Theoretical study of the effects of pilot fuel quantity and its injection timing on the performance and emissions of a dual fuel diesel engine

被引:130
|
作者
Papagiannakis, R. G. [1 ]
Hountalas, D. T.
Rakopoulos, C. D.
机构
[1] Hellen AF Acad, Dekelia AFB, Aeronaut Sci Dept,Propuls & Thermal Syst Lab, Thermodynam & Propuls Syst Sect, Athens 1010, Greece
[2] Natl Tech Univ Athens, Sch Mech Engn, Dept Thermal Engn, Internal Combust Engines Lab, Athens 15780, Greece
关键词
dual fuel diesel engine; natural gas; pilot ignition; injection timing; combustion; emissions;
D O I
10.1016/j.enconman.2007.07.003
中图分类号
O414.1 [热力学];
学科分类号
摘要
Various solutions have been proposed for improving the combustion process of conventional diesel engines and reducing the exhaust emissions without making serious modifications on the engine, one of which is the use of natural gas as a supplement for the conventional diesel fuel, the so called dual fuel natural gas diesel engines. The most common type of these is referred to as the pilot ignited natural gas diesel engine (PINGDE). Here, the primary fuel is natural gas that controls the engine power output, while the pilot diesel fuel injected near the end of the compression stroke auto-ignites and creates ignition sources for the surrounding gaseous fuel mixture to be burned. Previous research studies have shown that the main disadvantage of this dual fuel combustion is its negative impact on engine efficiency compared to the normal diesel operation, while carbon monoxide emissions are also increased. The pilot diesel fuel quantity and injection advance influence significantly the combustion mechanism. Then, in order to examine the effect of these two parameters on the performance and emissions, a comprehensive two-zone phenomenological model is employed and applied on a high-speed, pilot ignited, natural gas diesel engine located at the authors' laboratory. According to the results, the simultaneously increase of the pilot fuel quantity accompanied with an increase of its injection timing results to an improvement of the engine efficiency (increase) and of the emitted CO emissions (decrease) while it has a negative effect (increase) of NO emissions. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2951 / 2961
页数:11
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