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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Combustion Characteristics of Methane Direct Injection Engine Under Various Injection Timings and Injection Pressures
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Combustion Characteristics of Methane Direct Injection Engine Under Various Injection Timings and Injection Pressures

机译:各种注射计时和注射压力下甲烷直喷发动机的燃烧特性

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摘要

The performance of a methane direct injection engine was investigated under various fuel injection timings and injection pressures. A single-cylinder optical engine was used to acquire in-cylinder pressure data and flame images. An outward-opening injector was installed at the center of the cylinder head. Experimental results showed that the combustion characteristics were strongly influenced by the end of injection (EOI) timing rather than the start of injection (SOI) timing. Late injection enhanced the combustion speed because the short duration between the end of injection and the spark-induced strong turbulence. The flame propagation speeds under various injection timings were directly compared using crank-angle-resolved sequential flame images. The injection pressure was not an important factor in the combustion; the three injection pressure cases of 0.5, 0.8, and 1.1 MPa yielded similar combustion trends. In the cases of late injection, the injection timings of which were near the intake valve closing (IVC) timing, the volumetric efficiency was higher (by 4%) than in the earlier injection cases. This result implies that the methane direct injection engine can achieve higher torque by means of the late injection strategy.
机译:在各种燃料喷射定时和注射压力下研究了甲烷直喷发动机的性能。单缸光学发动机用于获取缸内压力数据和火焰图像。向外开口注射器安装在气缸盖的中心。实验结果表明,燃烧特性受注射末(EOI)定时而不是注射的开始(SOI)时机的影响。晚注射增强了燃烧速度,因为注射末端与火花诱导的强湍流之间的短持续时间。使用曲柄角度分辨的顺序火焰图像直接比较各种喷射定时的火焰传播速度。注射压力不是燃烧中的重要因素; 0.5,0.8和1.1MPa的三个注射压力壳产生类似的燃烧趋势。在晚注射的情况下,其中的喷射定时在进气门关闭(IVC)时序附近,体积效率较高(达到4%),而不是早期注射案件。该结果意味着甲烷直接喷射发动机可以通过晚期注射策略实现更高的扭矩。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2017年第8期|082802.1-082802.8|共8页
  • 作者单位

    Department of Mechanical Convergence Engineering Graduate School of Hanyang University Seoul 04763 South Korea;

    Department of Mechanical Convergence Engineering Graduate School of Hanyang University Seoul 04763 South Korea;

    School of Mechanical and Automotive Engineering Gangneung-Wonju National University Gangwon 26403 South Korea;

    School of Mechanical Engineering Hanyang University 17 Haengdang-dong Seongdong-gu Seoul 04763 South Korea;

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