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Sensitivity Analysis of Heavy Fuel Oil Spray and Combustion under Low-Speed Marine Engine-Like Conditions

机译:低速船用发动机条件下重燃油喷雾和燃烧的敏感性分析

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On account of their high power, thermal efficiency, good reliability, safety, and durability, low-speed two-stroke marine diesel engines are used as the main drive devices for large fuel and cargo ships. Most marine engines use heavy fuel oil (HFO) as the primary fuel, however, the physical and chemical characteristics of HFO are not clear because of its complex thermophysical properties. The present study was conducted to investigate the effects of fuel properties on the spray and combustion characteristics under two-stroke marine engine-like conditions via a sensitivity analysis. The sensitivity analysis of fuel properties for non-reacting and reacting simulations are conducted by comparing two fuels having different physical properties, such as fuel density, dynamic viscosity, critical temperature, and surface tension. The performances of the fuels are comprehensively studied under different ambient pressures, ambient temperatures, fuel temperatures, and swirl flow conditions. From the results of non-reacting simulations of HFO and diesel fuel properties in a constant volume combustion chamber, it can be found that the increase of the ambient pressure promotes fuel evaporation, resulting in a reduction in the steady liquid penetration of both diesel and HFO; however, the difference in the vapor penetrations of HFO and diesel reduces. Increasing the swirl flow significantly influences the atomization of both HFO and diesel, especially the liquid distribution of diesel. It is also found that the ambient temperature and fuel temperature have the negative effects on Sauter mean diameter (SMD) distribution. For low-speed marine engines, the combustion performance of HFO is not sensitive to activation energy in a certain range of activation energy. At higher engine speed, the difference in the effects of different activation energies on the in-cylinder pressure increases. The swirl flow in the cylinder can significantly promote fuel evaporation and reduce soot production.
机译:由于其高功率,热效率,良好的可靠性,安全性和耐用性,低速二冲程船用柴油机被用作大型燃料和货船的主要驱动装置。大多数船用发动机都使用重质燃料油(HFO)作为主要燃料,但是由于其复杂的热物理性质,HFO的物理和化学特性尚不清楚。本研究旨在通过敏感性分析来研究燃油特性对两冲程船用发动机条件下喷雾和燃烧特性的影响。通过比较具有不同物理特性(例如燃料密度,动态粘度,临界温度和表面张力)的两种燃料,可以进行非反应和反应模拟的燃料特性敏感性分析。在不同的环境压力,环境温度,燃料温度和旋流条件下,对燃料的性能进行了全面研究。从恒定容积燃烧室内的HFO和柴油燃料特性的非反应模拟结果可以发现,环境压力的增加会促进燃料蒸发,从而导致柴油和HFO的稳定液体渗透减少;但是,HFO和柴油的蒸汽渗透率差异减小了。涡流的增加显着影响HFO和柴油的雾化,尤其是柴油的液体分布。还发现环境温度和燃料温度对索特平均直径(SMD)分布有负面影响。对于低速船用发动机,HFO的燃烧性能在一定范围的活化能范围内对活化能不敏感。在较高的发动机转速下,不同的激活能量对缸内压力的影响之差增大。气缸中的涡流可显着促进燃料蒸发并减少烟灰的产生。

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