首页> 外文期刊>Frontiers in energy >Xiang LI, Wenzheng ZHANG, Zhong HUANG, Dehao JU, Li HUANG, Mingzhi FENG, Xingcai LU, Zhen HUANG Pre-chamber turbulent jet ignition of methane/air mixtures with multiple orifices in a large bore constant volume chamber: effect of air-fuel equivalence ratio and pre-mixed pressure
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Xiang LI, Wenzheng ZHANG, Zhong HUANG, Dehao JU, Li HUANG, Mingzhi FENG, Xingcai LU, Zhen HUANG Pre-chamber turbulent jet ignition of methane/air mixtures with multiple orifices in a large bore constant volume chamber: effect of air-fuel equivalence ratio and pre-mixed pressure

机译:李翔,张文正,黄忠,鞠德浩,黄立,冯明志,卢兴才,黄珍大腔恒容室内多孔甲烷/空气混合物的腔室湍流喷射点火:空气燃料的作用当量比和预混合压力

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摘要

Liquefied natural gas (LNG), mainly composed of methane, is in progress to substitute diesel fuel in heavy-duty marine engine for practical, economic, and environmental considerations. However, natural gas is relatively difficult to be ignited in a large bore combustion chamber. A combustion enhancement technique called pre-chamber turbulent jet ignition (TJI) can permit combustion and flame propagation in a large-bore volume. To investigate the effect of air-fuel equivalence ratio and pre-mixed pressure on pre-chamber TJI of methane/air mixtures with multiple orifices in a large bore volume, experimental tests and computational simulations were implemented to study the discharge of hot turbulent jets from six orifices of the pre-chamber. Different initial pressures and air-fuel equivalence ratios were considered to analyze the characteristics of TJI. The asymmetry of the turbulent jet actuated from six different orifices were found due to the asymmetric orientation of the spark plug, resulting in the inhomogeneous distribution of combustion in the constant volume chamber, which should be considered seriously in the marine engine design. Besides, as the premixed pressure increases, it has more effect on the flame propagation and plays a more important role, as it further increases.
机译:出于实用,经济和环境方面的考虑,主要由甲烷组成的液化天然气(LNG)正在替代重型船用发动机中的柴油燃料。但是,在大口径燃烧室中很难点燃天然气。一种称为前室湍流射流点火(TJI)的燃烧增强技术可以使燃烧和火焰在大口径体积内传播。为了研究空燃当量比和预混合压力对大口径容积内具有多个孔口的甲烷/空气混合物的预燃室TJI的影响,进行了实验测试和计算模拟,以研究热湍流射流的排放。预燃室的六个孔。考虑了不同的初始压力和空燃当量比,以分析TJI的特性。由于火花塞的不对称取向,发现了由六个不同孔口驱动的湍流射流的不对称性,导致恒定容积室内的燃烧分布不均匀,在船用发动机设计中应认真考虑。此外,随着预混合压力的增加,它对火焰传播的影响更大,并且随着其进一步增加,起着更重要的作用。

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