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An Investigation of Multi- Injection Strategies for a Dual-Fuel Pilot Diesel Ignition Engine at Low Load

机译:低负荷双燃料引燃柴油机的多喷策略研究

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A multidimensional computational fluid dynamic (CFD) model was developed in order to explore the combined effect of injection timing and fuels quantity ratio of different injection strategies on the combustion performance and emissions characteristics of a dual-fuel indirect injection (IDI) engine with a pilot diesel ignition. The total mass of pilot diesel and premixed natural gas equivalence ratio were kept constant while various injection strategies (single, double, and triple) were investigated at 25% engine load and speed of 800 rpm. Results revealed that the released heat of triple injection pulse during the expansion stroke is the same or higher than that of single and double injection pulses at specified injection timings. It affects positively the engine performance. The highest indicated mean effective pressure (IMEP) can be achieved using single injection pulse at all first injection timings. It is observed that double and triple injection pulses possess comparable indicated thermal efficiency (ITE) and IMEP to those of single injection at specified injection timings. The highest ITE is found 47.5% at first injection timing of -16 deg after top dead center (ATDC)for both single and double injection pulses. Nitrogen oxides (NO_x) mole fraction generally increases when retarding the injection timing. By applying double and triple injection pulses, NO_x emissions decrease, on average, by 9% and 14% compared to that of the single injection pulse. Using double and triple injection pulses, soot emissions increase, on average, by 10% and 32%, respectively, compared to single injection pulse. However, at specified injection timings, the effect of all injection pulses on soot emissions is negligible at relative advanced first injection timing. Carbon monoxide (CO) emissions decrease slightly for all injection strategies when the injection timing varies from -20 deg ATDC to -12 deg ATDC. In this range, dual-fuel operation with triple injection pulse produces the lowest CO emissions. By using triple injection pulse at suitable injection timings, CO emissions decrease by around 7.4% compared to single injection pulse. However, by applying double and triple injection pulses, unburned methane increases, on average, by 16% and 52%, respectively, compared with that of single injection pulse. However, at injection timings of -12 deg ATDC and -8 deg ATDC, triple and double injection pulses produce comparable level of unburned methane to that of single injection pulse.
机译:开发了多维计算流体动力学(CFD)模型,以探索不同喷射策略的喷射正时和燃料量比对带飞行员的双燃料间接喷射(IDI)发动机的燃烧性能和排放特性的综合影响柴油点火。试验柴油的总质量和预混合天然气的当量比保持恒定,同时研究了在25%发动机负载和800 rpm转速下的各种喷射策略(单次,两次和三次)。结果表明,在指定的喷射时间,三冲程喷射脉冲在膨胀冲程中释放的热量与单脉冲和双喷射脉冲相同或更高。它对发动机性能产生积极影响。最高指示平均有效压力(IMEP)可以在所有第一个喷射正时使用单个喷射脉冲来实现。可以观察到,在指定的喷射时间,两次和三次喷射脉冲具有与单次喷射相当的指示热效率(ITE)和IMEP。对于单次和两次喷射脉冲,在上死点(ATDC)之后的-16度的第一次喷射正时,最高的ITE被发现为47.5%。延迟注入时间时,氮氧化物(NO_x)的摩尔分数通常会增加。通过施加两次和三次喷射脉冲,与单次喷射脉冲相比,NO_x排放平均减少了9%和14%。与单次喷射脉冲相比,使用两次和三次喷射脉冲,烟尘排放量平均分别增加了10%和32%。但是,在指定的喷射正时,所有喷射脉冲对烟尘排放的影响在相对提前的第一喷射正时可以忽略不计。当喷射时间从-20度ATDC到-12度ATDC变化时,所有喷射策略的一氧化碳(CO)排放量都会略有降低。在此范围内,具有三重喷射脉冲的双燃料运行产生的CO排放最低。通过在适当的喷射定时使用三重喷射脉冲,与单喷射脉冲相比,CO排放量减少了约7.4%。但是,通过施加两次和三次喷射脉冲,与单次喷射脉冲相比,未燃烧的甲烷平均分别增加了16%和52%。但是,在-12度ATDC和-8度ATDC的喷射正时,三次和两次喷射脉冲产生的未燃烧甲烷水平与单次喷射脉冲相当。

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