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基于静力响应面的结构有限元模型修正方法
引用本文:邓苗毅,任伟新,王复明.基于静力响应面的结构有限元模型修正方法[J].实验力学,2008,23(2):103-109.
作者姓名:邓苗毅  任伟新  王复明
作者单位:1. 郑州大学,环境与水利工程学院,河南,郑州,450002
2. 中南大学,土木建筑学院,湖南,长沙,410075
摘    要:提出了基于静力响应面的结构有限元模型修正方法.运用响应面方法,将结构静力响应和结构参数之间复杂的隐式关系用显式函数近似表达出来;在此响应面模型(函数)基础上,通过优化计算对结构有限元模型参数进行修正.阐述了基于静力响应面的结构有限元模型修正方法的基本理论和一般实现过程.对两跨连续梁结构的静力模型修正数值算例分析结果表明:基于静力响应面的有限元模型修正方法可以减少结构有限元计算的次数、提高模型修正的优化效率,结构有限元模型修正结果具有可接受的精度.

关 键 词:结构  有限元模型修正  静力试验  响应面  实验设计  响应面模型  结构有限元计算  有限元模型修正  修正方法  Finite  Element  Model  Structure  Response  Surface  Methodology  Based  精度  优化效率  结果  算例分析  数值  静力模型  梁结构  连续  过程  一般实现  基本理论  阐述
文章编号:1001-4888(2008)02-0103-07
收稿时间:1/5/2008 12:00:00 AM
修稿时间:2008年1月5日

Structure Finite Element Model (FEM) Updating Based on Static-load Response Surface Methodology
DENG Miao-yi,REN Wei-xin,WANG Fu-ming.Structure Finite Element Model (FEM) Updating Based on Static-load Response Surface Methodology[J].Journal of Experimental Mechanics,2008,23(2):103-109.
Authors:DENG Miao-yi  REN Wei-xin  WANG Fu-ming
Institution:School of Environment & Water Conservancy, Zhengzhou University, Zhengzhou 450002, China;School of Civil Engineering & Architectural, Central South University, Changsha Hunan 410075, China;School of Environment & Water Conservancy, Zhengzhou University, Zhengzhou 450002, China
Abstract:A method for structure finite element model (FEM) updating based on static-load response surface is presented. Employing response surface method, the complicated implicit relationship between bridge structural static-load responses and structural parameters is approximately represented by the simple explicit function. Based on this response surface model (function), the structural finite element model parameters can be easily updated by selected optimization procedure. The essential theory and implementation of structural static response surface based finite element model updating are presented in this paper. A numerical example of a two-span continuous beam has demonstrated that the precision of structural static model updating is in an acceptable range and the structural finite-element calculation times can be reduced. The efficiency of finite element model updating can be increased based on this method.
Keywords:structure  FEM updating  static-load test  response surface  design of experiments
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