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首页> 外文期刊>Journal of thermal analysis and calorimetry >Energy and exergy analysis of the dual-fuel RCCI engine by ozone-assisted combustion of a lean mixture
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Energy and exergy analysis of the dual-fuel RCCI engine by ozone-assisted combustion of a lean mixture

机译:通过臭氧混合物辅助燃烧的双燃料RCCI发动机的能量和暴力分析

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An experimental investigation was carried out to explore the effects of ozone on the energy and exergy fractions in a single-cylinder light-duty Ricardo E/6 engine. This study undertook CNG that epitomizes the premixed low-reactivity fuel and diesel as the high-reactivity fuel. Measurements were taken for ozone additions of 0, 50, 100, 200, 250, 300, and 400 ppm, constant CNG-to-diesel energy ratio of 4, and the lambda number of 3.5. The results suggest that the increased seeded ozone augments energy and exergy efficiency. The growth rate at 0.26%, 1.85%, 3.00%, and 5.63% levels were derived in energy efficiencies through 100, 200, 300, and 400 ppm introduced ozone, respectively, compared to no ozone addition, while the corresponding exergy efficiency increments were found to be 0.09%, 0.78%, 2.82%, and 5.36%, respectively. The in-cylinder combustion improvement in the applied fuels with the ozone addition triggered the higher thermal efficiency of the engine, while denoting the higher rate of exhaust and cooling losses in all cases. The resultant experimental outcome also unveiled a significant load extension of RCCI engine operation using ozone-based additive. Furthermore, it was observed that the ozone usage holds promise for the emissions reduction of CO and HC although at the expense of the increased NOx emissions.
机译:通过实验研究了臭氧对单缸轻型Ricardo E/6发动机能量和火用分数的影响。本研究将预混合低反应性燃料和柴油作为高反应性燃料进行了CNG试验。测量臭氧添加量为0、50、100、200、250、300和400 ppm,CNG与柴油的能量比恒定为4,lambda数为3.5。结果表明,增加的种子臭氧增加了能量和火用效率。与不添加臭氧相比,通过100、200、300和400 ppm引入臭氧,能源效率分别以0.26%、1.85%、3.00%和5.63%的水平增长,而相应的火用效率增量分别为0.09%、0.78%、2.82%和5.36%。添加臭氧后所用燃料的缸内燃烧改善触发了发动机更高的热效率,同时表明在所有情况下,排气和冷却损失率都更高。由此产生的实验结果还揭示了使用臭氧添加剂的RCCI发动机运行的显著负荷延长。此外,据观察,臭氧的使用有望减少CO和HC的排放量,尽管这是以增加的NOx排放为代价的。

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