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首页> 外文期刊>Transportation Research Record >Mobilization of Passive Earth Pressures Behind Abutments of Jointless Bridges
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Mobilization of Passive Earth Pressures Behind Abutments of Jointless Bridges

机译:无接缝桥基台背后的被动土压力动员

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摘要

Bridges without expansion joints are referred to as integral bridges. The abutment and the superstructure of integral bridges act as a single structural unit. As the temperature of an integral bridge changes, the length of the bridge increases and decreases. The changes push the abutment against the approach fill and pull it away and thus cause lateral deflections. The movement of the abutment into the approach fill develops passive earth pressure that is displacement dependent. Although earth pressures are detrimental for the substructure of a bridge, they are beneficial for the superstructure because they reduce the bending moments caused by the dead loads and the live loads in the bridge girders. Therefore, relying on the beneficial effects of the full passive earth pressures, regardless of the displacement, is not conservative. Charts are proposed to estimate the magnitude of the resultant force and the point of application of the resultant force as a function of the wall displacement. Medium-dense and dense granular backfill materials were considered in developing the charts. The need for estimating the maximum mobilized passive earth pressures for Jointless bridges with cohesionless backfill may be fulfilled with the proposed charts.
机译:没有伸缩缝的桥梁称为整体桥梁。整体桥的桥台和上部结构充当单个结构单元。随着整体桥的温度变化,桥的长度增加和减小。这些变化将基台推向进近填充并将其拉开,从而引起横向偏斜。基台移入进场填充物会产生与位移相关的被动土压力。尽管土压力对桥梁的下部结构是有害的,但它们对于上部结构是有利的,因为它们减少了桥梁中的静载荷和活载荷所引起的弯矩。因此,不管位移如何,依靠完全被动土压力的有益效果并不保守。建议使用图表来估计合力的大小以及合力的施加点随壁位移的变化。在绘制图表时考虑了中等密度和致密的颗粒回填材料。所建议的图表可以满足估算无粘结回填的无接缝桥梁的最大动员被动土压力的需求。

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