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An Optical Study of Mixture Preparation in a Hydrogen-fueled Engine with Direct Injection Using Different Nozzle Designs

机译:用不同喷嘴设计直接注射混合物制剂的光学研究

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Mixture formation in an optically accessible hydrogen-fueled engine was investigated using Planar Laser-Induced Fluorescence (PLIF) of acetone as a fuel tracer. The engine was motored and fueled by direct high-pressure injection. This paper presents the evolution of the spatial distribution of the ensemble-mean equivalence ratio for six different combinations of nozzle design and injector geometry, each for three different injection timings after intake-valve closure. Asymmetric single-hole and 5-hole nozzles as well as symmetric 6-hole and 13-hole nozzles were used. For early injection, the low in-cylinder pressure and density allow the jet to preserve its momentum long enough to undergo extensive jet-wall and (for multi-hole nozzles) jet-jet interaction, but the final mixture is fairly homogeneous. Intermediately timed injection yields inhomogeneous mixtures with surprisingly similar features observed for all multi-hole injectors. Fuel is concentrated near the cylinder wall, an unfavorable scenario were the engine to be fired. Results for late injection depend more on the particular injector configuration. The 13-hole injector shows complete merging of all jets, consistent with results in the literature. The influence of intake-induced bulk-gas tumble is minor for the current injector and combustion chamber configurations.
机译:使用丙酮作为燃料示踪剂的平面激光诱导的丙酮荧光(PLIF)研究了光学可接近的氢气燃料发动机中的混合物形成。通过直接高压注入,发动机电动并推动。本文介绍了喷嘴设计和喷射器几何形状的六种不同组合的集合平均等效率的空间分布的演变,每个喷射器几何形状都是在进气门闭合后的三种不同的喷射定时。使用不对称的单孔和5孔喷嘴以及对称的6孔和13孔喷嘴。对于早期注射,滚筒的低压压力和密度允许射流保持其动量长到足以进行广泛的射流和(用于多孔喷嘴)喷射射流相互作用,但最终混合物相当均匀。中间定时注射产生的不均匀混合物,对于所有多孔喷射器观察到的令人惊讶的类似特征。燃料集中在气缸墙附近,不利的场景是发动机被烧制。后期注射的结果依赖于特定的喷射器配置。 13孔注射器显示完全合并所有喷射器,与文献中的结果一致。用于电流喷射器和燃烧室配置的摄入诱导的散装气体翻滚的影响是次要的。

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