A Numerical Study on the Combustion Process and Emission Characteristics of a Natural Gas-Diesel Dual-Fuel Marine Engine at Full Load

被引:21
作者
Pham, Van Chien [1 ]
Choi, Jae-Hyuk [2 ]
Rho, Beom-Seok [3 ]
Kim, Jun-Soo [3 ]
Park, Kyunam [4 ]
Park, Sang-Kyun [5 ]
Le, Van Vang [6 ]
Lee, Won-Ju [7 ,8 ]
机构
[1] Korea Maritime & Ocean Univ, Grad Sch, 727 Taejong Ro, Busan 49112, South Korea
[2] Korea Maritime & Ocean Univ, Div Marine Syst Engn, 727 Taejong Ro, Busan 49112, South Korea
[3] Korea Inst Maritime & Fisheries Technol, 367 Haeyang Ro, Busan 49111, South Korea
[4] Hyundai Global Serv, Machinery Serv Dept, 79 Centum Jungang Ro, Busan 48058, South Korea
[5] Korea Maritime & Ocean Univ, Div Marine IT, 727 Taejong Ro, Busan 49112, South Korea
[6] Ho Chi Minh City Univ Transport, Maritime Acad, 2 Vo Oanh Str, Ho Chi Minh 717400, Vietnam
[7] Korea Maritime & Ocean Univ, Div Marine Engn, 727 Taejong Ro, Busan 49112, South Korea
[8] Korea Maritime & Ocean Univ, Maritime AI Convergence, 727 Taejong Ro, Busan 49112, South Korea
基金
新加坡国家研究基金会;
关键词
natural gas (NG); dual-fuel (DF) engine; combustion; emission; numerical simulation; computational fluid dynamics (CFD);
D O I
10.3390/en14051342
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This paper presents research on the combustion and emission characteristics of a four-stroke Natural gas-Diesel dual-fuel marine engine at full load. The AVL FIRE R2018a (AVL List GmbH, Graz, Austria) simulation software was used to conduct three-dimensional simulations of the combustion process and emission formations inside the engine cylinder in both diesel and dual-fuel mode to analyze the in-cylinder pressure, temperature, and emission characteristics. The simulation results were then compared and showed a good agreement with the measured values reported in the engine's shop test technical data. The simulation results showed reductions in the in-cylinder pressure and temperature peaks by 1.7% and 6.75%, while NO, soot, CO, and CO2 emissions were reduced up to 96%, 96%, 86%, and 15.9%, respectively, in the dual-fuel mode in comparison with the diesel mode. The results also show better and more uniform combustion at the late stage of the combustions inside the cylinder when operating the engine in the dual-fuel mode. Analyzing the emission characteristics and the engine performance when the injection timing varies shows that, operating the engine in the dual-fuel mode with an injection timing of 12 crank angle degrees before the top dead center is the best solution to reduce emissions while keeping the optimal engine power.
引用
收藏
页数:28
相关论文
共 46 条
[1]  
AVL FIRE, 2018, SPRAY MOD US MAN
[2]  
AVL FIRE, 2018, COMB MOD US MAN
[3]  
AVL FRIE®, 2018, EM MOD US MAN
[4]  
Baulch DL, 1974, Berichte der Bunsengesellschaft fur physikalische Chemie, V78, P212
[5]  
Beale JC, 1999, ATOMIZATION SPRAY, V9, P623, DOI 10.1615/AtomizSpr.v9.i6.40
[6]  
Blauvens J., 1977, P 16 S INT COMB
[7]  
Burnett RT, 1997, ENVIRON HEALTH PERSP, V105, P614, DOI 10.2307/3433607
[8]  
Candel S., 1990, Recent Advances in Combustion modelling, P19, DOI DOI 10.1142/9789814293778_0002
[9]   The thermodynamic characteristics of high efficiency, internal-combustion engines [J].
Caton, Jerald A. .
ENERGY CONVERSION AND MANAGEMENT, 2012, 58 :84-93
[10]  
Ding C. W., 2016, ENERGY POWER ENG, V8, P92, DOI [10.4236/epe.2016. 82008, DOI 10.4236/EPE.2016.82008]