首页> 外文会议>Canadian Society for Civil Engineering annual conference >RAPID BRIDGE REPLACEMENT OF CONCRETE RIGID FRAME BRIDGES UTILIZING HEAVY-LIFT CONSTRUCTION TECHNIQUE
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RAPID BRIDGE REPLACEMENT OF CONCRETE RIGID FRAME BRIDGES UTILIZING HEAVY-LIFT CONSTRUCTION TECHNIQUE

机译:重型桥梁施工技术的混凝土刚架桥梁快速更换。

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A rapid bridge replacement (RBR) method was designed and used for the replacement of the Highway 401 twin overpasses at Cornwall Centre Road in Cornwall, Ontario. This RBR project was the first heavy-lift and move of large, approximately 1400 tonne, reinforced concrete rigid frame bridges in Ontario. The new structures were prefabricated in staging areas near the sites and moved to their final locations by specialized heavy-lift construction equipment, comprising self-propelled modular transporters (SPMTs). For the westbound lane structure, a segmental approach where a top rigid frame component and two bottom footing components were constructed separately and connected at their final location was adopted to reduce the weight of the structure due to limited space available for SPMTs. For the eastbound lane structure, the entire rigid frame integrated with footings was constructed and transported by specially configured SPMTs and lifting system that included climbing jacks to lower the entire structure 1.5 m to its final position after transportation. A three-dimensional, linear elastic finite element analysis was utilized for design due to the high skew (51.5°) of the rigid frames to ensure the strength and stability of the structures during lifting and transportation, and their final backfilled service condition. The cost for RBR construction was approximately 25% higher than that of the conventional construction. However, the project confirmed that it is feasible to use the RBR method of construction for complex rigid frame bridges to significantly reduce the duration of traffic impacts for the construction of these types of structures.
机译:设计了一种快速桥梁更换(RBR)方法,并用于更换安大略省康沃尔郡康沃尔中心路的401高速公路双立交桥。这个RBR项目是安大略省的第一个大型起重和搬迁工程,约1400吨大型钢筋混凝土刚性框架桥。新结构在现场附近的临时区域进行了预制,并通过包括自行式模块化运输车(SPMT)在内的专用重型建筑设备搬到了最终位置。对于西行车道结构,采用分段方法,其中顶部刚性框架构件和两个底部基础构件分别构造并在其最终位置连接,以减少结构的重量,因为SPMT的可用空间有限。对于东行车道结构,整个带有框架的刚性框架是通过特殊配置的SPMT和举升系统建造和运输的,该系统包括爬升千斤顶,可在运输后将整个结构降低1.5 m至最终位置。由于刚性框架的偏斜度高(51.5°),因此在设计中使用了三维线性弹性有限元分析,以确保结构在提升和运输过程中的强度和稳定性以及最终回填的使用条件。 RBR建筑的成本比常规建筑高约25%。但是,该项目证实,对于复杂的刚性框架桥梁,使用RBR法施工是可行的,以显着减少这些类型结构的施工对交通影响的持续时间。

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