...
首页> 外文期刊>Journal of bridge engineering >Examination of Level of Analysis Accuracy for Curved I-Girder Bridges through Comparisons to Field Data
【24h】

Examination of Level of Analysis Accuracy for Curved I-Girder Bridges through Comparisons to Field Data

机译:通过与现场数据的比较来检验弯曲工字形桥梁的分析精度水平

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

To evaluate the accuracy of different levels of analysis used to predict horizontally curved steel I-girder bridge response, a field test was performed on a three-span structure. Collected strain data were reduced to determine girder vertical and bottom flange lateral bending moments. Experimental moments were compared to numerical moments obtained from three commonly employed levels of analysis. Level 1 analysis includes two manual calculation methods: a line girder analysis method described in the AASHTO Guide Specification for Horizontally Curved Highway Bridges, and the V-load method. Grillage models represent Level 2 and were created using three commercially available computer programs: SAP2000, MDX, and DESCUS. Level 3 consists of three-dimensional (3D) finite element models created using SAP2000 and the BSD1 3D system. Responses obtained from each level are compared and discussed for a single radial cross section of the structure, and the compared results involve truck loads and placement schemes that do not represent those used for bridge design. The field test and numerical data presented are used solely to determine the accuracy of each level of analysis for predicting structure response to a specific live load at a specific cross section. Results showed that Level 2 and Level 3 analyses predict girder vertical bending moment distributions more accurately than Level 1 analyses throughout the tested cross section. The comparisons indicate that Level 3 girder vertical bending moment distributions offered no appreciable increase in accuracy over Level 2 analyses. The study also indicates that both Level 1 and Level 3 analyses provide bottom flange lateral bending moment distributions that do not correlate well with field test results for the studied bridge cross section.
机译:为了评估用于预测水平弯曲钢工字钢梁桥响应的不同分析级别的准确性,对三跨结构进行了现场测试。减少收集的应变数据,以确定梁的垂直和底部翼缘的横向弯矩。将实验矩与从三种常用分析级别获得的数值矩进行了比较。 1级分析包括两种手动计算方法:AASHTO指南“水平弯曲的公路桥梁”中描述的线梁分析方法和V荷载方法。格栅模型代表2级,并使用三个商用计算机程序SAP2000,MDX和DESCUS创建。级别3由使用SAP2000和BSD1 3D系统创建的三维(3D)有限元模型组成。对于结构的单个径向横截面,将从每个级别获得的响应进行比较和讨论,并且比较的结果涉及卡车负载和布置方案,这些方案并不代表桥梁设计所用的方案。给出的现场测试和数值数据仅用于确定分析水平的准确性,以预测结构在特定横截面上对特定活荷载的响应。结果表明,与1级分析相比,2级和3级分析在整个测试横截面中预测梁的垂直弯矩分布更准确。比较表明,与2级分析相比,3级大梁的垂直弯矩分布没有提供明显的精度提高。研究还表明,级别1和级别3的分析都提供了底部凸缘的横向弯矩分布,这些分布与所研究桥梁横截面的现场测试结果并不十分相关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号