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Fuel Injection Strategy for Utilization of Mineral Diesel-Methanol Blend in a Common Rail Direct Injection Engine

机译:用于共同轨道直喷式发动机中矿物柴油 - 甲醇混合物的燃料喷射策略

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Methanol fueled internal combustion (IC) engines have attracted significant attention due to their contributions in reducing environmental pollution and fossil fuel consumption. In this study, a single-cylinder research engine was operated on MD10 (10% (v/v) methanol blended with mineral diesel) and baseline mineral diesel to explore an optimized fuel injection strategy for efficient combustion and reduced emissions. The experiments were conducted at constant engine speed (1500 rpm) and load (3 kW) using two different fuel injection strategies, namely, single pilot injection (SPI) and double pilot injection (DPI) strategy. For each pilot fuel injection strategy, the start of main injection (SoMI) timing was varied from -3 to 6° crank angle (CA) before top dead center (bTDC). To examine the effect of fuel injection pressure (FIP), experiments were performed at three different FIPs (500, 750, and 1000 bars). Results showed that the MD10 fueled engine resulted in superior combustion compared with baseline mineral diesel, which was further improved by DPI at higher FIPs. The use of DPI strategy was found to be more effective at higher FIPs, resulting in higher brake thermal efficiency (BTE), lower exhaust gas temperature (EGT), and reduced oxides of nitrogen (NO_x) emissions compared with SPI strategy. Detailed investigations showed that the addition of methanol in mineral diesel reduced par-ticulates, especially the accumulation mode particles (AMP). Different statistical analysis and qualitative correlations between fuel injection parameters showed that higher FIP and advanced SoMI timings were suitable for paniculate reduction from the MD10 fueled engine.
机译:甲醇燃料的内燃(IC)发动机由于减少环境污染和化石燃料消耗而引发的贡献引起了显着的关注。在这项研究中,单缸研究发动机在MD10(10%(v / v)甲醇混合与矿物柴油)和基线矿物柴油机上进行操作,以探索优化的燃料喷射策略,以实现有效的燃烧和减少排放。使用两种不同的燃料喷射策略,即单引导喷射(SPI)和双先导注射(DPI)策略,以恒定发动机速度(1500rpm)和负载(3 kW)进行实验。对于每个先导燃料喷射策略,主喷射(SOMI)定时的开始在顶死中心(BTDC)之前的-3至6°曲柄角(CA)变化。为了检查燃料喷射压力(FIP)的效果,在三种不同的FIP(500,750和1000杆)下进行实验。结果表明,与基线矿物柴油相比,MD10燃料发动机导致燃烧过上燃烧,该燃烧器在较高的FIPS下进一步改善了DPI。发现使用DPI策略在更高的FIPS上更有效,导致更高的制动热效率(BTE),降低排气温度(EGT),以及与SPI策略相比的氮气(NO_X)排放的降低的氧化物。详细的研究表明,在矿物柴油中加入甲醇,减少了鳞状,尤其是累积模式颗粒(AMP)。燃料喷射参数之间的不同统计分析和定性相关性表明,较高的FIP和高级SOMI定时适用于从MD10燃料发动机进行容量的降低。

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