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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Calibration of a class of non-linear viscoelasticity models with sensitivity assessment based on duality
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Calibration of a class of non-linear viscoelasticity models with sensitivity assessment based on duality

机译:基于对偶性的灵敏度评估校准一类非线性粘弹性模型

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The calibration of constitutive models is based on the solution of an optimization problem, whereby the sought parameter values minimize an objective function that measures the discrepancy between experimental observations and the corresponding simulated response. By the introduction of an appropriate adjoint problem, the resulting formulation becomes well suited for a gradient-based optimization scheme. A class of viscoelastic models is studied, where a discontinuous Galerkin method is used to integrate the governing evolution equation in time. A practical solution algorithm, which utilizes the time-flow structure of the underlying evolution equation, is presented. Based on the proposed formulation it is convenient to estimate the sensitivity of the calibrated parameters with respect to measurement noise. The sensitivity is computed using a dual method, which compares favourably with the conventional primal method. The strategy is applied to a viscoelasticity model using experimental data from a uniaxial compression test. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:本构模型的校准基于最优化问题的解决方案,由此求得的参数值将目标函数最小化,该目标函数可测量实验观测值和相应的模拟响应之间的差异。通过引入适当的伴随问题,所得公式非常适合基于梯度的优化方案。研究了一类粘弹性模型,其中不连续的Galerkin方法用于及时整合控制演化方程。提出了一种实用的求解算法,该算法利用了基础演化方程的时间流结构。基于建议的公式,可以方便地估计校准参数相对于测量噪声的灵敏度。灵敏度是使用对偶方法计算的,与传统的原始方法相比具有优势。使用单轴压缩试验的实验数据将该策略应用于粘弹性模型。版权所有(c)2006 John Wiley&Sons,Ltd.

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