Bearing capacity of combined loading footings on geosynthetic-reinforced granular soil

IF 2.8 2区 工程技术 Q2 ENGINEERING, GEOLOGICAL
B. Yaghoobi, H. Fathipour, M. Payan, R. Chenari
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引用次数: 1

Abstract

In this study, the ultimate bearing capacity of shallow strip footings resting on a geosynthetic-reinforced soil mass subjected to inclined and eccentric combined loading is rigorously examined through the well-established method of lower bound limit analysis (LA) in conjunction with finite element (FE) and second-order cone programming (SOCP). Lower bound limit analysis formulation is modified to consider the ultimate tensile force of the geosynthetic layer in the soil mass so as to account for both pullout (sliding) and rupture (structural) modes of reinforcement failure. The effects of several parameters, including the embedment depth (u) and the ultimate tensile force (Tu) of the geosynthetic layer along with load inclination angle (α) and load eccentricity (e), on the bearing capacity ratio (BCR) and failure envelopes of the overlying shallow foundation are examined and discussed. The results generally show a marked increase in the ultimate bearing capacity of the surface footing against combined loading with the inclusion of a single geosynthetic layer. Results also reveal that a second intermediate reinforcement might be required to bear a dual performance against both vertical concentric and combined loading so as to more effectively support the footing.
土工合成材料加筋颗粒土上组合荷载基脚的承载力
在本研究中,通过下限分析(LA)与有限元(FE)和二阶锥规划(SOCP)相结合的成熟方法,严格检查了土工合成材料加筋土体上浅条形基脚在倾斜和偏心组合荷载作用下的极限承载力。对下限分析公式进行了修改,以考虑土体中土工合成层的极限拉力,从而考虑钢筋破坏的拉拔(滑动)和断裂(结构)模式。研究和讨论了土工合成层的埋置深度(u)和极限拉力(Tu)以及荷载倾角(α)和荷载偏心率(e)等几个参数对上覆浅基础承载力比(BCR)和破坏包络线的影响。结果通常表明,在包含单个土工合成材料层的情况下,表面基脚的极限承载力显著增加,以抵抗组合荷载。结果还表明,可能需要第二个中间钢筋来承受垂直同心荷载和组合荷载的双重性能,以便更有效地支撑基脚。
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来源期刊
Geosynthetics International
Geosynthetics International ENGINEERING, GEOLOGICAL-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
6.90
自引率
20.00%
发文量
91
审稿时长
>12 weeks
期刊介绍: An online only, rapid publication journal, Geosynthetics International – an official journal of the International Geosynthetics Society (IGS) – publishes the best information on current geosynthetics technology in research, design innovation, new materials and construction practice. Topics covered The whole of geosynthetic materials (including natural fibre products) such as research, behaviour, performance analysis, testing, design, construction methods, case histories and field experience. Geosynthetics International is received by all members of the IGS as part of their membership, and is published in e-only format six times a year.
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