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Laterally Cantilevered Space Frame For The Roadway Widening In Steep-sloped Mountainous Areas

机译:陡坡山区巷道加宽的横向悬臂空间框架

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Conventional approach for widening of roadway in steep-sloped mountainous area requires deep cuts and high fills that involve massive excavation and retaining efforts. In most cases, such construction activities on slope are difficult, costly, and unsafe. In the landslide-prone area, it is often impractical and undesirable because it would lead to potential slope instability and initiates new landslides during the service period. To provide a more practical and inexpensive alternative, a laterally cantilevered space frame consisting of single-column bents and ground tieback anchors was developed for hillside roadway widening. In this space frame system, the ground anchors are used as integral structural components attached to the column top to resist overturning. Under vertical loading, the anchor-structure interaction in this frame system can generate a nailing effect on the slope at the column base. Since this interaction can effectively convert surcharge loadings such as structure weight and traffic load into clamping pressure on the slope, loading-induced complications to the slope instability can be removed. This system offers significant advantages over the conventional approach. These advantages include a substantial reduction in working area and excavation required, low life cycle costs resulting from reduced construction work and potential maintenance needs, and minimized environmental impact due to limited alteration on the existing slope condition.
机译:在陡坡山区拓宽巷道的常规方法需要进行深挖和高填方,这需要大量的挖掘工作并需付出努力。在大多数情况下,这种在斜坡上的施工活动是困难,昂贵和不安全的。在易发生滑坡的地区,这通常是不切实际和不希望的,因为它会导致潜在的边坡失稳,并在使用期间引发新的滑坡。为了提供一种更实用,更便宜的替代方案,开发了一种由单柱弯头和地面回旋锚组成的横向悬臂空间框架,用于加宽山坡巷道。在该空间框架系统中,地锚用作连接到立柱顶部的整体结构部件,以防止倾覆。在垂直荷载下,该框架系统中的锚固结构相互作用会在立柱底部的斜坡上产生钉子效应。由于这种相互作用可以有效地将诸如结构重量和交通负荷之类的附加载荷转换成对斜坡的夹紧压力,因此可以消除载荷引起的对斜坡失稳的复杂性。与常规方法相比,该系统具有明显的优势。这些优势包括工作面积和所需开挖的显着减少,因减少的建筑工作和潜在的维护需求而导致的低生命周期成本,以及由于对现有斜坡条件的有限变更而对环境的影响最小。

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