Schlieren Observation of Spark-Ignited Premixed Charge Combustion Phenomena Using a Transparent Collimating Cylinder Engine
Author:
Kozuka K.1, Ozasa T.1, Fujikawa T.1, Saito A.1
Affiliation:
1. Toyota Central R&D Labs, Inc., Nagakute-cho, Aichi-ken 480-1192 Japan
Abstract
The schlieren photographs of in-cylinder processes in a spark-ignited premixed charge gasoline engine were observed via a transparent collimating cylinder and were presented in comparison with a pressure analysis. The schlieren photographs of the spark, the initial flame and the unburned gas ejection from the piston crevice, which is unable to be observed by direct photography, were clearly taken. It shows that the small difference in the initial combustion process among cycles is intensified by the movement of the piston during the expansion stroke. Finally, this difference appears as the cycle by cycle variation in the pressure and the rate of heat release. The observed flame size increased faster and was larger than the burned gas estimated from the pressure. The difference between them is large enough and can not be explained without considering the mixing of burned and unburned gases inside the flame front.
Publisher
ASME International
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Reference22 articles.
1. Sinnamon, J. F., Lancaster, D. R., and Steiner, J. C., 1980, “An Experimental and Analytical Study of Engine Fuel Spray Trajectories,” SAE Trans., 89, Sec. 1, pp. 765–785, Paper No. 800135. 2. Solomon, A. S. P.
, 1986, “A Photographic Study of Fuel Spray Ignition in a Rapid Compression Machine,” SAE Trans., 95, Sec. 1, pp. 406–1. 3. Zhu, Y., Hu, G., Wei, X., and Yu, J., 1988, “A Study on a New Combustion System for D.I. Diesel-CSCS System,” SAE Trans., 97, Sec. 6, pp. 768–6. 4. Namazian, M., Hansen, S., Lyford-Pike, E., Sanchez-Barsse, J., Heywood, J. B., and Rife, J., 1980, “Schlieren Visualization of the Flow and Density Fields in the Cylinder of a Spark-Ignition Engine,” SAE Trans., 89, Sec. 1, pp. 276–303, Paper No. 800044. 5. Namazian, M., and Heywood, J. B., 1982, “Flow in the Piston-Cylinder-Ring Crevices of a Spark-Ignition Engine: Effect on Hydrocarbon Emissions, Efficiency and Power,” SAE Trans., 91, Sec. 1, pp. 261–288, Paper No. 20088.
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6 articles.
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