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刘吉福, 郑刚, 安关峰. 稳定路基中刚性桩抗弯能力验算简易方法[J]. 岩土工程学报, 2013, 35(8): 1387-1396.
引用本文: 刘吉福, 郑刚, 安关峰. 稳定路基中刚性桩抗弯能力验算简易方法[J]. 岩土工程学报, 2013, 35(8): 1387-1396.
LIU Ji-fu, ZHENG Gang, AN Guan-feng. Simple method for checking flexural capacity of rigid piles of stable embankment[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(8): 1387-1396.
Citation: LIU Ji-fu, ZHENG Gang, AN Guan-feng. Simple method for checking flexural capacity of rigid piles of stable embankment[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(8): 1387-1396.

稳定路基中刚性桩抗弯能力验算简易方法

Simple method for checking flexural capacity of rigid piles of stable embankment

  • 摘要: 稳定路基的刚性桩复合地基会产生一定的侧向位移,其刚性桩会承受一定的弯矩并可能开裂。为了保证刚性桩复合地基路基的长期稳定性,应验算路堤下复合地基刚性桩的抗弯能力。为减小路堤下复合地基刚性桩的抗弯能力验算难度,需要研究刚性桩弯矩简易计算方法。首先,基于大量公路路基软基试验和监测工程,对路基最大沉降与最大侧向位移的关系进行了统计研究,得到了两者之间的经验关系式;然后,根据路堤下复合地基和刚性桩的侧向位移曲线形状,提出刚性桩水平受力简化模型,并对复合地基刚性桩弯矩与最大侧向位移之间的关系进行了理论推导。在上述研究的基础上,提出了根据复合地基沉降得到桩身弯矩的简易方法。工程算例表明该方法简单、可行。研究表明,刚性桩位移与桩间土位移基本相等,可忽略不计桩土位移差对刚性桩弯矩的影响;当刚性桩进入硬土层的长度超过7倍桩径时,可认为刚性桩在软土层底面处固定。

     

    Abstract: Since rigid-pile composite ground of a stable embankment deforms laterally, the rigid piles in the composite ground bear bending moment and may be cracked. The flexural capacity of rigid piles should be checked for the long-term stability of the embankment treated by rigid-pile composite ground. To reduce the difficulty of checking the flexural capacity of rigid piles in the composite ground under the embankment, the studies on simple methods for calculation of the bending moment of rigid piles are needed. First of all, the relationship between the maximum settlement and the maximum lateral deformation of embankments is statistically studied based on experimental and monitoring data of many soft ground and embankment projects of highways, and an empirical equation for the maximum settlement and the maximum lateral deformation of embankments is obtained. Then a simplified model for lateral forces of rigid piles is proposed using the lateral deformation curves of composite ground and rigid piles under embankments, and the relationship between the bending moment and the maximum lateral deformation of rigid piles is derived. The bending moment of rigid piles is suggested to be calculated according to the maximum settlement of embankments. The proposed method is proven to be simple and reasonable by an actual project. It is shown that the lateral deformation of piles is nearly equal to that of the surrounding soils, and the difference of lateral deformation between the piles and the soils can be neglected. The rigid piles can be thought to be fixed at the lower surface of soft stratum if their fixed length in underlying hard stratum is 7 times larger than their diameter.

     

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