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Design and Construction of the Deh Cho Bridge Challenges, Innovation, and Opportunities

机译:DEH Cho Bridge挑战,创新和机遇的设计与构建

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The Deh Cho Bridge will be the first bridge structure crossing the Mackenzie, Canada's longest river. When the bridge is opened it will permanently replace ferry and ice road services along Highway 3 connecting Yellowknife in the Northwest Territories with Highway 1 in the South. The bridge's remote location in the North with severe winter conditions of up to -40 °C requires meticulous planning and is an extraordinary challenge for men and equipment (see Figure 1). Innovative design methods led to the design of a unique 1045 m long continuous cable supported superstructure with expansion joints only at the abutments. The design employs ecological light-weight design principles as well as fast-tracked fabrication and erection methods. Structural performance of the superstructure has been optimized for construction and service scenarios allowing a high degree of repetition as well as aesthetic proportions and rhythm. Serious design challenges often require new philosophies and strategies. On the other hand, they provide exceptional opportunities for innovation. The Assembly-line Design Approach, the Failure Mechanism Concept, and the Fuse Design Philosophy have been specifically developed for the Deh Cho Bridge with the purpose to cope with extraordinary schedule and design requirements.
机译:Deh Cho Bridge将成为继加拿大Mackenzie的第一座桥梁结构。当桥梁打开时,它将永久取代沿着西北地区的高速公路3号黄刀的渡轮和冰路服务,南部的高速公路。桥梁在北方的偏远地点,严重的冬季条件高达-40°C需要细致的规划,对男性和设备来说是一个非凡的挑战(见图1)。创新的设计方法导致了独特的1045米长连续电缆的设计,其中仅在基座上具有膨胀接头的上层建筑。该设计采用生态轻型设计原理以及快速跟踪的制造和勃起方法。上部结构的结构性能已经针对建筑和服务场景进行了优化,允许高度重复以及美学比例和节奏。严肃的设计挑战通常需要新的哲学和策略。另一方面,他们为创新提供了特殊的机会。集装线设计方法,故障机制概念和保险丝设计理念已经专门为DEH Cho Bridge开发,目的是应对非凡的计划和设计要求。

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