有限土体地震主动土压力的拟动力分析
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1.兰州交通大学 土木工程国家级实验教学示范中心;2.兰州交通大学 土木工程学院

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国家自然科学基金(42362033);中铁科学研究院科技项目(2023-KC-02)


Pseudo-Dynamic Analysis of Seismic Active Earth Pressure of Finite Soils
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1.National Demonstration Center for Experimental Civil Engineering Education,Lanzhou JiaoTong University;2.Civil Engineering School,Lanzhou JiaoTong University

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    摘要:

    支挡结构后面填土空间受限时,就形成有限土体土压力问题,地震主动土压力是震区挡墙抗震设计的主要荷载,现有的地震土压力计算理论主要是针对半无限填土,不适合计算有限土体地震土压力。采用拟动力法计算地震惯性力,考虑土拱效应,采用水平微分单元法建立有限土体地震主动土压力微分方程,并将其解析结果与试验结果和其他理论解进行对比分析,验证了本文方法的合理性,通过主要参数分析,揭示了有限土体地震主动土压力分布规律。结果表明:计算有限土体地震主动土压力时,最不利地震惯性力方向组合为Qv竖直向下,Qh水平指向挡土墙方向;参数分析讨论了水平地震系数、有限土体宽度、填土粘聚力、内摩擦角、墙土外摩擦角对有限土体地震主动土压力系数、有限土体地震主动土压力分布的影响。文中提出的计算方法可为填土受限的支挡结构抗震计算提供一定的理论参考。

    Abstract:

    Earth pressure of finite soil will arise when the backfill width behind retaining structure is limited. Seismic active earth pressure is the primary load for retaining wall design in earthquake areas. Existing seismic earth pressure calculation theory which is suitable for semi-infinite fill does not apply to calculating seismic earth pressure of finite backfill. Seismic inertia force is caculated with pseudo-dynamic method, and differential equations for seismic active earth pressure of finite backfill are established with horizontal differential element method considering soil arching effect.Comparisons and analysis of the analytical results and experiment results are performed as well as other theoretical solutions, and the rationality of the proposed method is verified. By analyzing the main parameters, the distribution rules of seismic active earth pressure of finite backfill are revealed. The results show that the most disadvantage combination of seismic inertia force direction is that Qv is vertical downward and Qh is horizontal towards the retaining wall. The parameter analysis discusses the effects of horizontal seismic coefficient, finite backfill width, fill cohesion, internal friction angle and wall-soil friction angle on the seismic active earth pressure coefficient and distribution. The proposed calculation method can

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  • 收稿日期:2025-01-10
  • 最后修改日期:2025-06-19
  • 录用日期:2025-07-17
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