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Effect of manifold orientation on non-reacting in-cylinder tumble flows in an IC engine with pent roof piston-an investigation using PIV
Published in
2010
Volume: 3
   
Issue: 1
Pages: 597 - 607
Abstract
This paper deals with experimental study of in-cylinder tumble flows in a single-cylinder, four-stroke, two-valve internal combustion engine using a pentroof-offset-bowl piston under non-reacting conditions with four intake manifold orientations at an engine speed of 1000 rev/min., during suction and compression strokes using particle image velocimetry. Two-dimensional in-cylinder tumble flow measurements and analysis are carried out in combustion space on a vertical plane passing through cylinder axis. Ensemble average velocity vectors are used to analyze the tumble flows. Tumble ratio (TR) and average turbulent kinetic energy (TKE) are evaluated and used to characterize the tumble flows. From analysis of results, it is found that at end of compression stroke, 90° intake manifold orientation shows an improvement in TR and TKE compared other intake manifold orientations considered. Also, 90° intake manifold orientation shows an improvement in TR and TKE are higher by about 2.8 and 1.2 times respectively compared to standard intake manifold orientation. The present study will be useful in understanding effect of intake manifold orientation on the in-cylinder tumble flows under real engine conditions. © 2010 SAE International.
About the journal
JournalSAE International Journal of Materials and Manufacturing
ISSN19463979
Open AccessNo
Concepts (23)
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    COMPRESSION STROKE
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    CYLINDER AXIS
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    ENGINE CONDITIONS
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    ENGINE SPEED
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    ENSEMBLE AVERAGES
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    Experimental studies
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    Ic engines
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    INTAKE MANIFOLD
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    Particle image velocimetries
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    PIV
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    TUMBLE FLOW
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    TUMBLE RATIOS
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    Turbulent kinetic energy
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    VELOCITY VECTOR FIELD
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    Vertical plane
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    Combustion
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    Engine cylinders
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    Engine pistons
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    Flow visualization
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    Kinetic energy
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    SWIRLING FLOW
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    Velocity measurement
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    Automobile engine manifolds