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Pseudo-dynamic approach of seismic design for waterfront reinforced soil-wall

机译:滨水加筋土墙抗震设计的拟动力方法

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Recent failures of waterfront retaining walls under seismic conditions have made the topic important to the researchers to obtain an alternative design solution for those structures. In the present paper, a simple design methodology for waterfront reinforced soil-retaining wall by considering both the hydrodynamic pressure and seismic forces acting simultaneously on the wall has been proposed. The seismic forces are calculated using the pseudo-dynamic approach, which considers the velocities of the shear and primary waves propagating through the soil. Limit equilibrium analysis by considering the horizontal slice method has been adopted. Two types of failure surfaces, viz., linear and polylinear have been used and the results have been reported in terms of normalized value of the geosynthetic reinforcement strength required to counter the hydrostatic pressure, hydrodynamic pressure, and the seismic inertia forces acting on the waterfront wall. Effects of different parameters on this normalized value of the geosynthetic reinforcement strength are also assessed. It was observed that the requirement of geosynthetic reinforcement increases with increase in the horizontal seismic acceleration, vertical seismic acceleration, and the hydrodynamic pressure acting on the waterfront reinforced soil-wall system. Comparing the results of the present methodology with an existing methodology but for the dry backfill case shows that the present results are on the economical side. Merits of the proposed simple design methodology are also highlighted.
机译:近期在地震条件下的滨水挡土墙的失败使该主题对于研究人员而言很重要,以获得针对这些结构的替代设计解决方案。在本文中,提出了一种既考虑水动力压力又考虑同时作用于墙体的地震力的简单设计方法。地震力是使用拟动力方法计算的,拟动力方法考虑了在土壤中传播的剪切波和初级波的速度。通过考虑水平切片法进行极限平衡分析。已经使用了两种类型的破坏面,即线性破坏面和多线性破坏面,并且根据抵抗水压,水动力压力和作用在海旁的地震惯性力所需的土工合成增强强度的标准化值报告了结果。壁。还评估了不同参数对该土工合成增强强度标准化值的影响。可以看出,随着水平地震加速度,垂直地震加速度和作用于滨水加固土墙系统的水动力压力的增加,土工合成材料的要求也随之增加。将本方法的结果与现有方法进行比较,但对于干回填情况,则表明本结果在经济方面。还强调了所提出的简单设计方法的优点。

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