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Diesel Fuel Property Effects on In-Cylinder Liquid Penetration Length: Impact on Smoke Emissions and Equivalence Ratio Estimates at the Flame Lift-Off Length

机译:柴油特性对缸内液体渗透长度的影响:对火焰释放长度处烟气排放和当量比估计的影响

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摘要

In this study, elastic scattering was employed to investigate diesel fuel property effects on the liquid length (i.e., the maximum extent of in-cylinder liquid-phase fuel penetration) using select research fuels: an ultralow-sulfur #2 diesel emissions-certification fuel (CF) and four of the Coordinating Research Council (CRC) Fuels for Advanced Combustion Engines (FACE) diesel fuels (F1, F2, F6, and F8). The experiments were performed in a single-cylinder heavy-duty optical compression-ignition engine under time-varying, noncombusting conditions to minimize the influence of chemical heat release on the liquid-length measurement. The FACE diesel fuel and CF liquid lengths under combusting conditions were also predicted using Siebers scaling law and pressure data from previous work using the same fuels at similar in-cylinder conditions. The objective was to observe if the liquid length under noncombusting or combusting conditions provides additional insights into the relationships among the main fuel properties (i.e., cetane number (CN), the 90 vol % distillation recovery temperature (T90), and aromatic content) and smoke emissions. Results suggest that liquid-length values are best correlated to fuel distillation characteristics measured with ASTM D2887 (simulated distillation method). This work also studied the relationship between liquid length and lift-off length, H (i.e., distance from the fuel-injector orifice exit to the position where the standing premixed autoignition zone stabilizes during mixing-controlled combustion). Two possible cases were identified based on the relative magnitudes of liquid length under combusting conditions (L-c) and H. The low-CN fuels are representative of the first case, L-c < H, in which the fuel is always fully vaporized at H. The high-CN fuels are mostly representative of the second case, L-c >= H, in which there is still liquid fuel at H. L-c >= H would suggest higher smoke emissions, but there is not enough evidence in this work to support a compounding effect of a longer liquid length on top of the aromatic-content effect on smoke emissions for fuels with similar CN, supporting previous findings in the literature that lift-off length plays a more important role than liquid-length on diesel combustion. At the same time, the experimental results suggest a decrease in the fuel-jet spreading angle, i.e., a decrease in the entrainment rate into the jet at and downstream of H, under combusting conditions, that is not accounted for in the model used to predict the values of phi(H). As a result, L-c may be of interest for accurate predictions of phi(H), especially for combustion strategies designed to lower in-cylinder soot by operating near or below the nonsooting phi(H)-value (i.e., phi(H)approximate to 2).
机译:在这项研究中,弹性散射被用于研究柴油燃料特性对液体长度(即,缸内液相燃料渗透的最大程度)的影响,使用了精选研究燃料:一种超低硫2号柴油排放认证燃料(CF)和先进燃烧发动机(FACE)柴油中的四种协调研究委员会(CRC)燃料(F1,F2,F6和F8)。实验是在时变,非燃烧条件下的单缸重型光学压缩点火发动机中进行的,以最大程度地减少化学放热对液体长度测量的影响。燃烧条件下的FACE柴油和CF液体长度也使用Siebers比例定律和以前工作中在相似的缸内条件下使用相同燃料的压力数据进行了预测。目的是观察在非燃烧或燃烧条件下的液体长度是否对主要燃料特性(即十六烷值(CN),90体积%的蒸馏回收温度(T90)和芳烃含量)之间的关系提供了更多的见解。烟雾排放。结果表明,液体长度值与使用ASTM D2887(模拟蒸馏方法)测得的燃料蒸馏特性最相关。这项工作还研究了液体长度和提离长度H之间的关系(即从喷油嘴出口到在混合控制的燃烧过程中站立的预混自燃区稳定的位置的距离)。根据在燃烧条件(Lc)和H条件下液体长度的相对大小,确定了两种可能的情况。低氯化物燃料代表第一种情况,Lc = H,在这种情况下,H处仍有液态燃料。Lc> = H表示烟气排放较高,但是这项工作中没有足够的证据支持复合更长的液体长度对具有类似CN的燃料的芳香含量对烟气排放的影响最大,这支持了文献中先前的发现:在柴油机燃烧中,提起长度比液体长度更重要。同时,实验结果表明,在燃烧条件下,燃料喷嘴的扩散角减小,即在H处和H处下游进入喷嘴的夹带率减小,这在以前的模型中没有考虑。预测phi(H)的值。结果,Lc可能对于phi(H)的准确预测很有意义,尤其是对于旨在通过在非sooting phi(H)值附近或以下运行(例如,phi(H)近似)来降低缸内烟灰的燃烧策略而言至2)。

著录项

  • 来源
    《Energy & fuels》 |2015年第novaadeca期|7689-7704|共16页
  • 作者单位

    W Virginia Univ, Morgantown, WV 26506 USA;

    Ford Motor Co, Dearborn, MI 48125 USA;

    Naval Res Lab, Washington, DC 20375 USA;

    Sandia Natl Labs, Combust Res Facil, Livermore, CA 94550 USA;

    Sandia Natl Labs, Combust Res Facil, Livermore, CA 94550 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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