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Evaluation of Knock Behavior for Natural Gas - Gasoline Blends in a Light Duty Spark Ignited Engine

机译:天然气爆震行为的评价 - 汽油混合在轻型火花点火发动机

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The compression ratio is a strong lever to increase the efficiency of an internal combustion engine. However, among others, it is limited by the knock resistance of the fuel used. Natural gas shows a higher knock resistance compared to gasoline, which makes it very attractive for use in internal combustion engines. The current paper describes the knock behavior of two gasoline fuels, and specific incylinder blend ratios with one of the gasoline fuels and natural gas. The engine used for these investigations is a single cylinder research engine for light duty application which is equipped with two separate fuel systems. Both fuels can be used simultaneously which allows for gasoline to be injected into the intake port and natural gas to be injected directly into the cylinder to overcome the power density loss usually connected with port fuel injection of natural gas. Adding natural gas at wide open throttle helps to reduce knock mitigating measures and increases the efficiency and power density compared to the other gasoline type fuels with lower knock resistance. The used methods, knock intensity and number of pressure waves, do not show significant differences in knock behavior for the natural gas - gasoline blends compared to the gasoline type fuels. A knock integral was used to describe the knock onset location of the fuels tested. Two different approaches were used to determine the experimental knock onset and were compared to the knock onset delivered by the knock integral (chemical knock onset). The gasoline type fuels show good agreement between chemical and experimental knock onset. However, the natural gas - gasoline blends show higher discrepancies comparing chemical and experimental knock onset.
机译:压缩比是强杆,以提高内燃机的效率。然而,在其他之外,它受到所用燃料的抗抗蚀性的限制。与汽油相比,天然气显示出更高的抗抗抗震,这使得它在内燃机中使用非常有吸引力。目前纸张描述了两种汽油燃料的爆震行为,以及具有汽油燃料和天然气之一的特定的Incylinder混合比。用于这些研究的发动机是用于轻型型应用的单个气缸研究发动机,其配备有两个单独的燃料系统。两种燃料可以同时使用,这允许汽油喷射到进气口和天然气中,以直接注入气缸中以克服通常与天然气的端口燃料喷射连接的功率密度损失。在宽开口节流阀上添加天然气有助于减少爆震减轻措施,并与具有较低抗抗震性的其他汽油型燃料相比增加效率和功率密度。与汽油型燃料相比,使用的方法,敲击强度和压力波的数量,对天然气 - 汽油混合物的爆震行为没有显着差异。爆震积分用于描述测试的燃料的爆震位置。使用两种不同的方法来确定实验爆震发作,并与爆震积分(化学爆震发作)输送的爆震发作进行比较。汽油型燃料在化学和实验爆震之间表现出良好的一致性。然而,天然气 - 汽油共混物显示比较化学和实验爆震发作的更高的差异。

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