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首页> 外文期刊>Electrochimica Acta >Current distribution at electrode surfaces as simulated by finite element method
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Current distribution at electrode surfaces as simulated by finite element method

机译:电极表面的电流分布通过有限元方法模拟

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摘要

In this article, an approach of finite element method has been introduced to predict the distribution of potential and current on electrode surfaces. In this method, the bulk of electrolyte solution and the main body of solid electrodes are modeled to be normal conductive media; while the surface of the electrode, whose current-potential (I-V) curve satisfies experimental data, is modeled to be special nonlinear boundary conditions. This modeling approach for electrochemistry system is successfully verified by experimental data, and would contribute to a better understanding of the distribution of electrical potential and current at electrode surfaces in practical systems with high voltage coupling effect.
机译:在本文中,已经引入了有限元方法的方法来预测电极表面上的电位和电流的分布。 在该方法中,电解质溶液和固体电极主体的大部分是正常导电介质的模拟; 虽然电流电位(I-V)曲线满足实验数据的电极表面被建模为特殊的非线性边界条件。 通过实验数据成功验证了电化学系统的这种建模方法,并将有助于更好地理解具有高压耦合效果的实际系统中电极表面的电位和电流的分布。

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