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Development of a Dual-Fuel Power Generation System for an Extended Range Plug-in Hybrid Electric Vehicle

机译:扩展型插电式混合动力汽车双燃料发电系统的开发

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In recent decades, there has been a growing global concern with regard to vehicle-generated greenhouse gas emissions and the resulting air pollution. In response, automotive original equipment manufacturers focus their efforts on developing “greener” propulsion solutions in order to meet the societal demand and ecological need for clean transportation. Hydrogen is an ideal vehicle fuel for use not only in fuel cells (FCs) but also in a spark-ignition internal combustion engines (ICEs). The combustion of hydrogen $( hbox{H}_{2})$ fuel offers vastly superior tail-pipe emissions when compared with gasoline and can offer improved performance. $hbox{H}_{2}$ is ideally suited for use in an extended range plug-in hybrid electric vehicle architecture where engine efficiency can be optimized for a single engine speed. $hbox{H}_{2}$ ICEs are significantly more cost effective then an equivalent-sized $hbox{H}_{2}$ FC making them a better near-term solution. Before hydrogen can replace gasoline and diesel as the main source of automotive fuel, a number of hurdles must first be overcome. One such hurdle includes developing a suitable hydrogen infrastructure, which could take decades. As such, dual-fuel capabilities will help to create a transition between gasoline- and hydrogen-powered vehicles in the near term, while a full-service hydrogen infrastructure is developed.
机译:在最近的几十年中,全球范围内对车辆产生的温室气体排放和由此产生的空气污染的关注日益增加。为此,汽车原始设备制造商将精力集中在开发“绿色”推进解决方案上,以满足社会对清洁运输的需求和生态需求。氢气是一种理想的车辆燃料,不仅可用于燃料电池(FC),而且可用于火花点火式内燃机(ICE)。与汽油相比,氢气(hbox {H} _ {2})$燃料的燃烧可提供极为优越的尾气排放,并可以提高性能。 $ hbox {H} _ {2} $非常适合用于扩展范围的插电式混合动力电动汽车体系结构,在该体系结构中,可以针对单个发动机转速优化发动机效率。 $ hbox {H} _ {2} $ ICE比同等大小的$ hbox {H} _ {2} $ FC具有更高的成本效益,使其成为近期更好的解决方案。在氢能替代汽油和柴油成为汽车燃料的主要来源之前,必须首先克服许多障碍。这样的障碍之一包括开发合适的氢基础设施,这可能需要数十年的时间。因此,双燃料功能将有助于在短期内在汽油动力车和氢动力车之间建立过渡,同时开发可提供全方位服务的氢基础设施。

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