Effects of Plateau Environment on Combustion and Emission Characteristics of a Plateau High-Pressure Common-Rail Diesel Engine with Different Blending Ratios of Biodiesel

高度(三角形) 柴油 燃烧 高原(数学) 烟灰 质量分数 柴油机 质量浓度(化学) 环境科学 生物柴油 材料科学 分数(化学) 高海拔对人类的影响 共轨 燃料质量分数 化学 分析化学(期刊) 大气科学 环境化学 气象学 汽车工程 复合材料 燃烧室 地质学 物理 工程类 色谱法 几何学 蒸汽锁 有机化学 物理化学 数学 数学分析 催化作用
作者
Jia Gao,Guoshuai Tian,Daming Zhang
出处
期刊:Energies [MDPI AG]
卷期号:15 (2): 550-550 被引量:6
标识
DOI:10.3390/en15020550
摘要

Taking a plateau high-pressure common-rail diesel engine as the research model, a model was established and simulated by AVL FIRE according to the structural parameters of a diesel engine. The combustion and emission characteristics of D, B20, and B50 diesel engines were simulated in the plateau atmospheric environment at 0 m, 1000 m, and 2000 m. The calculation results show that as the altitude increased, the peak in-cylinder pressure and the cumulative heat release of diesel decreased with different blending ratios. When the altitude increased by 1000 m, the cumulative heat release was reduced by about 5%. Furthermore, the emission trend of NO, soot, and CO was to first increase and then decrease. As the altitude increased, the mass fraction of NO emission decreased. As the altitude increased, the mass fractions of soot and CO increased. Additionally, when the altitude was 0 m and 1000 m, the maximum temperature, the mass fraction of OH, and the fuel–air ratio of B20 were higher and more uniform. When the altitude was 2000 m, the maximum temperature, the mass fraction of OH, and the fuel–air ratio of B50 were higher and more uniform. Lastly, as the altitude increased, the maximum combustion temperature of D and B20 decreased, and combustion became more uneven. As the altitude increased, the maximum combustion temperature of B50 increased, and the combustion became more uniform. As the altitude increased, the fuel–air ratio and the mass fractions of OH and NO decreased. When the altitude increased, the soot concentration increased, and the distribution area was larger.

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