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EXPERIMENTAL ANALYSIS OF AN AUTOTHERMAL GASOLINE REFORMER FOR AUTOMOTIVE PURPOSES

机译:汽车目的自动汽油重整器的实验分析

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One of the main uses of fossil fuels is in the transportation sector, leading to environmental consequences such as climate change and smog. In order to move towards a more sustainable energy infrastructure, a transition must begin between fossil fuels and renewable fuels, such as biogas and hydrogen. One possibility to drive this transition is through the application of reforming technology to the automotive sector. The objectives of this project were to experimentally validate a computational fluid dynamics model, while at the same time analyze the data and model in order to improve the design of the bench-scale reformer for use in automotive applications. The model was validated through the experimental data generated through the use of a series of thermocouples and gas chromatography. The highest lower heating value efficiency and dry molar percentage output of hydrogen were 58% and 43% respectively, with conversion percentages approaching 100%.
机译:化石燃料的主要用途是交通部门,导致环境后果,如气候变化和烟雾。为了实现更可持续的能源基础设施,过渡必须在化石燃料和可再生燃料之间开始,例如沼气和氢气。推动这种转变的一种可能是通过将改造技术应用于汽车领域。该项目的目标是通过实验验证计算流体动力学模型,同时分析数据和模型,以改善用于汽车应用的台式重整器的设计。通过使用一系列热电偶和气相色谱法产生的实验数据验证了该模型。氢的最高加热值效率和干式摩尔百分比产量分别为58%和43%,转化百分比接近100%。

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