正丁醇含量对两种发动机转速下CNG双燃料燃烧模式的影响

Xiangyu Meng, Wuqiang Long, Yihui Zhou, Mingshu Bi, C. Lee
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引用次数: 0

摘要

由于同时降低NOx和PM排放的潜力以及生物燃料的利用,柴油/压缩天然气(CNG)双燃料燃烧模式(CNG端口喷射和柴油直喷)得到了广泛的研究。但与传统柴油燃烧模式相比,双燃料燃烧模式的热效率普遍较低,特别是在中、低负荷时,其一氧化碳(CO)和总烃(THC)排放量较高。在这项工作中,正丁醇与柴油混合作为试点燃料,探索使用CNG改善双燃料燃烧模式的性能和排放的可能性。在发动机转速为1400转/ 1800转的情况下,以能量为基础的CNG替代率为70%时,对B0(纯柴油)、B10(90%柴油/10%正丁醇)、B20(80%柴油/20%正丁醇)和B30(70%柴油/30%正丁醇)几种中试燃料进行了比较。在相同总输入能量的基础上,对包括中试燃料和CNG在内的多种中试燃料启动喷射正时进行了扫描实验。随着中试燃料中加入正丁醇,中试燃料/CNG/空气混合物趋于均匀。结果表明,在发动机转速为1400 rpm时,添加正丁醇的先导燃油会导致指示热效率(ITE)略低。B30显示出更低的NOx排放和略高的THC排放。在发动机转速为1800 rpm时,相对于B0, B20能同时提高ITE,降低NOx和THC排放。
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Effects of N-Butanol Content on the Dual-Fuel Combustion Mode With CNG at Two Engine Speeds
Because of the potential to reduce NOx and PM emissions simultaneously and the utilization of biofuel, diesel/compressed natural gas (CNG) dual-fuel combustion mode with port injection of CNG and direct injection of diesel has been widely studied. While in comparison with conventional diesel combustion mode, the dual-fuel combustion mode generally leads lower thermal efficiency, especially at low and medium load, and higher carbon monoxide (CO) and total hydrocarbons (THC) emissions. In this work, n-butanol was blended with diesel as the pilot fuel to explore the possibility to improve the performance and emissions of dual-fuel combustion mode with CNG. Various pilot fuels of B0 (pure diesel), B10 (90% diesel/10% n-butanol by volume basis), B20 (80% diesel/20% n-butanol) and B30 (70% diesel/30% n-butanol) were compared at the CNG substitution rate of 70% by energy basis under the engine speeds of 1400 and 1800 rpm. The experiments were carried out by sweeping a wide range of pilot fuel start of injection timings based on the same total input energy including pilot fuel and CNG. As n-butanol was added into the pilot fuel, the pilot fuel/CNG/air mixture tends to be more homogeneous. The results showed that for the engine speed of 1400 rpm, pilot fuel with n-butanol addition leads to a slightly lower indicated thermal efficiency (ITE). B30 reveals much lower NOx emission and slightly higher THC emissions. For the engine speed of 1800 rpm, B20 can improve ITE and decrease the NOx and THC emissions simultaneously relative to B0.
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