A finite volume simulation of electrical potential drop in 2D cracked plates

N. Cheputeh, K. Maneeratana, Jirapong Kasitvitamnuay
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Abstract

The electric potential drop technique is an effective crack monitoring method, especially in harsh environment conditions. With this method, the calibration curve, the relationship between potential drop across the crack and the crack sizes, is needed. This work applied a cell-centered finite volume discretisation with unstructured quadrilateral mesh to simulate the potential drop within cracked specimens. The numerical model is implemented with C++ language. The program was used to simulate electric potential drop in 2D specimens with the two most common through-thickness crack problems, the single edge crack and central crack types with the crack length to specimen width ratios from 0.1 to 0.8. The resulting calculated calibration curves conform well with the analytical solutions.
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二维裂纹板电势降的有限体积模拟
电势降技术是一种有效的裂纹监测方法,特别是在恶劣环境条件下。利用该方法,需要标定裂纹上电位降与裂纹尺寸之间的关系曲线。本工作采用以细胞为中心的有限体积离散与非结构化四边形网格来模拟潜在的下降在裂纹试样。数值模型用c++语言实现。利用该程序模拟了具有两种最常见的贯穿厚度裂纹问题的二维试件的电势降,即裂纹长度与试件宽度之比为0.1 ~ 0.8的单边缘裂纹和中心裂纹类型。计算得到的标定曲线与解析解吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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