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Literature Review of Causes and Mitigation Techniques for Bumps at Ends of Bridges

机译:桥梁末端颠簸的成因及缓解技术文献综述

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Bridges supported by abutments on rock or end-bearing piles are not expected to settle. However, sometimes approach embankments to bridge abutments settle due to underlying compressible soil and/or traffic loading, causing bumps at the ends of bridges resulting from differential settlement between abutments and embankments. Climatic conditions including temperature changes and heavy rainfalls may also cause bumps. The seasonal temperature change generates expansion and contraction on bridge girders, which induce soil movements in the backfill behind the abutments. Heavy rainfall may cause erosion in the backfill when drainage systems are insufficient. In addition, improper design and construction may end with settlement of the backfill. This paper provides a comprehensive literature review and summarizes the internal and external reasons and mitigation techniques for bumps at the ends of bridges. The mitigation techniques are classified into five categories and compared in terms of their advantages and disadvantages: (1) bridges on shallow foundations supported by geosynthetic-reinforced soil (GRS); (2) use of lightweight fill; (3) use of approach slabs to create a smooth transition between bridges and embankments; (4) improvement of soft soils underneath embankments; and (5) stabilization of embankment fill.
机译:预计在岩石或端承桩上由桥台支撑的桥梁不会沉降。但是,有时由于基层可压缩的土壤和/或交通负荷而使桥基接近路堤沉降,这是由于桥基和路堤之间的差异沉降而导致的桥梁末端的颠簸。气候条件(包括温度变化和大雨)也可能引起颠簸。季节性的温度变化会在桥梁大梁上产生膨胀和收缩,从而在桥台后面的回填土中引起土壤运动。排水系统不足时,大雨可能会导致回填土流失。此外,不正确的设计和施工可能会因回填物的沉降而告终。本文提供了全面的文献综述,并总结了桥梁末端颠簸的内部和外部原因以及缓解技术。缓解技术分为五类,并按其优缺点进行了比较:(1)土工合成材料加筋的浅层地基上的桥梁; (2)使用轻质填料; (3)使用进近平板在桥梁和路堤之间建立平滑过渡; (4)改善路堤下面的软土; (5)稳定路堤填土。

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