Effects of Steam-Injection Strategies on Performance and Emission Characteristics of Marine Engines
In this study, the influence of direct steam injection (DSI) on the performance and emissions of marine engines is investigated. Simulation models are developed and tested based on experimental data. Steam is obtained by waste heat recovery in a marine engine. The limitations of DSI parameters are investigated based on the exhaust gas temperature. The steam quantity and temperature decrease with a decrease in load. The results show that steam mass plays an important role in NOₓ reduction and improving power. For a steam/fuel ratio of 1.27 at 100% load, the brake power improved by 3.09% and NOₓ emissions decreased by 4.67%. A higher degree of improvement is obtained with an increase in steam mass. The steam temperature and injection timing only slightly influenced the brake power and NOₓ emissions. When steam-injection timing improved to 12°CA at 100% load with injection duration decreasing from 85°CA to 25°CA, brake power improved from 3,485.7 to 3,529.7 kW. All of this demonstrates that the DSI approach has excellent energy-saving and emission reduction potential for marine engines. The steam-injection strategy should be optimized in the future.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/oclc/8674500
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Supplemental Notes:
- © 2023 American Society of Civil Engineers.
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Authors:
- Sun, Xiuxiu
- Zhao, Peixin
- Liang, Xingyu
- Jing, Guoxi
- Chen, Guang
- Publication Date: 2023-6
Language
- English
Media Info
- Media Type: Web
- Features: References;
- Pagination: 04023009
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Serial:
- Journal of Energy Engineering
- Volume: 149
- Issue Number: 3
- Publisher: American Society of Civil Engineers
- ISSN: 0733-9402
- Serial URL: https://ascelibrary.org/journal/jleed9
Subject/Index Terms
- TRT Terms: Energy consumption; Engine performance; Fuel injection; Marine diesel engines; Pollutants; Steam
- Subject Areas: Energy; Environment; Marine Transportation; Vehicles and Equipment;
Filing Info
- Accession Number: 01880220
- Record Type: Publication
- Files: TRIS, ASCE
- Created Date: Apr 21 2023 9:48AM