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Combustion and Emission Characteristics of a Heavy Duty Engine Fueled with Two Ternary Blends of N-Heptane/Iso-Octane and Toluene or Benzaldehyde

机译:重型发动机的燃烧和排放特性燃料,燃料,用两种三庚烷/异辛烷和甲苯或苯甲醛(苯甲酸)

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In this work, the influences of aromatics on combustion and emission characteristics from a heavy-duty diesel engine under various loads and exhaust gas recirculation (EGR) conditions are investigated. Tests were performed on a modified single-cylinder, constant-speed and direct-injection diesel engine. An engine exhaust particle sizer (EEPS) was used in the experiments to measure the size distribution of engine-exhaust particle emissions in the range from 5.6 to 560 nm. Two ternary blends of n-heptane, iso-octane with either toluene or benzaldehyde denoted as TRF and CRF, were tested, diesel was also tested as a reference. Test results showed that TRF has the longest ignition delay, thus providing the largest premixed fraction which is beneficial to reduce soot. However, as the load increases, higher incylinder pressure and temperature make all test fuels burn easily, leading to shorter ignition delays and more diffusion combustion. For each test fuel, the particulate number concentration in nucleation mode decreased with the increase of EGR rate, while more particles in accumulation mode were generated. Moreover, compared with TRF and CRF, diesel produces the most mass and number concentrations of particulate matter.
机译:在这项工作中,研究了芳烃对各种载荷和废气再循环(EGR)条件下的重型柴油发动机的燃烧和排放特性的影响。在改进的单缸,恒定速度和直喷式柴油发动机上进行测试。在实验中使用发动机排气粒子Sizer(EEPS)以测量发动机排气颗粒排放的尺寸分布在5.6至560nm的范围内。测试了二庚烷的三元共混物,用甲苯或苯甲醛的异辛烷为TRF和CRF,还测试柴油作为参考。测试结果表明,TRF具有最长的点火延迟,从而提供最大的预混合分数,这些部分有利于减少烟灰。然而,随着负荷增加,提高血小板压力和温度使所有测试燃料容易燃烧,导致点火延迟和更多的扩散燃烧。对于每个测试燃料,核切割模式中的颗粒数浓度随着EGR速率的增加而降低,而产生的累积模式中的颗粒较多。此外,与TRF和CRF相比,柴油产生了颗粒物质的质量和数量浓度。

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