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Influence of the Methanol Proportion on the Combustion Characteristics of Methanol-Biodiesel -F-T Diesel Blended Fuel

机译:甲醇比例对甲醇 - 生物柴油-F-T柴油混合燃料燃烧特性的影响

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The F-T diesel made from coal by Fischer-Tropsch synthesis (F-T) can be used as a clean alternative fuel of diesel engine. To alleviate the drawback of high cost and low viscosity of F-T diesel, the Methanol-Biodiesel -F-T diesel multiple fuel (MBFT) was prepared by adding low-cost methanol and high-viscosity biodiesel as modifiers. Considering the immiscibility between alcohols and hydrocarbons, this paper carried out a series of stability tests and found that n-decanol was the optimum co-solvent of MBFT. The MBFTs blended by biodiesel with the volume fraction of 10% (10% vol.) and methanol with varying proportions of 0%, 5%, 10% and 15% vol. were denoted as M0, M5, M10 and M15, respectively. The increasing methanol proportion caused the increase of the oxygen content in the blended fuels and the reduction of heat value, surface tension and cetane number. The influence of methanol proportion on combustion characteristics of turbo-charging engine was studied. The study indicates that with the increase of the proportion of methanol, the ignition delay period of MBFT is prolonged 17.3~37.1% while the normal combustion period and post combustion period is shortened 7.5~16.0% and 28.3%~49.0%, respectively; the peak value of heat release rate is increased 8.3%~32.7% and the peak value phase is delayed 20.8%~51.6%, the peak value of pressure rise rate also presents this trend. The combustion pressure oscillation amplitude increases 10.8%~60.0% with the increase of methanol ratio, and the peak value phase of pressure oscillation is delayed 23.5%~134.6%.
机译:由Fischer-Tropsch合成(F-T)制成的F-T柴油可以用作柴油发动机的清洁替代燃料。为了减轻高成本和低粘度的F-T柴油的缺点,通过加入低成本甲醇和高粘度生物柴油作为改性剂,制备甲醇 - 生物柴油-F-T柴油多燃料(MBFT)。考虑到醇和烃之间的不混溶性,本文进行了一系列稳定性试验,发现N-癸醇是MBFT的最佳共溶剂。由生物柴油混合的MBFTS,体积分数为10%(10%Vol.)和甲醇,其不同比例为0%,5%,10%和15%Vol。表示为M0,M5,M10和M15。甲醇比例的增加引起了混合燃料中的氧含量和热值,表面张力和十六烷数量的降低。研究了甲醇比例对涡轮充电发动机燃烧特性的影响。该研究表明,随着甲醇比例的增加,MBFT的点火延迟时间延长了17.3〜37.1%,同时缩短了正常的燃烧期和后燃烧时间分别为7.5〜16.0%和28.3%〜49.0%;热释放速率的峰值增加了8.3%〜32.7%,峰值相延迟20.8%〜51.6%,压力升高率的峰值也呈现了这一趋势。随着甲醇比的增加,燃烧压力振荡幅度增加了10.8%〜60.0%,压力振荡的峰值阶段延迟23.5%〜134.6%。

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