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Comparison of Totally Prefabricated Bridge Substructure Designed According to Korea Highway Bridge Design (KHBD) and AASHTO-LRFD

机译:根据韩国公路桥梁设计(KHBD)和AASHTO-LRFD设计的完全预制桥梁子结构的比较

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Abstract The purpose of this study was to investigate the design comparison of totally prefabricated bridge substructure system. Prefabricated bridge substructure systems are a relatively new and versatile alternative in substructure design that can offer numerous benefits. The system can reduce the work load at a construction site and can result in shorter construction periods. The prefabricated bridge substructures are designed by the methods of Korea Highway Bridge Code (KHBD) and load and resistance factor design (AASHTO-LRFD). For the design, the KHBD with DB-24 and DL-24 live loads is used. This study evaluates the design method of KHBD (2005) and AASHTO-LRFD (2007) for totally prefabricated bridge substructure systems. The computer program, reinforced concrete analysis in higher evaluation system technology was used for the analysis of reinforced concrete structures. A bonded tendon element is used based on the finite element method, and can represent the interaction between the tendon and concrete of a prestressed concrete member. A joint element is used in order to predict the inelastic behaviors of segmental joints. This study documents the design comparison of totally prefabricated bridge substructure and presents conclusions and design recommendations based on the analytical findings.
机译:摘要这项研究的目的是研究完全预制桥梁子结构系统的设计比较。预制桥梁子结构系统是子结构设计中一种相对较新的通用选择,可以带来很多好处。该系统可以减少施工现场的工作量,并可以缩短施工周期。预制桥梁的子结构是通过韩国公路桥梁规范(KHBD)和荷载与阻力系数设计(AASHTO-LRFD)的方法设计的。在设计中,使用带有DB-24和DL-24活载的KHBD。这项研究评估了KHBD(2005)和AASHTO-LRFD(2007)用于完全预制桥梁子结构系统的设计方法。采用计算机程序,高级评估系统技术中的钢筋混凝土分析来分析钢筋混凝土结构。基于有限元方法使用了粘结的筋单元,它可以表示筋与预应力混凝土构件之间的相互作用。为了预测节段性关节的非弹性行为,使用了关节元素。这项研究记录了完全预制桥梁子结构的设计比较,并基于分析结果提出了结论和设计建议。

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