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首页> 外文期刊>Journal of bridge engineering >Development of Static-Response-Based Objective Functions for Finite-Element Modeling of Bridges
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Development of Static-Response-Based Objective Functions for Finite-Element Modeling of Bridges

机译:基于静态响应的目标函数的桥梁有限元建模

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摘要

The basic mechanisms and procedures of finite-element (FE) modeling and calibration are briefly presented in the context of bridge condition assessment. Different physical parameters of FE models are adjusted to simulate experimental measurements. To quantify the calibration process, static-response-based objective functions are carefully developed based on two powerful condition indices: bridge girder condition indicators and unit influence lines. Critical issues related to the indices are discussed in detail. Using an existing calibration strategy, a nominal FE bridge model is optimized by minimizing this global static-response-based objective function. The value of the objective function is reduced from 12.98 to 4.45%, which indicates convergence of the calibration process. It is shown that the automated calibration becomes practical due to the formulation of the static-response-based objective function.
机译:在桥梁状况评估的背景下,简要介绍了有限元(FE)建模和校准的基本机制和程序。调整FE模型的不同物理参数以模拟实验测量。为了量化校准过程,基于两个强大的状态指标:桥梁状态指示器和单元影响线,精心开发了基于静态响应的目标函数。详细讨论了与索引有关的关键问题。使用现有的校准策略,通过最小化基于全局静态响应的目标函数来优化标称FE桥模型。目标函数的值从12.98降低到4.45%,这表明校准过程已经收敛。结果表明,由于基于静态响应的目标函数的制定,自动校准变得可行。

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