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NOVOTNÝ, P. PÍŠTĚK, V.
Original Title
Virtual Engine - A Tool for a Powertrain Dynamic Solution
Type
journal article in Web of Science
Language
English
Original Abstract
The paper presents computational and experimental approaches to a powertrain vibration analysis. A complex computational model of a powertrain - a virtual engine is a powerful tool for a solution of structural, thermal and fatigue problems. The virtual engine results should answer different questions, mainly those concerning the area of noise, vibrations and component fatigues. The paper also includes a description of fast algorithm for a hydrodynamic solution of a slide bearing incorporating pin tilting influences. The main contribution is the fact that all models, that is those of a cranktrain, a valvetrain, a gear timing mechanism and a fuel injection pump are solved simultaneously, using a complex computational model. Synchronous solutions can have a fundamental effect on results of powertrain dynamics solutions. Additionally, it might help to understand influences among powertrain parts. The virtual engine is assembled as well as numerically solved in Multi Body System. Virtual engine results are validated by measurements on Diesel in-line six-cylinder engine.
Keywords
vibrations, noise, dynamics, powertrain, hydrodynamics
Authors
NOVOTNÝ, P.; PÍŠTĚK, V.
RIV year
2011
Released
1. 6. 2011
Publisher
Strojniški vestnik - Journal of Mechanical Engineering
Location
London
ISBN
0039-2480
Periodical
STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING
Year of study
Number
57
State
Republic of Slovenia
Pages from
611
Pages to
621
Pages count
BibTex
@article{BUT73170, author="Pavel {Novotný} and Václav {Píštěk}", title="Virtual Engine - A Tool for a Powertrain Dynamic Solution", journal="STROJNISKI VESTNIK-JOURNAL OF MECHANICAL ENGINEERING", year="2011", volume="2011", number="57", pages="611--621", doi="10.5545/sv-jme.2009.076", issn="0039-2480" }