首页> 外文会议>International Conference on Mechanical and Manufacturing Engineering >Low and High Purity Methanol Effect on Performance and Smoke Emission of Direct Injection Diesel Engine with Cooled EGR Fueled by Diesel Fuel and Jatropha Oil Blends
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Low and High Purity Methanol Effect on Performance and Smoke Emission of Direct Injection Diesel Engine with Cooled EGR Fueled by Diesel Fuel and Jatropha Oil Blends

机译:低纯度甲醇对直喷柴油机的性能和烟雾发射,通过柴油燃料和麻风树油混合燃料的冷却EGR

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The aim of this study is to experimentally investigate an effect of low and high purity methanol on a performance and smoke emission of diesel engine with cooled EGR system fueled by diesel fuel and jatropha oil blend. A four-stroke water cooled direct injection (DI) diesel engine with cooled EGR system was used in this work. The diesel engine was fueled by diesel fuel, jatropha oil and low (LPM) or high (HPM) purity methanol blends at the ratio of 100/0/0, 75/20/5, 70/20/10 and 65/20/15% on volume basis respectively for the variation of engine loads in the range of 25 to 100% with 25% increments at 2000 rpm. Each load for every fuel blend was given by the 0% and 16.5% EGR rates. The results are found that the brake power for diesel engine fueled by diesel fuel, jatropha oil and LPM is approximately 8% lower than that of diesel engine fueled with the neat diesel, while it increases to 5.24% at the low load and reduces to 6.11% at the high load by injecting HPM in the fuel blends. At the same case, BSFC increases approximately 4.5% by injecting LPM in the fuel blends. The brake thermal efficiency rises approximately by 3.3% with LPM in the fuel blends, whereas it increases approximately 6% by injecting HPM. The smoke opacity reduces approximately by 70% with LPM or HPM in the fuel blends.
机译:本研究的目的是通过用柴油燃料和麻风树油混合物推动的冷却EGR系统,通过通过柴油机燃料的柴油发动机的性能和烟雾发射来实验研究低纯度甲醇对柴油发动机的性能和烟雾发射。在这项工作中使用了一种具有冷却EGR系统的四冲水水冷直喷(DI)柴油发动机。柴油发动机由柴油燃料,麻风树脂和低(LPM)或高(HPM)纯度甲醇混合物以100/0/0,75 / 20/5,70 / 20/10和65/20 /分别为15%的体积基础,用于发动机载荷的变化,在25%至100%的范围内,2000 rpm增量25%。每种燃料混合物的每个负载由0%和16.5%的EGR速率给出。结果发现,由柴油燃料,麻风树油和LPM推动的柴油发动机的制动动力比用整个柴油燃料的柴油发动机低约8%,而在低负荷下增加到5.24%,减少到6.11通过在燃料混合物中注入HPM来在高负荷下的%。在相同的情况下,通过在燃料混合物中注射LPM,BSFC增加了大约4.5%。在燃料混合物中,制动热效率大约上升了3.3%,随着LPM,通过注射HPM,它增加了大约6%。燃料不透明度在燃料混合物中用LPM或HPM降低大约70%。

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