蓖麻油增强柴油-生物丁醇混合燃料压缩点火发动机性能评价

Q3 Engineering
Prabakaran B
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引用次数: 0

摘要

<div class="section abstract"><div class="htmlview段落">在柴油中添加生物丁醇作为燃料是大多数研究者的一项有吸引力的尝试。然而,生物丁醇的使用显著降低了最终混合物的基本性能。本研究是通过在基础混合物(含20%生物丁醇)中添加蓖麻油来提高性能,从而克服这一限制。这项研究首先加入蓖麻油(1%到10%)并测试其性能。通过比较柴油的性能,选择一种混合燃料。结果表明,生物丁醇与10%和15%蓖麻油的混合物是合适的,这种混合物可以产生更高的热效率,更低的氮氧化物和烟雾,当发动机在更高的制动功率下加油时,热量释放和压力更高。然而,这种混合物在低制动功率下产生更高的碳氢化合物和一氧化碳。该研究提高了生物丁醇混合物在发动机中长期使用的利用率,因为其运动粘度与柴油燃料相当,从而降低了发动机部件的摩擦。20BB80D COBD 10和20BB80D COBD 15分别产生8.3%和5.2%的EGT,以柴油参考值计算,EGT略低。使用20BB80D cobd10和20BB80D cobd15加油时的最大压力比柴油值低3.1%和1.8%,氮氧化物排放量明显低13.2%和3.4%,烟雾排放量高10.2%和3.2%(与柴油值相比)。此外,通过减少进口来节省化石燃料资源是非常重要的。使用此混合无需在引擎中进行任何修改。</div></div>
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Assessment of Performance of Compression Ignition Engine Fueled with Diesel-Bio Butanol Blends Enhanced with Castor Oil for Properties
Bio-butanol addition into diesel for utilization as fuel is an attractive attempt by most researchers. However, the usage of bio-butanol decreases the essential properties of the final blend significantly. This is study is to overcome this limitation by addition of castor oil into the base blend (containing 20% bio-butanol) by enhancing the properties. The study starts with the addition of castor oil (1% to 10%) and testing the properties. One blend is chosen by comparing the properties considering diesel fuel properties. The result depicts the blend of bio-butanol with 10% and 15% of castor oil is found suitable and this blend produces higher thermal efficiency, lower oxides of nitrogen and smoke, and higher heat release and pressure when fueled in the engine at higher brake powers. However, this blend produces higher hydrocarbons and carbon monoxide at low brake power. This study enhances the use of utilization of biobutanol blends in the engine for a long-term duration as the kinematic viscosity is competent to diesel fuel which lowers the friction in the parts of the engine. 20BB80D COBD 10 and 20BB80D COBD 15 produce 8.3% and 5.2% which are slightly low EGT by taking the reference values of diesel. Maximum pressure when fueling with 20BB80D COBD 10 and 20BB80D COBD 15 are low by 3.1% and 1.8% while comparing the diesel values Emissions of oxides of nitrogen are found to be significantly low by 13.2% and 3.4% and the smoke emissions are high by 10.2% and 3.2% (comparing diesel values). Also, the saving of fossil fuel resources through the decrease in imports is significant. There is no modifications necessary in the engine to use this blend.
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来源期刊
SAE Technical Papers
SAE Technical Papers Engineering-Industrial and Manufacturing Engineering
CiteScore
1.00
自引率
0.00%
发文量
1487
期刊介绍: SAE Technical Papers are written and peer-reviewed by experts in the automotive, aerospace, and commercial vehicle industries. Browse the more than 102,000 technical papers and journal articles on the latest advances in technical research and applied technical engineering information below.
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