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The mechanical response of multi-tower continuous-span suspension bridge deck pavement based on whole bridge analysis

The mechanical response of multi-tower continuous-span suspension bridge deck pavement based on whole bridge analysis
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摘要 The effect of multiple span suspension structure on the mechanical response of bridge deck pavement was studied, and finite element analysis (FEM) of stress and strain of pavement according to the bridge floor system features of super-long and high flexibility was made. Meanwhile, the FEM results were compared with those of the single span suspension structure. Three-stage analytic hierarchy process (AHP) is developed to analyze the mechanical response including whole bridge analysis, partial beams section analysis and orthotropic plate analysis. The most unfavorable load position was determined by the numerical solutions acquired from each stage to study the main mechanical index of multiple span suspension structure. The FEM results showed that the mechanical response numerical solutions by using the three-stage AHP are greater than those by simplified boundary condition, and the force condition of multiple span suspension structure is worse than that of the single span suspension structure.
出处 《Engineering Sciences》 EI 2011年第2期88-92,共5页 中国工程科学(英文版)
基金 National Science and Technology Support Program of China ( No. 2009BAG15B03)
关键词 the multiple span suspension structure a three-stage analytic hierarchy process finite element analysis (FEM) the mechanical response of bridge deck pavement 力学响应 桥面铺装 多跨度 全桥 悬索桥 有限元分析 悬挂结构 层次分析法
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