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Ignition of ultra-lean premixed H-2/air using multiple hot turbulent jets generated by pre-chamber combustion

机译:使用通过预室燃烧产生的多个热湍流射流点燃超精血压预混的H-2 /空气

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A detailed investigation on the ignition characteristics of ultra-lean premixed H-2/air mixtures by multiple hot turbulent jets in a dual combustion chamber system was carried out. Simultaneous high-speed Schlieren and OH* chemiluminescence imaging were applied to visualize the jet penetration and ignition processes inside the main combustion chamber. The focus was on the effects of the spark location and fuel/air equivalence ratio within the pre-chamber on the ignition pattern of the main-chamber mixture. The results show that multiple jets resulted in similar lean flammability limit of H-2/air as the single jets, given that the total nozzle areas are the same. However, the ignition probability improved significantly near the lean flammability limit using multi-jets compared to single jets. Additionally, depending on the spark location and pre-chamber equivalence ratio, either the side jet, the middle jet, or all the jets can initiate ignition in the main chamber. The ignition characteristics of straight and angled multi-jets were compared, and angled jets produced shorter main chamber burn time. Numerical modeling of the flame propagation process within the pre-chamber was carried out to explain the behavior of individual jets in a multi-jet system. It was found that depending on the pre-chamber spark position, the flame shape inside the pre-chamber changes drastically. The effective L/D ratio governs the flame dynamics in the pre-chamber and subsequently determines which jet (side, middle, or all) will first ignite the main chamber. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进行了对双燃室系统中多个热湍流射流的超贫预混H-2 /空气混合物的详细研究。同时高速Schlieren和OH *化学发光成像用于可视化主燃烧室内的喷射渗透和点火过程。重点是在主室混合物的点火图案上的预室内的火花位置和燃料/空气等效比的影响。结果表明,许多喷射导致H-2 /空气的相似稀燃度极限为单个喷射,鉴于总喷嘴区域是相同的。然而,与单射流相比,点火概率随着多喷射的贫易燃性极限而显着改善。另外,根据火花定位和预腔的等效比,侧射流,中间射流或所有喷射器可以在主室中引发点火。比较直角和成角度的多喷射的点火特性,并且产生较短的主室燃烧时间的成角度射流。进行预室内的火焰传播过程的数值建模,以解释多喷射系统中的各个喷射的行为。发现,取决于预腔火花位置,预室内的火焰形状急剧变化。有效的L / D比控制预腔中的火焰动态,随后确定哪个喷射(侧,中间或全部)将首先点燃主腔室。 (c)2017 Elsevier Ltd.保留所有权利。

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