首页> 外文会议>Canadian Society for Civil Engineering Annual conference >AN INNOVATIVE ACCELERATED BRIDGE CONSTRUCTION APPROACH INCORPORATING PRECAST PANELS, FIBRE-REINFORCED POLYMERS BARS AND ULTRA HIGH PERFORMANCE CONCRETE
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AN INNOVATIVE ACCELERATED BRIDGE CONSTRUCTION APPROACH INCORPORATING PRECAST PANELS, FIBRE-REINFORCED POLYMERS BARS AND ULTRA HIGH PERFORMANCE CONCRETE

机译:一种采用预制板,纤维增强聚合物条和超高性能混凝土的创新加速桥梁施工方法

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The need for enlarging the extents and capacity of existing transportation structures has been growing rapidly worldwide during the past decade. Meantime, minimizing the impact on traffic and shortening the construction duration pose significant challenges to jurisdictions, engineers and contractors. This paper presents a project for widening an existing two-lane bridge over a major water stream within the Great Toronto Area (GTA). Two additional lanes are needed to improve the vehicular traffic flow of the road crossing the water stream. The subject bridge and its proposed widening are of a semi-integral abutment type. This type of bridges is characterized with high durability of both superstructure and substructure components. Two deck systems utilizing Steel Ⅰ-girders and Steel Box-girders were examined in order to achieve an optimum bridge design. Some of the various challenges were to maintain the existing bridge functional during construction and to keep the water stream beneath flowing free of any falling debris. Further, high durability measures were considered for the widening structure along with a reduction of the construction schedule within a reasonable budget. Therefore, the design/construction criterion focused an innovative accelerated construction approach in order to satisfy such challenging demands. Through such approach, a deck system of precast concrete panels reinforced with Glass Fibre-Reinforced Polymers (GFRP) bars and jointed, on site, with Ultra High Performance Concrete (UHPC) is proposed. The proposed construction methodology, complemented by such advanced construction materials, accommodates the technical and financial measures of the project from both short and long term aspects.
机译:在过去十年中,扩大现有运输结构的范围和现有运输结构的容量在全世界迅速增长。与此同时,最大限度地减少对交通的影响,缩短施工持续时间对司法管辖区,工程师和承包商构成重大挑战。本文介绍了在大多伦多地区(GTA)内的主要水流上加宽了现有双车道桥的项目。需要两个额外的车道来改善交叉水流的道路的车辆交通流量。主题桥及其提出的扩大是半积分邻接型。这种类型的桥的特征在于超大结构和子结构部件的高耐久性。检查了使用钢Ⅰ梁和钢箱梁的两个甲板系统,以实现最佳的桥梁设计。一些各种挑战是在施工期间维持现有的桥梁功能,并使水流无与伦比的碎片流动。此外,考虑了扩展结构的高耐久性措施以及在合理预算中减少了施工时间表。因此,设计/施工标准集中了一种创新的加速施工方法,以满足这种具有挑战性的需求。通过这种方法,提出了一种用玻璃纤维增​​强聚合物(GFRP)棒的预制混凝土板(GFRP)棒的预制混凝土板的甲板系统,并在现场接合,具有超高性能混凝土(UHPC)。拟议的建筑方法,由这种先进的建筑材料辅以,适用于短期和长期方面的项目的技术和财务措施。

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