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Diesel-hydrogen dual-fuel combustion and its impact on unregulated gaseous emissions and particulate emissions under different engine loads and engine speeds

机译:柴油-氢双燃料燃烧及其对不同发动机负载和发动机转速下不受控气体排放和颗粒物排放的影响

摘要

Experimental investigations were conducted on a diesel engine to evaluate the effects of hydrogen addition on engine combustion, unregulated gaseous emissions and particulate emissions based on the Japanese 13-mode testing cycle. A diesel-hydrogen co-operated combustion strategy is proposed in which hydrogen is naturally aspirated into the diesel engine to substitute 10, 20 and 30% of the total fuel energy at 10 selected modes and diesel is used as the sole fuel for the other 3 modes. Gradual increase of peak in-cylinder pressure and heat release rate is observed at medium and high engine loads. Pre-ignition might occur at high engine load and speed. Cyclic variation of the indicated mean effective pressure and maximum pressure derivative increased with hydrogen addition. The brake specific emissions of acetaldehyde (CH3CHO), alkenes (C2H4, C3H6 and C4H6), arenes (C6H6, C7H8 and C8H10) and particulate mass can be evidently reduced. However, with H30 operation, the weighted total HC and formaldehyde (HCHO) increased by around 27% and 8%, respectively, while NOx increased by around 17%. The simultaneous decrease of particle size and number are believed to be associated with the inhibition effect of hydrogen on soot particle formation based on the HACA (H2 abstraction and C2H2 addition) mechanism.
机译:根据日本的13模式测试周期,对柴油发动机进行了实验研究,以评估加氢对发动机燃烧,不受控气体排放和颗粒物排放的影响。提出了一种柴油-氢协同燃烧策略,其中氢被自然地吸入柴油发动机中,以在10种选定模式下替代总燃料能量的10%,20%和30%,而柴油被用作其他3种燃料的唯一燃料。模式。在中等和较高的发动机负载下,观察到缸内峰值压力和放热速率逐渐增加。在高发动机负载和高转速下可能会发生预点火。指示平均有效压力和最大压力导数的循环变化随添加氢气而增加。可以明显降低乙醛(CH3CHO),烯烃(C2H4,C3H6和C4H6),芳烃(C6H6,C7H8和C8H10)和颗粒质量的制动比排放。但是,在H30操作下,加权总HC和甲醛(HCHO)分别增加了约27%和8%,而NOx则增加了约17%。据认为,粒径和数量的同时减少与氢对基于HACA(H2提取和C2H2添加)机理的烟尘颗粒形成的抑制作用有关。

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