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INFLUENCE OF INJECTION PARAMETERS AND OPERATING CONDITIONS ON IGNITION AND COMBUSTION IN DUAL-FUEL ENGINES

机译:注射参数和操作条件对双燃料发动机点火和燃烧的影响

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Dual-Fuel (DF) engines offer great fuel flexibility since they can either run on gaseous or liquid fuels. In the case of Diesel pilot ignited DF-engines the main source of energy is provided by gaseous fuel, whereas the Diesel fuel acts only as an ignition source. Therefore, a proper autoignition of the pilot fuel is of utmost importance for combustion in DF-engines. However, autoignition of the pilot fuel suffers from lower compression temperatures of Miller or Atkinson valve timings. These valve timings are applied to increase efficiency and lower nitrogen oxide engine emissions. In order to improve the ignition, it is necessary to understand which parameters influence the ignition in DF-engines. For this purpose, experiments were conducted and the influence of parameters such as injection pressure, pilot fuel quantity, compression temperature and air-fuel equivalence ratio of the homogenous natural gas-air mixture were investigated. The experiments were performed on a periodically chargeable combustion cell using optical high-speed recordings and thermodynamic measurement techniques for pressure and temperature. The study reveals that the quality of the Diesel pilot ignition in terms of short ignition delay and a high number of ignited sprays significantly depends on the injection parameters and operating conditions. In most cases, the pilot fuel suffers from too high dilution due to its small quantity and long ignition delays. This results in a small number of ignited sprays and conse-quently leads to longer combustion durations. Furthermore, the experiments confirm that the natural gas of the background mixture influences the autoignition of the Diesel pilot oil.
机译:双燃料(DF)发动机提供极大的燃料柔韧性,因为它们可以在气体或液体燃料上运行。在柴油先导点燃的DF-发动机的情况下,通过气态燃料提供的主要能量来源,而柴油燃料仅作为点火源。因此,试点燃料的适当自燃对于DF-发动机中的燃烧至关重要。然而,飞行员燃料的自燃受米勒或阿特金森阀门定时的较低压缩温度。这些阀门定时用于提高效率和下氮氧化物发动机排放。为了改善点火,有必要了解哪些参数影响DF-发动机中的点火。为此目的,研究了实验,并研究了诸如喷射压力,先导燃料量,压缩温度和均匀天然气空气混合物的空气 - 燃料量的空气 - 燃料等效比的参数的影响。使用光学高速记录和热力学测量技术在定期充电的燃烧电池上进行实验,以及用于压力和温度的热力学测量技术。该研究表明,在短点火延迟和大量点火喷雾方面,柴油先导点火的质量显着取决于注射参数和操作条件。在大多数情况下,由于其少量和长点火延迟,导频燃料遭受太高的稀释度。这导致少量的点火喷雾,并导致更长的燃烧持续时间。此外,实验证实,背景混合物的天然气影响了柴油先导油的自燃。

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