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Estimation of the Effect of Lateral Flow on Piled Bridge Abutments in Soft Ground Considering Piled Slabs as a Countermeasure of the Abutments

机译:考虑桩板作为基台的对策,估算软土地基中的横向流动对桩基桥台的影响

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摘要

The effectiveness of a simple method to estimate the lateral movement of piled bridge abutments due to lateral flow from the safety factor (Fs) of slope stability analysis was studied. This was accomplished through the construction and measurement of actual piled bridge abutments and its backfill, with and without piled slabs as a countermeasure. To do this, a computer program SLOPILE (VER 3.0) considering the lateral earth pressure acting on a row of piled bridge abutment was developed. SLOPILE (VER 3.0) can calculate the slope stability for both planar failure surfaces in infinite slopes and arc failure surfaces based on Fellenius or Bishop simplified methods. SLOPILE (VER 3.0) was utilized to design the piled bridge abutment reinforced by a piled slab at a real site. The piled slab can effectively prevent the lateral flow of soft ground and satisfy not only the safety factor of a slope but also the allowable bearing capacity of piles. To verify the design method, an instrumentation system was adapted. The instrumentation results from a case study clearly showed that the piled slab effectively resisted the lateral movement of a bridge abutment due to placement of backfill. Also, the surcharge loads due to backfill were supported by the piled slab and transmitted to the bedrock through the piled slab.
机译:研究了一种简单方法的有效性,该方法可根据边坡稳定性分析的安全系数(Fs)估算因侧向流动而引起的桥式桥台的侧向运动。这是通过建造和测量实际的桥桩基台及其回填来实现的,有和没有桩板都可以作为对策。为此,开发了一种计算机程序SLOPILE(VER 3.0),该程序考虑了作用在一行桩式桥台上的横向土压力。 SLOPILE(VER 3.0)可以基于Fellenius或Bishop简化方法来计算无限大坡度中的平面破坏面和弧形破坏面的边坡稳定性。 SLOPILE(VER 3.0)用于在实际工地设计由桩板加固的桩桥基台。桩板可以有效地防止软土地基的侧向流动,不仅可以满足边坡的安全系数,还可以满足桩的容许承载力。为了验证设计方法,对仪表系统进行了改装。案例研究的仪器结果清楚地表明,由于放置回填,堆积的平板有效地抵抗了桥台的横向运动。同样,由于回填而产生的附加载荷由堆积板支撑,并通过堆积板传递到基岩。

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