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Identify the Interfacial Configurations in a Multiple Region Domain Problem

机译:识别多区域域问题中的界面配置

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摘要

A two-dimensional inverse geometry problem, that is, a shape identification problem, of estimating the interfacial geometry in a multiple region domain, is solved in this study based on the conjugate gradient and boundary element methods. It is assumed that no prior information is available on the functional form of the unknown interfacial geometry in this work; thus, it is classified as the function estimation in the inverse calculation. The accuracy of the inverse analysis is examined using simulated temperature measurements. This approach can be applied to many applications, such as interfacial geometry identification for phase change (Stefan) problems. Numerical experiments using different numbers of sensors, measurement errors, and positions are performed to justify the validity of the present algorithm in solving the shape identification problem. Finally it is concluded that the conjugate gradient method can estimate the reliable interfacial configuration.
机译:基于共轭梯度法和边界元法,解决了二维逆几何问题,即形状识别问题,该问题估计了多区域域中的界面几何。假设在这项工作中没有关于未知界面几何形状的功能形式的先验信息。因此,它被归类为逆计算中的函数估计。使用模拟温度测量来检查反分析的准确性。这种方法可以应用于许多应用,例如用于相变(Stefan)问题的界面几何识别。进行了使用不同数量的传感器,测量误差和位置的数值实验,以证明本算法在解决形状识别问题中的有效性。最后得出结论,共轭梯度法可以估计可靠的界面构型。

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