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Certified reduced basis methods for parametrized parabolic partial differential equations with non-affine source terms

机译:具有非仿射源项的参数化抛物型偏微分方程的经过认证的简化基础方法

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摘要

We present rigorous a posteriori output error bounds for reduced basis approximations of parametrized parabolic partial differential equations with non-affine source terms. The method employs the empirical interpolation method in order to construct affine coefficient-function approximations of the non-affine parametrized functions. Our a posteriori error bounds take both error contributions explicitly into account—the error introduced by the reduced basis approximation and the error induced by the coefficient function interpolation. To this end, we employ recently developed rigorous error bounds for the empirical interpolation method and develop error estimation and primal-dual formulations to provide rigorous bounds for the error in specific outputs of interest. We present an efficient offline-online computational procedure for the calculation of the reduced basis approximation and associated error bound. The method is thus ideally suited for many-query or real-time contexts. As a specific motivational example we consider a three-dimensional mathematical model of a welding process. Our numerical results show that we obtain efficient and reliable mathematical models which may be gainfully employed in manufacturing and product development.
机译:对于非仿射源项的参数化抛物线偏微分方程,我们提出了严格的后验输出误差范围,以减少基础近似。该方法采用经验插值法来构造非仿射参数化函数的仿射系数函数逼近。我们的后验误差范围明确考虑了两个误差贡献,即简化的基近似所引入的误差和系数函数插值所引起的误差。为此,我们为经验插值方法采用了最近开发的严格误差范围,并开发了误差估计和原始对偶公式来为感兴趣的特定输出中的误差提供严格范围。我们提出了一种有效的离线在线计算程序,用于计算简化的基础近似和相关的误差范围。因此,该方法非常适合于多查询或实时上下文。作为一个具体的激励示例,我们考虑焊接过程的三维数学模型。我们的数值结果表明,我们获得了有效且可靠的数学模型,可以在制造和产品开发中受益。

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