Data di Pubblicazione:
2018
Abstract:
This work analyses the vibrational behaviour of an in-line
4-cylinder, 4-stroke, internal combustion turbocharged direct injection gasoline
engine. A multi-body numerical model of the engine is implemented, to
simulate its dynamic response when running in a bench test. The cranktrain
multi-body model is created using geometrical data extracted from engine
CAD, using as excitation forces the experimentally measured in-cylinder
pressure values. A flexible multi-body approach leverages on FEM modelling
of crankshaft, cylinder block and head for the dynamic analysis, with remaining
parts modelled as rigid. The engine mounts are modelled by flexible elements
with given stiffness and damping. The importance of the explicit modelling of
the rods connecting the engine with mounts is highlighted. The software
Siemens-LMS Virtual Lab and ANSYS are used for the assessment.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
FEM; multi body simulation; vibration simulation; gasoline engine dynamics.
Elenco autori:
Siano, Daniela
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