Title of article :
Development of the Four-Cylinder Moving Mesh Model for a 1.6-Litre Four-Stroke Direct-Injection Engine
Author/Authors :
Abdullah, Shahrir Universiti Kebangsaan Malaysia - Department of Mechanical and Material Engineering, Malaysia , Kurniawan, Wendy Hardyono Universiti Kebangsaan Malaysia - Department of Mechanical and Materials Engineering, Malaysia , Sopian, Kamaruzzaman Universiti Kebangsaan Malaysia - Department of Mechanical and Materials Engineering, Malaysia , Mohd Nopiah, Zulkifli Universiti Kebangsaan Malaysia - Department of Mechanical and Materials Engineering, Malaysia
From page :
135
To page :
149
Abstract :
The design of a modern internal combustion engine requires the use of advanced analysis and development tools to carry out an in-depth investigation on internal combustion process and computational fluid dynamics (CFD) simulation by using high performance computers.ln this work,the algorithm for moving or deformed mesh for a 1.6-litre four-cylinder four-stroke direct-injection engine has been developed.This type of mesh is required for transient simulation of fluid flow and combustion process inside the combustion chamber of an internal combustion engine.This mesh deforms with the movement of intake and exhaust valves as well as piston. Hence, the purpose of the work is to verify the moving mesh algorithm and to establish the correct mesh configuration at any crank angle.The simulation covers the full engine cycle consisting of intake, compression, power and exhaust strokes and the order of piston motion is set according to the firing order of the selected engine.The algorithm established defines events in which any of the designated engine component moves in terms of time and duration of occurrence.The verification of the algorithm was performed for the whole four-stroke cycle of 720° crank angles, where the positions of the intake valve, exhaust valve, cylinder and piston were updated accordingly with respect to crank angle.The finalised algorithm and mesh can be used to simulate the in-cylinder fluid flow and internal combustion process for the full engine cycle.
Keywords :
Computational fluid dynamics , moving mesh , direct , injection , four , stroke cycle , internal combustion engine.
Record number :
2588249
Link To Document :
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