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Multi-Component Model of Diesel Sprays Under High Injection Pressure

Multi-Component Model of Diesel Sprays Under High Injection Pressure
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摘要 The combustion efficiency of a diesel engine depends not only on spray characteristics but also on fuel-air mixing characteristics. Based on the original spray model, a new spray model is established in this paper to accurately predict the diesel spray, and then a multi-component evaporation model is added into it. The model takes the influence of component concentration gradient and species on its evaporation rate in the liquid phase into account. This paper studies the spray characteristics(spray penetration, spray angle and spray morphology) and fuel-air mixing characteristics(spray area, spray volume and air entrainment mass) using the spray model, and the results are compared with the experimental results. The comparison shows that the simulated spray penetration and spray angle are close to the experimental results with the average deviations less than 3%. Moreover, this paper studies the spray area, spray volume and air entrainment using empirical formula under different conditions. And the maximum deviations of the spray volume, spray area and air entrainment mass are less than 5% as compared with the test values. Overall, this spray model can predict the diesel spray characteristics and fuel-air mixing characteristics under high injection pressure accurately. The combustion efficiency of a diesel engine depends not only on spray characteristics but also on fuel-air mixing characteristics. Based on the original spray model, a new spray model is established in this paper to accurately predict the diesel spray, and then a multi-component evaporation model is added into it. The model takes the influence of component concentration gradient and species on its evaporation rate in the liquid phase into account. This paper studies the spray characteristics(spray penetration, spray angle and spray morphology) and fuel-air mixing characteristics(spray area, spray volume and air entrainment mass) using the spray model, and the results are compared with the experimental results. The comparison shows that the simulated spray penetration and spray angle are close to the experimental results with the average deviations less than 3%. Moreover, this paper studies the spray area, spray volume and air entrainment using empirical formula under different conditions. And the maximum deviations of the spray volume, spray area and air entrainment mass are less than 5% as compared with the test values. Overall, this spray model can predict the diesel spray characteristics and fuel-air mixing characteristics under high injection pressure accurately.
作者 王筱蓉 王继刚 金张良 任贵龙 马虎 WANG Xiaorong;WANG Jigang;JIN Zhangliang;REN Guilong;MA Hu(School of Mechanical Engineering, Jiangsu University of Science and Technology, Zhenjiang 212003, Jiangsu, China;School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China)
出处 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第2期264-268,共5页 上海交通大学学报(英文版)
基金 the Postgraduate Research & Practice Innovation Program of Jiangsu Province(No.SJCX17 0597) the Postgraduate Research & Practice Innovation Program of Jiangsu University of Science & Technology(No.YSJ16S-05) the National Natural Science Foundation of China(No.51606100)
关键词 fuel-air mixing characteristics multi-component evaporation model diesel spray equivalence ratio fuel-air mixing characteristics, multi-component evaporation model, diesel spray, equivalence ratio
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