Experimental and Theoretical Optimization of Combustion Chamber and Fuel Distribution for the Low Emission Direct-Injection Diesel Engine
Author:
Affiliation:
1. Ecosystem Engineering, Graduate School of Engineering, The University of Tokushima, 2-1 Minamijosanjima, Tokushima 770-8506, Japan
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Link
http://asmedigitalcollection.asme.org/gasturbinespower/article-pdf/125/1/351/5564786/351_1.pdf
Reference27 articles.
1. Shundoh, S., Kakegawa, T., Tsujimura, K., and Kobayashi, S., 1991, “The Effect of Injection Parameters and Swirl on Diesel Combustion with High Pressure Fuel Injection,” SAE Paper No. 910489.
2. Pierpont, D. A., and Reitz, R. D., 1995, “Effects of Injection Pressure and Nozzle Geometry on D.I. Diesel Emissions and Performance,” SAE Paper No. 950604.
3. Nakakita, K., et al., 1994, “Optimization of Pilot Injection Pattern and Its Effect on Diesel Combustion with High-Pressure Injection,” JSME Int. J. Ser. B.37, pp. 966–973.
4. Middlemiss, I. D., 1978, “Characteristics of the Perkins ‘Squish Lip’ Direct Injection Combustion System,” SAE Paper No. 780113.
5. Daisho, Y., et al., 1986, “Effects of Combustion Chamber Geometry in a Direct-Injection Diesel Engine,” Trans. Jpn. Soc. Mech. Eng., Ser. B 52(479), pp. 2768–2773.
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