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Development of a Complete Single Jet Common Rail Injection System Gas Dynamic Model for Hydrogen Fueled Engine with Port Injection Feeding System

机译:带有端口喷射进料系统的氢燃料发动机完整单喷嘴共轨喷射系统气体动力学模型的开发

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摘要

Modeling of hydrogen fueled engine (H2ICE) injection system is a very important tool that can be used for explaining or predicting the effect of advanced injection strategies on combustion and emissions. In this paper, a common rail injection system (CRIS) is proposed for 4-strokes 4-cylinders hydrogen fueled engine with port injection feeding system (PIH2ICE). For this system, a numerical one-dimensional gas dynamic model is developed considering single injection event for each injector per a cycle. One-dimensional flow equations in conservation form are used to simulate wave propagation phenomenon throughout the CR (accumulator). Using this model, the effect of common rail on the injection system characteristics is clarified. These characteristics include: rail pressure, sound velocity, rail mass flow rate, injected mass flow rate and pressure drop across injectors. The interaction effects of operational conditions (engine speed and rail pressure) and geometrical features (injector hole diameter) are illustrated; and the required compromised solutions are highlighted. The CRIS is shown to be a promising enhancement for PIH2ICE.
机译:氢燃料发动机(H2ICE)喷射系统的建模是非常重要的工具,可用于解释或预测先进的喷射策略对燃烧和排放的影响。在本文中,提出了一种共轨喷射系统(CRIS),用于带有进气道喷射进给系统(PIH2ICE)的4冲程4缸氢燃料发动机。对于该系统,开发了一个数字一维气体动力学模型,其中考虑了每个喷油器每个循环的单次喷油事件。守恒形式的一维流动方程用于模拟整个CR(蓄能器)中的波传播现象。使用该模型,可以明确共轨对喷射系统特性的影响。这些特性包括:轨道压力,声速,轨道质量流率,注入质量流率和喷射器两端的压降。说明了运行条件(发动机转速和导轨压力)和几何特征(喷油嘴直径)的相互作用。并突出显示了所需的折衷解决方案。 CRIS被证明是PIH2ICE的有希望的增强。

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