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Nonlinear Oscillatory Dynamics in Solid Oxide Fuel Cells

机译:固体氧化物燃料电池中的非线性振荡动力学

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It is widely known that electrochemical systems may exhibit oscillatory dynamics, and SOFC's have been shown to produce both current and voltage oscillations, as well as oscillations in chemical species and temperature. The relationships between the various fuel cell phenomena are complex, and a number of theoretical and experimental approaches exist for determining the existence of oscillations. In the approach used here, a dynamical system has been constructed, describing the reaction and diffusion within the anode of an SOFC fueled with methane, in order to analyse the dynamic behaviour of the chemical species. Phase plane analysis shows the occurrence of spontaneous chemical oscillations via a Hopf bifurcation. This paper implements the dynamical system model using physically controlled parameters.
机译:众所周知,电化学系统可以表现出振荡动力学,并且已经示出了SOFC产生电流和电压振荡,以及化学物质和温度的振荡。各种燃料电池现象之间的关系是复杂的,并且存在许多用于确定振荡的存在的理论和实验方法。在这里使用的方法中,已经构建了一种动态系统,描述了用甲烷燃料的SOFC的阳极内的反应和扩散,以分析化学物质的动态行为。相平面分析显示通过HOPF分叉发生自发性化学振荡的发生。本文使用物理控制的参数实现动态系统模型。

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