首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Experimental Validation of a Three-Component Surrogate for Sasol-lsoparaffinic Kerosene in Single Cylinder Diesel Engine and Ignition Quality Tester
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Experimental Validation of a Three-Component Surrogate for Sasol-lsoparaffinic Kerosene in Single Cylinder Diesel Engine and Ignition Quality Tester

机译:单缸柴油发动机Sasol-异链烷烃煤油三组分替代物和点火质量测试仪的实验验证

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摘要

Surrogates development important to extensively investigate the combustion behavior of fuels. Development of comprehensive surrogates has been focusing on matching chemical and physical properties of their target fuel to mimic its atomization, evaporation, mixing, and auto-ignition behavior. More focus has been given to matching the derived cetane number (DCN) as a measure of the auto-ignition quality. In this investigation, we carried out experimental validation of a three-component surrogate,for Sasol-Isoparaffinic Kerosene (IPK) in ignition quality tester (IQT) and in an actual diesel engine. The surrogate fuel is composed of three components (46% iso-cetane, 44% decalin, and 10% n-nonane on a volume basis). The IQT experiments were conducted as per ASTM D6890-10a. The engine experiments were conducted at 15001pm, two engine loads, and two injection timings. Analysis of ignition delay (ID), peak pressure, peak rate of heat release (RHR), and other combustion phasing parameters showed a closer match in the IQT than in the diesel engine. Comparison between the surrogate combustion behavior in the diesel engine and IQT revealed that matching the DCN of the surrogate to its respective target fuel did not result in the same negative temperature coefficient (NTC) profile-which led to unmatched combustion characteristics in the high temperature combustion (HTC) regimes, despite the same auto-ignition and low temperature combustion (LTC) profiles. Moreover, a comparison between the combustion behaviors of the two fuels in the IQT is not consistent with the comparison in the diesel engine, which suggests that the surrogate validation in a single-cylinder diesel engine should be part of the surrogate development methodology, particularly for low ignition quality fuels.
机译:替代开发对于广泛研究燃料的燃烧行为很重要。全面替代产品的开发一直致力于使目标燃料的化学和物理性质相匹配,以模仿其雾化,蒸发,混合和自燃行为。已经更加关注匹配派生的十六烷值(DCN)作为自燃质量的量度。在这项研究中,我们在点火质量测试仪(IQT)和实际柴油发动机中对Sasol-异链烷烃煤油(IPK)进行了三组分替代物的实验验证。替代燃料由三部分组成(按体积计为46%的异十六烷,44%的十氢化萘和10%的正壬烷)。 IQT实验按照ASTM D6890-10a进行。发动机实验是在15001pm,两个发动机负载和两个喷射正时进行的。对点火延迟(ID),峰值压力,放热峰值速率(RHR)和其他燃烧定相参数的分析显示,IQT与柴油发动机的匹配更紧密。柴油机和IQT中替代燃烧行为的比较表明,将替代DCN与其各自的目标燃料匹配不会导致相同的负温度系数(NTC)曲线,这导致高温燃烧中的燃烧特性无与伦比(HTC)模式,尽管自燃和低温燃烧(LTC)曲线相同。此外,IQT中两种燃料的燃烧行为之间的比较与柴油发动机中的比较不一致,这表明单缸柴油机中的替代物验证应成为替代物开发方法的一部分,特别是对于点火质量低的燃料。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2018年第8期|082801.1-082801.11|共11页
  • 作者单位

    Wayne State Univ, Mech Engn, 5050 Anthony Wayne Dr,Suite 2100, Detroit, MI 48202 USA;

    Wayne State Univ, Mech Engn, 5050 Anthony Wayne Dr,Suite 2100, Detroit, MI 48202 USA;

    Wayne State Univ, Mech Engn, 5050 Anthony Wayne Dr,Suite 2100, Detroit, MI 48202 USA;

    Wayne State Univ, Mech Engn, 5050 Anthony Wayne Dr,Suite 2100, Detroit, MI 48202 USA;

    US Army, RDECOM TARDEC, 6305 E 11 Mile Rd, Warren, MI 48092 USA;

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