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The 200-year Bridge Substructure-Foundations for Resilience and Sustainability

机译:具有200年历史的桥梁下部结构为恢复力和可持续性奠定了基础

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For coastal water crossings, the most susceptible elements to deterioration are the foundations, especially in the tidal and splash zones. The bridge substructure is usually the most time-consuming, environmentally-sensitive, and construction-risky element to build. Multiple technologies are now available for the rapid and economical replacement of bridge superstructures, that can reuse existing foundations efficiently. Widening of existing structures can equally benefit from the reuse of existing foundations in good condition, if the span lengths are set appropriately with consideration for future needs. History shows us that surface transportation design criteria, public needs, and travel modes are transient. With autonomous vehicles and increasing light-rail demand, predicting future lane widths, loadings or bridge widening requirements even in the next 50 years is challenging. Therefore, durable, adaptable, and reusable-resilient foundations represent a low risk, sustainable investment for a 200-year bridge, especially when compared to bridge superstructures. The successful design for such an ambitious goal is also dependent on selecting the appropriate geometric and hydraulic parameters for anticipated needs of such as: flow capacity; navigational clearance; and potential changes in design elevations either due to sea-level rise and/or increasing storm surge and wave crest heights. This paper explores some of the latest reinforced/prestressed concrete solutions that are emerging to meet these ambitious but worthy goals.
机译:对于沿海水域交叉口而言,最容易退化的因素是地基,尤其是在潮汐区和飞溅区。桥梁下部结构通常是最耗时、对环境敏感且施工风险最大的构件。现在有多种技术可用于快速、经济地更换桥梁上部结构,从而有效地重新利用现有基础。如果考虑到未来的需要,适当设置跨度长度,现有结构的加宽同样可以受益于良好状态下现有基础的再利用。历史告诉我们,地面交通设计标准、公共需求和出行模式都是短暂的。随着自动驾驶车辆和轻轨需求的增加,预测未来的车道宽度、荷载或桥梁加宽要求甚至在未来50年都是一项挑战。因此,耐久、适应性强、可重复使用的弹性基础代表了200年桥梁的低风险、可持续投资,尤其是与桥梁上部结构相比。实现这一宏伟目标的成功设计还取决于选择适当的几何和水力参数,以满足预期的需求,例如:流量;航行净空;以及由于海平面上升和/或风暴潮和波峰高度增加而导致的设计高程的潜在变化。本文探讨了一些最新的钢筋/预应力混凝土解决方案,这些方案正在出现,以满足这些雄心勃勃但有价值的目标。

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