Numerical Investigation of the Effect of Hydrogen Enrichment on an Opposed-Piston Compression Ignition Diesel Engine

Author:

Zhou Jianhao,Sheng Xueshuang,He Longqiang

Publisher

Springer Science and Business Media LLC

Subject

Condensed Matter Physics

Reference42 articles.

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2. Abani N., Nagar N., Zermeno R., Thomas I., Developing a 55% BTE commercial heavy-duty opposed-piston engine without a waste heat recovery system. SAE Technical Paper, 2017-01-0638, 2017.

3. Naik S., Johnson D., Koszewnik J., Fromm L., Redon F., Regner G., et al., Practical applications of opposed-piston engine technology to reduce fuel consumption and emissions. SAE Technical Paper, 2013-01-2754, 2013.

4. Kalkstein J., Rover W., Campbell B., et al., Opposed piston opposed cylinder (opoc-) 5/10 kW heavy fuel engine for UAVs and APUs. SAE Technical Paper, 2006-01-0278, 2006.

5. Peng L., Tusinean A., Hofbauer P., Deylami K., Development of a compact and efficient truck APU. SAE Technical Paper, 2005-01-0653, 2005.

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