杨淼,王志伟,辛晓菲,齐天,吴艺峰,雷廷宙.正丁醇/柴油调和燃料的蒸发雾化特性研究[J].内燃机工程,2017,38(4):68-73.
正丁醇/柴油调和燃料的蒸发雾化特性研究
Study on Evaporation-Atomization Characteristics of N-Butanol/Diesel Blended Fuel
DOI:
关键词:内燃机  正丁醇  柴油  调和燃料  三维模型  雾化特性  相关性
Key Words:IC engine  n-butanol  diesel  blended fuels  three dimensional numerical model  evaporation-atomization characteristics  correlation analysis
基金项目:国家自然科学基金青年科学基金项目(51506049)
作者单位
杨淼,王志伟,辛晓菲,齐天,吴艺峰,雷廷宙 1.河南省科学院 能源研究所有限公司郑州 450008
2.河南省生物质能源重点实验室郑州 450008
3.天津大学天津 300072 
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摘要:将正丁醇和柴油以一定比例进行调和,测定了燃料的运动黏度、馏程、密度、闭口闪点、十六烷值、热值等蒸发雾化特性,并根据试验数据及三维数值模拟,分析了燃料射流在内燃机燃烧室内的雾化液滴直径、喷雾穿透距离及射流的湍流动能和耗散率,并进行了雾化特性之间的相关性分析。研究结果表明:调和燃料的蒸馏特性中10%馏点出现大幅提前,95%馏点相差不大,密度、低热值与掺混比例呈现线性下降趋势,运动黏度、闭口闪点、十六烷值在掺入少量正丁醇时下降明显,随着掺混比增大下降趋势趋于平缓。雾化特性的雾化液滴直径和湍流动能随掺混比例增加呈现减小趋势,而射流的高速扩展区面积及平均耗散率增大。蒸发雾化特性中运动黏度、密度和50%蒸馏点对燃料的雾化结果影响较大,而雾化结果中的液滴直径受燃料特性的影响较大,闭口闪点、十六烷值、热值对雾化的影响相对较弱。
Abstract:By mixing the n-butanol and diesel in a certain proportion into several blend fuels, the evaporation and atomization characteristics of the fuel, such as kinematic viscosity, distillation, density, closed-cup flash point, cetane number and heating value were measured, and the atomized droplet diameter, spray penetration distance, turbulent kinetic energy and dissipation rate of the fuel jet in the engine combustion chamber were analyzed based on the experimental date and three dimensional numerical simulation. The correlation between the evaporation-atomization characteristics was also analyzed. The results show that for the distillation characteristics, the distillation of 10% shows a significant advance with the increase of blend ratio, and the distillation of 95% has little difference. The density and heating value present a linear decline trend with blend ratio, and the kinematic viscosity, closed-cup flash point and cetane number decrease significantly at low blend ratio, but with the increase of blend ratio the downward trend begin to moderate. For the atomization characteristics, the atomized droplet diameter and turbulent kinetic energy show a downward trend with the increase of blend ratio while the average dissipation rate and high-speed expansion area of the fuel jet then increase. The kinematic viscosity, density and distillation of 50% are the main parameters affecting the atomization characteristics. The atomized droplet diameter is affected greatly by the fuel characteristics while the effect of closed-cup flash point, cetane number and heating value on atomization is relatively small.
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