考虑复合破坏面的c- -Φ土浅条形基础拟动力承载力——基于拟动力方法的承载力分析

IF 0.5 Q4 ENGINEERING, GEOLOGICAL
Arijit Saha, Sima Ghosh
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引用次数: 14

摘要

地震荷载作用下浅条形基础承载力评价是一个重要的研究课题。本文提出了考虑复合破坏机制的c-F地基浅条形基础抗震承载力的拟动力评价方法——极限平衡法。本文采用单一的地震承载力系数(N?e)来表示单位自重、堆载和黏聚力的同时抗力,更能真实地模拟破坏机理。考虑了土体摩擦角(F)、土体黏聚力(c)、横波和主波速度(Vs、Vp)以及水平和垂直地震加速度(kh、kv)的影响,对地基的抗震承载力进行了评价。从本分析中得到的结果以表格和图形两种无量纲形式呈现。结果与文献中已有的数值进行了比较,并讨论了本文方法在浅条形基础设计中的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pseudo-Dynamic Bearing Capacity of Shallow Strip Footing Resting on c-Φ Soil Considering Composite Failure Surface: Bearing Capacity Analysis Using Pseudo-Dynamic Method
The evaluation of bearing capacity of shallow strip footing under seismic loading condition is an important phenomenon. This paper presents a pseudo-dynamic approach to evaluate the seismic bearing capacity of shallow strip footing resting on c-F soil using limit equilibrium method considering the composite failure mechanism. A single seismic bearing capacity coefficient (N?e) presents here for the simultaneous resistance of unit weight, surcharge and cohesion, which is more practical to simulate the failure mechanism. The effect of soil friction angle(F), soil cohesion(c), shear wave and primary wave velocity(Vs, Vp) and horizontal and vertical seismic accelerations(kh, kv) are taken into account to evaluate the seismic bearing capacity of foundation. The results obtained from the present analysis are presented in both tabular and graphical non-dimensional form. Results are thoroughly compared with the existing values in the literature and the significance of the present methodology for designing the shallow strip footing is discussed.
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
11
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