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Comparative Study on Effect of Intake Pressure on Diesel and Biodiesel Low Temperature Combustion Characteristics in a Compression Ignition Engine

机译:进气压力对压缩点火发动机柴油和生物柴油低温燃烧特性影响的比较研究

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Owing to the presence of oxygen atoms in biodiesel, the use of this fuel in compression ignition (CI) engines has the advantage of reducing engine-out harmful emissions. In this context, biodiesel fuel can also be used to extend the low temperature combustion (LTC) regime because it inherently suppresses soot formation within the combustion chamber. Therefore, in this study, LTC characteristics of biodiesel were investigated in a single cylinder CI engine; the engine performance and emission characteristics with biodiesel and conventional petro-diesel fuels were evaluated and compared. A modulated kinetics (MK)-like approach was employed to realize LTC operation. The engine test results showed that LTC operation was achieved by retardation of the fuel injection timing. The results also showed that using biodiesel reduced smoke, THC, and CO emissions but increased NO_x emissions. The effects of the boost pressure and O_2 fraction on engine behavior in both conventional and LTC combustion regimes were examined, and the corresponding emission results are presented and discussed.
机译:由于在生物柴油中存在氧原子,使用这种燃料在压缩点火(CI)发动机中具有减少发动机出现的有害排放的优点。在这种情况下,生物柴油燃料也可用于延长低温燃烧(LTC)状态,因为它固有地抑制燃烧室内的烟灰地层。因此,在本研究中,在单个汽缸CI发动机中研究了生物柴油的LTC特性;评估和比较了具有生物柴油和传统的石油柴油燃料的发动机性能和发射特性。采用调制的动力学(MK) - 限制方法来实现LTC操作。发动机测试结果表明,LTC操作是通过延迟燃料喷射正时实现的。结果还表明,使用生物柴油减少烟雾,THC和CO排放,而是增加了NO_X排放。研究了升压压力和O_2分数对常规和LTC燃烧制度的发动机行为的影响,并介绍并讨论了相应的发射结果。

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