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Implementation of a novel hydrogen direct-injection concept in single and multi-cylinder engines: CFD, experimental and engine powertrain design studies

机译:在单缸和多缸发动机中实施新颖的氢气直喷概念:CFD,实验和发动机动力总成设计研究

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摘要

A novel low-pressure hydrogen direct-injection system, characterised by low storage residual pressure and simple mechanical solutions, has been implemented in single and multi-cylinder engines. Based on two-step operation, this system keeps hydrogen metering apart from injection. The first step relates to the system with constant H_2 flow rate and variable opening duration. The second step is characterised by variable H_2 flow rate and constant angular duration. A prototype has been realised modifying a single-cylinder production engine, following the results of a wide CFD activity during which in-cylinder hydrogen injection and mixing phases have been simulated to investigate how valve and seat-valve geometries affect mixing characteristics. The prototype engine ran properly at full load, without pre-ignition, knocking or roughness even with stoichiometric or slightly rich mixtures, providing higher maximum power than with gasoline. At part load the engine worked correctly even with very lean mixtures. Current research is directed to explore the feasibility of applying the two-step injection concept in a multi-cylinder engine. The CFD analysis together with the design study aimed to integrate the injection system in the engine powertrain are shown and discussed.
机译:在单缸和多缸发动机中已经实现了一种新颖的低压氢气直接喷射系统,该系统具有低存储残余压力和简单的机械解决方案的特点。该系统基于两步操作,使氢气计量与注入分开。第一步涉及具有恒定H_2流量和可变打开持续时间的系统。第二步的特征在于可变的H_2流量和恒定的角持续时间。根据广泛的CFD活动的结果,已经实现了对单缸生产发动机进行改造的原型,在此过程中,对缸内注氢和混合阶段进行了模拟,以研究气门和座阀的几何形状如何影响混合特性。原型发动机即使在化学计量比或略微浓的混合物下也能在满负荷下正常运行,而不会发生预点火,爆震或粗糙度变化,从而提供比汽油更高的最大功率。即使在非常稀薄的混合气下,发动机在部分负荷下也能正常工作。当前的研究旨在探索在多缸发动机中应用两步喷射概念的可行性。展示并讨论了CFD分析以及旨在将喷射系统集成到发动机动力总成中的设计研究。

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