamped and damped linear models. The development and testing of the computer program are described. The user-friendly graphic interface for modelling is presented. The results of the simulations have been compared to those obtained analytically as well as those given in references.

TORZIJA; Computer Simulation; Torsional Vibrations; Topology;