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Fuel-Substitution Method for Investigating the Kinetics of Low Volatility Fuels under Enginelike Operating Conditions

机译:研究类发动机工况下低挥发性燃料动力学的燃料替代方法

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摘要

The combustion properties of two low-volatility diesel fuels were characterized under engine-relevant conditions using a new fuel-substitution strategy that minimizes biases associated with unknown boundary conditions. The engine is operated in a homogeneous charge compression ignition mode with port fuel injection of the primary reference fuels, n-heptane and isooctane, and an upstream prevaporizer for the diesel-like heavy test fuels. The engine is first operated on the primary reference fuels (PRFs). The intake conditions are then fixed, and the heavy fuel is introduced in increasing amounts while the mass of port-injected fuel is reduced to maintain engine load and the n-heptane-to-isooctane ratio is adjusted to maintain constant combustion phasing. It is shown that this provides nearly constant in-cylinder thermodynamic and boundary conditions. The baseline condition, which uses well-characterized fuels, can be used to adjust the trapped-gas initial conditions and the heat transfer rates of a computational model, but these parameters do not change with the subsequent addition of heavy test fuel. The test fuel combustion characteristics are described in terms of the PRF number of the port-injected mixture. A simple linear blending method was found to adequately represent the heavy test fuel in terms of an effective PRF number. Testing under different operating conditions showed no significant change in the effective PRF number of the test fuels. The fuels investigated in this study were F-76, a high-sulfur-content diesel fuel, and HRD, a hydroprocessed renewable diesel fuel composed primarily of alkanes. Effective PRF numbers of 35 and -25 were found for F-76 and HRD, respectively.
机译:使用一种新的燃料替代策略,在与发动机相关的条件下表征了两种低挥发性柴油的燃烧特性,该策略将与未知边界条件相关的偏差降到最低。发动机在均质充量压缩点火模式下运行,其中主要参考燃料正庚烷和异辛烷的进气口燃料喷射,以及用于柴油样重质测试燃料的上游预蒸发器。首先使用主要参考燃料(PRF)运转发动机。然后固定进气条件,并以增加的量引入重燃料,同时减少进气口喷射燃料的质量以维持发动机负载,并调整正庚烷与异辛烷之比以维持恒定的燃烧相位。结果表明,这提供了几乎恒定的缸内热力学和边界条件。使用表征良好的燃料的基准条件可用于调整捕获气体的初始条件和计算模型的传热速率,但是这些参数不会随随后添加的重度测试燃料而改变。测试燃料的燃烧特性以进气口混合气的PRF数描述。发现一种简单的线性混合方法就有效的PRF数而言足以代表重试燃料。在不同运行条件下进行的测试表明,测试燃料的有效PRF数量没有明显变化。在这项研究中研究的燃料是高硫含量柴油F-76和主要由烷烃组成的加氢处理可再生柴油HRD。 F-76和HRD的有效PRF数分别为35和-25。

著录项

  • 来源
    《Energy & fuels》 |2016年第2期|1400-1406|共7页
  • 作者单位

    Univ Wisconsin, Engine Res Ctr, 1500 Engn Dr, Madison, WI 53706 USA;

    Univ Wisconsin, Engine Res Ctr, 1500 Engn Dr, Madison, WI 53706 USA;

    Univ Wisconsin, Engine Res Ctr, 1500 Engn Dr, Madison, WI 53706 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
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