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MODELING OF REFORMERS FOR FUEL CELL APPLICATIONS

机译:燃料电池应用的重整器建模

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摘要

The lack of an existing hydrogen infrastructure makes fuel processing of hydrocarbon fuels a critical component of fuel cell systems. The reformer is the principle reactor in the fuel processing subsystem and converts various hydrocarbon fuels into hydrogen, carbon monoxide, and other products that can then be utilized in the fuel cell. To help understand and quantify diesel fuel reforming by partial oxidation, a computational fluid dynamic model was developed that included the following sub-processes: liquid fuel atomization, fuel drop evaporation, fuel drop boiling and vaporization, and gas-phase chemical reaction. This work focused on n-heptane as a representative diesel fuel and reduced reaction mechanisms from the literature for fuel rich oxidation of n-heptane were used to analyze reactions in the partial oxidation reformer. Turbulent chemistry was modeled using the eddy dissipation concept. Reactor performance and parametric analysis based on model simulations are presented and discussed.
机译:缺乏现有的氢基础设施使得碳氢燃料的燃料处理成为燃料电池系统的关键组成部分。重整器是燃料处理子系统中的主要反应器,可将各种碳氢化合物燃料转化为氢气,一氧化碳和其他可用于燃料电池的产品。为了帮助理解和量化通过部分氧化的柴油重整,开发了计算流体动力学模型,该模型包括以下子过程:液体燃料雾化,燃料滴蒸发,燃料滴沸腾和汽化以及气相化学反应。这项工作的重点是正庚烷作为代表性的柴油燃料,文献中针对正庚烷的富燃料氧化反应的还原反应机理被用于分析部分氧化重整器中的反应。使用涡流消散概念对湍流化学进行建模。介绍并讨论了基于模型仿真的反应堆性能和参数分析。

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