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Effects of Heat of Vaporization and Octane Sensitivity on Knock-Limited Spark Ignition Engine Performance

机译:汽化和辛烷值敏感性热的影响 - 限制火花点火发动机性能

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Knock-limited loads for a set of surrogate gasolines all having nominal 100 research octane number (RON), approximately 11 octane sensitivity (S), and a heat of vaporization (HOV) range of 390 to 595 kJ/kg at 25°C were investigated. A single-cylinder spark-ignition engine derived from a General Motors Ecotec direct injection (DI) engine was used to perform load sweeps at a fixed intake air temperature (IAT) of 50°C, as well as knock-limited load measurements across a range of IATs up to 90°C. Both DI and pre-vaporized fuel (supplied by a fuel injector mounted far upstream of the intake valves and heated intake runner walls) experiments were performed to separate the chemical and thermal effects of the fuels’ knock resistance. The DI load sweeps at 50°C intake air temperature showed no effect of HOV on the knock-limited performance. The data suggest that HOV acts as a thermal contributor to S under the conditions studied. Measurement of knock-limited loads from the IAT sweeps for DI at late combustion phasing showed that a 40 vol% ethanol (E40) blend provided additional knock resistance at the highest temperatures, compared to a 20 vol% ethanol blend and hydrocarbon fuel with similar RON and S. Using the pre-vaporized fuel system, all the high S fuels produced nearly identical knock-limited loads at each temperature across the range of IATs studied. For these fuels RON ranged from 99.2 to 101.1 and S ranged from 9.4 to 12.2, with E40 having the lowest RON and highest S. The higher knock-limited loads for E40 at the highest IATs examined were consistent with the slightly higher S for this fuel, and the lower engine operating condition K values arising from use of this fuel. The study highlights how fuel HOV can affect the temperature at intake valve closing, and consequently the pressure-temperature history of the end gas leading to more negative values of K, thereby enhancing the effect of S on knock resistance.
机译:用于一组替代汽油的爆震限制载荷,均具有标称100研究辛烷值(RON),大约11个辛烷敏感性,以及25℃的390至595 kJ / kg的汽化热(HOV)调查。源自通用电机EcoTec直接喷射(DI)发动机的单缸火花点火发动机用于在50°C的固定进气温(IAT)处执行负荷扫描,以及截止的爆震限制负载测量IAT的范围高达90°C。 DI和预汽化燃料(由安装在进气门的上游的燃料喷射器和加热的进气壁)进行实验,以分离燃料抗冲击性的化学和热效果。在50°C进气温下扫描的DI负载扫描显示出HOV对截止的性能没有影响。数据表明,在研究的条件下,HOV充当S的热贡献者。来自IAT的爆震限制载荷在后期燃烧相位下扫描DI,显示了40体积%的乙醇(E40)混合物在最高温度下提供了额外的抗抗震性,而20体积%的乙醇混合物和具有类似RON的烃燃料相比和S.使用预汽化的燃料系统,所有高的燃料在所研究的IAT系列的每个温度下产生几乎相同的截止载荷。对于这些燃料,RON的范围为99.2至101.1,S的范围为9.4至12.2,具有最低的RON和最高S的E40。在所检查的最高IAT中,E40的较高敲击限制负载与此燃料的略高并且使用这种燃料产生的较低发动机操作条件k值。该研究突出了燃料HOV如何影响进气门关闭时的温度,因此最终气体的压力温度历史导致k的更负值,从而提高了S对抗抗蚀性的影响。

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