Investigation on the Air-Gas Characteristics of Air-Hydrogen Mixer Designed for Dual Fuel – Engines

Alaulddin A. Kazum, Osam H. Attia, Ali I. Mosa, Nor Mariah. Adam
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引用次数: 2

Abstract

High smoke emissions, nitrogen oxide and particulate matter typically produced by diesel engines. Diminishing the exhausted emissions without doing any significant changes in their mechanical configuration is a challenging subject. Thus, adding hydrogen to the traditional fuel would be the best practical choice to ameliorate diesel engines performance and reduce emissions. The air hydrogen mixer is an essential part of converting the diesel engine to work under dual fuel mode (hydrogen-diesel) without any engine modification. In this study, the Air-hydrogen mixer is developed to get a homogenous mixture for hydrogen with air and a stoichiometric air-fuel ratio according to the speed of the engine. The mixer depends on the balance between the force exerted on the head surface of the valve and the opposite forces (the spring and friction forces) and its relation to decrease and increase the fuel inlet. Computational fluid dynamics (CFD) analysis software was utilised to study the hydrogen and airflow behaviour inside the mixer, established by 3.2 L engine. The Air-hydrogen mixer is examined with different speeds of engine1000, 2000, 3000 and 4000 RPM. Results showed air-hydrogen mixture was homogenous in the mixer. Furthermore, the stoichiometric air-fuel ratio was achieved according to the speed of the engine, the developed mixer of the AIR-Hydrogen mixing process provides high mixing homogeneity and engines with stoichiometric air-fuel ratios, which subsequently contributes to the high levels of efficiency in engine operation. In summary, the current study intends to reduce the emissions of gases and offer a wide range of new alternative fuels usage. While the performance of the diesel engine with the new air-hydrogen mixer needs to be tested practically
双燃料发动机空气-氢混合器空气-气体特性研究
高烟雾排放,氮氧化物和颗粒物质通常由柴油发动机产生。在不改变机械结构的情况下减少废气排放是一项具有挑战性的课题。因此,在传统燃料中添加氢将是改善柴油发动机性能和减少排放的最佳实际选择。空气氢混合器是柴油机在不进行任何改造的情况下实现双燃料模式(氢-柴油)工作的重要组成部分。在本研究中,开发了空气-氢混合器,以获得氢气与空气的均匀混合物和根据发动机转速的化学计量空燃比。混合器取决于施加在阀头表面的力与相反的力(弹簧力和摩擦力)之间的平衡及其减少和增加燃油进口的关系。利用计算流体力学(CFD)分析软件对3.2 L发动机建立的混合器内氢气和气流特性进行了研究。在发动机转速为1000、2000、3000、4000 RPM的情况下,对空气-氢混合器进行了试验。结果表明,混合器内空气-氢混合气体均匀。此外,根据发动机的转速实现了化学计量空燃比,开发的空气-氢混合工艺混合器提供了高混合均匀性和具有化学计量空燃比的发动机,这随后有助于提高发动机的运行效率。总之,目前的研究旨在减少气体的排放,并提供广泛的新替代燃料的使用。而采用新型空气氢混合器的柴油机的性能还需要进行实际试验
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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