岩土力学
巖土力學
암토역학
ROCK AND SOIL MECHANICS
2014年
z1期
165-172
,共8页
祝廷尉%胡新丽%徐聪%雍睿
祝廷尉%鬍新麗%徐聰%雍睿
축정위%호신려%서총%옹예
抗滑桩%物理模型试验%相似理论%土压力%桩身变形
抗滑樁%物理模型試驗%相似理論%土壓力%樁身變形
항활장%물리모형시험%상사이론%토압력%장신변형
anti-sliding pile%physical model test%similarity theory%soil pressure%deflection of pile
进行嵌岩桩与滑坡体相互作用的框架式滑坡物理模型试验,根据微型土压力盒和电阻应变计的监测数据,分别研究滑坡推力作用下模型桩的受力特征、桩身弯矩分布规律及模型变形破坏模式。试验结果表明,嵌岩桩加固后的滑坡,桩后推力随深度的增加呈抛物线型分布形式,合力作用点约在滑动面以上模型桩自由段的1/2处;嵌岩模型桩有明显的抗滑特性,承担了大部分桩后推力,传递至桩前土压力值较小且稳定;模型桩的桩身弯矩分布形式不同于普通抗滑桩弯矩分布形式,自由段埋深0~15 cm 范围内为主要弯矩承受区域,最大弯矩截面位于滑面上模型桩自由段1/3处,滑动面处桩身弯矩绝对值较小;滑坡模型在沿滑面推力加载作用下发生桩后滑体越桩滑动破坏。该试验成果为嵌岩桩的抗滑特性研究提供了科学依据,可为该类型抗滑桩设计提供一定的指导性建议。
進行嵌巖樁與滑坡體相互作用的框架式滑坡物理模型試驗,根據微型土壓力盒和電阻應變計的鑑測數據,分彆研究滑坡推力作用下模型樁的受力特徵、樁身彎矩分佈規律及模型變形破壞模式。試驗結果錶明,嵌巖樁加固後的滑坡,樁後推力隨深度的增加呈拋物線型分佈形式,閤力作用點約在滑動麵以上模型樁自由段的1/2處;嵌巖模型樁有明顯的抗滑特性,承擔瞭大部分樁後推力,傳遞至樁前土壓力值較小且穩定;模型樁的樁身彎矩分佈形式不同于普通抗滑樁彎矩分佈形式,自由段埋深0~15 cm 範圍內為主要彎矩承受區域,最大彎矩截麵位于滑麵上模型樁自由段1/3處,滑動麵處樁身彎矩絕對值較小;滑坡模型在沿滑麵推力加載作用下髮生樁後滑體越樁滑動破壞。該試驗成果為嵌巖樁的抗滑特性研究提供瞭科學依據,可為該類型抗滑樁設計提供一定的指導性建議。
진행감암장여활파체상호작용적광가식활파물리모형시험,근거미형토압력합화전조응변계적감측수거,분별연구활파추력작용하모형장적수력특정、장신만구분포규률급모형변형파배모식。시험결과표명,감암장가고후적활파,장후추력수심도적증가정포물선형분포형식,합력작용점약재활동면이상모형장자유단적1/2처;감암모형장유명현적항활특성,승담료대부분장후추력,전체지장전토압력치교소차은정;모형장적장신만구분포형식불동우보통항활장만구분포형식,자유단매심0~15 cm 범위내위주요만구승수구역,최대만구절면위우활면상모형장자유단1/3처,활동면처장신만구절대치교소;활파모형재연활면추력가재작용하발생장후활체월장활동파배。해시험성과위감암장적항활특성연구제공료과학의거,가위해류형항활장설계제공일정적지도성건의。
This paper presents the study of interaction between the bottom built-in piles and landslide mass through the landslide physical model test. Based on the monitoring data from micro soil pressure cells and resistance strain gauges, mechanical characteristics of model pile, bending moment distribution rule of pile body and model deformation failure mode are studied. The test results show that the trust behind the pile is a parabolic distribution and the resultant force point is in half of free part above the sliding surface. Since the built-in piles take the most part of pushing force, the soil resistance in front of it is more stable and smaller. Meanwhile, the bending moment distribution form of pile body is different from any ordinary anti-sliding pile. The range from 0 to 15 cm depth is the main bearing area of bending moment and the maximum moment lays in one third of free part above the sliding surface. The bending moment near the sliding surface is relatively small. At last, the sliding mass flows above the model piles under the pushing force when the test comes to the end. The results of indoor model test show some regulations of the anti-sliding characteristics and provide scientific guidance for the design of rock-socketed piles.