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Efficient and Ecological Indicators of CI Engine Fuelled with Different Diesel and LPG Mixtures

机译:CI发动机的高效和生态指标用不同的柴油和LPG混合物燃料

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The effect of additionally fed LPG (Liquefied Petroleum Gas) on the energy and environmental performance of a compression ignition (CI) engine that operates of diesel fuel and the combustion process in it has been examined. In course of the experimental tests, it was found that additionally fed LPG reduced the volume of diesel fuel injected into the cylinder and caused a delay of its injection moment, thus affecting the combustible mixture combustion process and reducing the engine efficiency. Increasing the LPG concentration causes growing of the concentrations of partial combustion products, such as CO (carbon monoxide) and HC (hydrocarbons), in the exhaust gas and the smokiness of the latter; however, emissions of NOx (nitrogen oxides) and CO2 (carbon dioxide) decrease. If 20-60% LPG is added to diesel fuel and the fuel injection advance angle Θ is up to 16° CA (crank angle) bTDC (before the Top Dead Center), the engine efficiency is close to the efficiency of the one operating on diesel fuel, because combustion of the combustible mixture is improved and the concentration of the partial combustion products decreases; however, NOx concentration in the combustion products grows. The analysis of the combustion process upon applying AVL BOOST software showed that increasing the LPG concentration in the mixture of fuels and the injection advance angle Θ causes shortening of combustion duration and the ROHR (Rate of Heat Release) becomes more intensive. The latter cause increases mechanical and thermal loads of the engine details.
机译:已经研究了另外供给的LPG(液化石油气)上的能量和柴油燃料并在它的燃烧过程的操作的压缩点火(CI)发动机的环境性能的影响。在实验测试中的过程中,人们发现,另外供给LPG降低柴油燃料的体积喷射到气缸并造成其喷射时刻的延迟,从而影响了可燃混合物燃烧过程并降低了发动机的效率。增加LPG浓度的原因的部分燃烧产物,如CO(一氧化碳)和HC(碳氢化合物)浓度的增长,废气与后者的烟熏中;然而,NOx(氮氧化物)和CO 2(二氧化碳)减少排放。如果20-60%LPG被​​添加到柴油燃料和燃料喷射提前角Θ为至多16°CA(曲轴转角)bTDC的(上死点前),发动机效率接近一个操作上的效率柴油燃料,这是因为可燃混合物的燃烧性提高,部分燃烧产物的浓度降低;然而,在燃烧产物中NOx浓度增大。在施加AVL BOOST软件的燃烧过程的分析表明,在燃料的混合物和喷射提前角Θ导致缩短燃烧持续时间和ROHR(热释放率)变得更密集增加LPG浓度。后者导致增加的发动机细节机械和热负荷。

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