Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System
Multi-injector system is potential to improve thermal efficiency and NOx emission of diesel engine at the same time. In order to optimize the combustion and emission of Marine medium speed diesel engine, the engine combustion with a multi-injector system is simulated and analyzed by CFD software Con...
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2021-01-01
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doaj-2658aa8f4b9549a18e0e9c0c89ec8b502021-02-18T10:43:15ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012360102610.1051/e3sconf/202123601026e3sconf_icersd2020_01026Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector SystemLiu Dai0Guo Yingzhu1Liu Long2Xia Qian3Gui Yong4Harbin Engineering University,College of Power and Energy Engineering, Nangang districtHarbin Engineering University,College of Power and Energy Engineering, Nangang districtHarbin Engineering University,College of Power and Energy Engineering, Nangang districtChina Shipbuilding Power Engineering Institute Co Ltd, Port industrial zone, Pudong new areaChina Shipbuilding Power Engineering Institute Co Ltd, Port industrial zone, Pudong new areaMulti-injector system is potential to improve thermal efficiency and NOx emission of diesel engine at the same time. In order to optimize the combustion and emission of Marine medium speed diesel engine, the engine combustion with a multi-injector system is simulated and analyzed by CFD software Converge. In this research, two injectors are installed at the side of the cylinder head while the central injector is maintained. Various injection directions of side injectors and injection strategies of multi-injector system are simulated to optimize the fuel spray and combustion. The analysis results show that the spray angle of the side injector plays a key role for effective thermal efficiency improvement, since complex spray jet-jet interaction and spray impingement may deteriorate the combustion if the arrangement of spray angle was not set properly. Once the fuel injection direction has been optimized, the fuel ratio of the three injectors is optimized and improved the effective thermal efficiency with lower NOx emission. The results show that the two side injectors could increase the fuel injection rate into the cylinder, leading to high brake power and consequently increased the thermal efficiency by 1.26% and decreased the NOx emission by 16% for the best optimization.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/12/e3sconf_icersd2020_01026.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Liu Dai Guo Yingzhu Liu Long Xia Qian Gui Yong |
spellingShingle |
Liu Dai Guo Yingzhu Liu Long Xia Qian Gui Yong Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System E3S Web of Conferences |
author_facet |
Liu Dai Guo Yingzhu Liu Long Xia Qian Gui Yong |
author_sort |
Liu Dai |
title |
Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System |
title_short |
Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System |
title_full |
Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System |
title_fullStr |
Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System |
title_full_unstemmed |
Optimization of Marine Medium Speed Diesel Engine Performance based on Multi-Injector System |
title_sort |
optimization of marine medium speed diesel engine performance based on multi-injector system |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2021-01-01 |
description |
Multi-injector system is potential to improve thermal efficiency and NOx emission of diesel engine at the same time. In order to optimize the combustion and emission of Marine medium speed diesel engine, the engine combustion with a multi-injector system is simulated and analyzed by CFD software Converge. In this research, two injectors are installed at the side of the cylinder head while the central injector is maintained. Various injection directions of side injectors and injection strategies of multi-injector system are simulated to optimize the fuel spray and combustion. The analysis results show that the spray angle of the side injector plays a key role for effective thermal efficiency improvement, since complex spray jet-jet interaction and spray impingement may deteriorate the combustion if the arrangement of spray angle was not set properly. Once the fuel injection direction has been optimized, the fuel ratio of the three injectors is optimized and improved the effective thermal efficiency with lower NOx emission. The results show that the two side injectors could increase the fuel injection rate into the cylinder, leading to high brake power and consequently increased the thermal efficiency by 1.26% and decreased the NOx emission by 16% for the best optimization. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/12/e3sconf_icersd2020_01026.pdf |
work_keys_str_mv |
AT liudai optimizationofmarinemediumspeeddieselengineperformancebasedonmultiinjectorsystem AT guoyingzhu optimizationofmarinemediumspeeddieselengineperformancebasedonmultiinjectorsystem AT liulong optimizationofmarinemediumspeeddieselengineperformancebasedonmultiinjectorsystem AT xiaqian optimizationofmarinemediumspeeddieselengineperformancebasedonmultiinjectorsystem AT guiyong optimizationofmarinemediumspeeddieselengineperformancebasedonmultiinjectorsystem |
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