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Effects of pilot diesel injection strategies on combustion and emission characteristics of dual-fuel engines at part load conditions

机译:引燃柴油机喷射策略对部分负荷条件下双燃料发动机燃烧和排放特性的影响

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摘要

The high level of UHC and CO emissions and poor performance are the Achilles heel of the dual-fuel engines at part load condition. In this research, the KIVA-3V code has been used to simulate, and analyze the combustion process of a dual-fuel diesel engine at part loads. To resolve these problems, the effects of three injection strategies including single and split injection timing, and the number of injector nozzle holes have been investigated on engine combustion and emission characteristics. Results indicate that by advancing the baseline injection timing of the diesel fuel from - 17 to - 70 CAD ATDC, the maximum pressure value increases from 46 bars to 84.2 bars, UHC and CO emissions decrease 98% and 99%, respectively, and NOx, emissions increase 339%. In the split injection, the optimum injection timings of pilot diesel fuel are -80 and -60 CAD ATDC for the first and second pulses. In addition, UHC and CO emissions decrease 98% and 99.9%, respectively. Finally, in the third strategy, with increasing injector nozzle holes, ignition and combustion start earlier, and the maximum pressure value, NOx, and CO emissions increase, but UHC emissions decrease.
机译:UHC和CO排放量高,性能差是部分负荷条件下双燃料发动机的致命弱点。在这项研究中,KIVA-3V代码已被用于模拟和分析双燃料柴油机在部分负荷下的燃烧过程。为了解决这些问题,已经研究了三种喷射策略的影响,包括单次喷射和分开喷射正时以及喷射器喷嘴孔的数量对发动机燃烧和排放特性的影响。结果表明,通过将柴油机的基准喷射正时从-17提高到-70 CAD ATDC,最大压力值从46 bar增加到84.2 bar,UHC和CO排放分别减少98%和99%,NOx,排放量增加339%。在分流喷射中,对于第一脉冲和第二脉冲,引燃柴油的最佳喷射正时为-80和-60 CAD ATDC。此外,UHC和CO排放量分别减少了98%和99.9%。最后,在第三个策略中,随着喷射器喷嘴孔的增加,点火和燃烧提前开始,并且最大压力值,NOx和CO排放量增加,但UHC排放量减少。

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