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首页> 外文期刊>Journal of combustion >Numerical and Experimental Investigation of Combustion and Knock in a Dual Fuel Gas/Diesel Compression Ignition Engine
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Numerical and Experimental Investigation of Combustion and Knock in a Dual Fuel Gas/Diesel Compression Ignition Engine

机译:双燃料气体/柴油压缩点火发动机燃烧和爆震的数值和实验研究

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摘要

Conventional compression ignition engines can easily be converted to a dual fuel mode of operation using natural gas as main fuel and diesel oil injection as pilot to initiate the combustion. At the same time, it is possible to increase the output power by increasing the diesel oil percentage. A detailed performance and combustion characteristic analysis of a heavy duty diesel engine has been studied in dual fuel mode of operation where natural gas is used as the main fuel and diesel oil as pilot. The influence of intake pressure and temperature on knock occurrence and the effects of initial swirl ratio on heat release rate, temperature-pressure and emission levels have been investigated in this study. It is shown that an increase in the initial swirl ratio lengthens the delay period for auto-ignition and extends the combustion period while it reduces NO_x. There is an optimum value of the initial swirl ratio for a certain mixture intake temperature and pressure conditions that can achieve high thermal efficiency and low NO_x emissions while decreases the tendency to knock. Simultaneous increase of intake pressure and initial swirl ratio could be the solution to power loss and knock in dual fuel engine.
机译:传统的压燃式发动机可以很容易地转换为双燃料运行模式,使用天然气作为主要燃料,并使用柴油喷射作为引燃剂来启动燃烧。同时,可以通过增加柴油百分比来增加输出功率。在以天然气为主要燃料,以柴油为先导的双燃料运行模式下,研究了重型柴油机的详细性能和燃烧特性分析。研究了进气压力和温度对爆震的影响以及初始涡流比对放热率,温度-压力和排放水平的影响。结果表明,初始涡流比的增加延长了自燃的延迟时间,并延长了燃烧时间,同时降低了NO_x。对于一定的混合物进气温度和压力条件,存在初始涡流比的最佳值,可以实现高热效率和低NO_x排放,同时降低爆震趋势。同时增加进气压力和初始涡流比可能是解决双燃料发动机动力损失和爆震的方法。

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  • 来源
    《Journal of combustion》 |2012年第2012期|504590.1-504590.10|共10页
  • 作者单位

    Department of Mechanical Engineering, Amirkabir University of Technology, 424 Hafez Avenue,P.O. Box 15875-4413, Tehran, Iran;

    Department of Mechanical Engineering, Amirkabir University of Technology, 424 Hafez Avenue,P.O. Box 15875-4413, Tehran, Iran;

    Department of Mechanical Engineering, K. N. Toosi University of Technology, Molla-Sadra, Pardis,P.O. Box 19395-1999, Tehran, Iran;

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