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The boundary element method: applications t steady-state voltammetric simulations within domains extending to infinity

机译:边界元法:在扩展至无穷大的域内应用稳态伏安模拟

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Application of the boundary element method (BEM) to the simulation of diffusion limited electrolysis reactions occurring within an infinite domain is outlined. This article focuses on the development of procedures that permit electrolysis simulations to be performed, where only an element mesh over the electrode region is required. This approach provides significant benefits over the traditional application of BEM simulations for electrochemical-based problems. In particular the reduction in mesh points to regions only over the electrode results in simpler grid generation procedures and significantly reduced computational times. The paper describes the theory and numerical details required to develop steady-state two-dimensional diffusional models for voltammetric simulations. The accuracy and versatility of the numerical procedures are tested by examining the current density at a range of well defined electrode geometries.
机译:概述了边界元方法(BEM)在无限域内发生的扩散受限电解反应的模拟中的应用。本文着重于开发允许执行电解模拟的程序,其中仅需要在电极区域上方的元素网格即可。与基于电化学问题的BEM模拟的传统应用相比,该方法具有明显的优势。特别地,减少仅指向电极上方的区域的网格点导致更简单的网格生成过程并显着减少计算时间。本文介绍了为伏安模拟开发稳态二维扩散模型所需的理论和数值细节。通过检查在一系列定义良好的电极几何形状下的电流密度,可以测试数值程序的准确性和通用性。

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