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Uplift Pile Test in Rocks and Its Bearing Capacity 被引量:2
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作者 吴兴序 于志强 袁文忠 《Journal of Southwest Jiaotong University(English Edition)》 2002年第1期84-89,共6页
This paper reports in situ tension test and laboratory model test for large diameter, manually digging anchorage piles in the 2nd Luzhou Changjiang Bridge. Tension behavior, uplift bearing capacity and influenc... This paper reports in situ tension test and laboratory model test for large diameter, manually digging anchorage piles in the 2nd Luzhou Changjiang Bridge. Tension behavior, uplift bearing capacity and influence of rock characteristics on bearing capacity are discussed. Proposes are presented with respect to issues related to the construction and design of uplift piles. 展开更多
关键词 uplift pile ROCK bearing capacity test
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Influence of reaction piles on test pile response in a static load test 被引量:2
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作者 Qian-qing ZHANG Shu-cai LI Zhong-miao ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第3期198-205,共8页
This work presents a new analytical method to analyze the influence of reaction piles on the test pile response in a static load test.In our method,the interactive effect between soil and pile is simulated using indep... This work presents a new analytical method to analyze the influence of reaction piles on the test pile response in a static load test.In our method,the interactive effect between soil and pile is simulated using independent springs and the shear displacement method is adopted to analyze the influence of reaction piles on test pile response.Moreover,the influence of the sheltering effect between reaction piles and test pile on the test pile response is taken into account.Two cases are analyzed to verify the rationality and efficiency of the present method.This method can be easily extended to a nonlinear response of an influenced test pile embedded in a multilayered soil,and the validity is also demonstrated using centrifuge model tests and a computer program presented in the literature.The present analyses indicate that the proposed method will lead to an underestimation of the test pile settlement in a static load test if the influence of the presence of reaction piles on the test pile response is neglected. 展开更多
关键词 test pile Reaction pile Shear displacement method Sheltering effect Multilayered soil
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Model tests on XCC-piled embankment under dynamic train load of high-speed railways 被引量:8
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作者 Niu Tingting Liu Hanlong +1 位作者 Ding Xuanming Zheng Changjie 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期581-594,共14页
Piled embankments,which offer many advantages,are increasingly popular in construction of high-speed railways in China.Although the performance of piled embankment under static loading is well-known,the behavior under... Piled embankments,which offer many advantages,are increasingly popular in construction of high-speed railways in China.Although the performance of piled embankment under static loading is well-known,the behavior under the dynamic train load of a high-speed railway is not yet understood.In light of this,a heavily instrumented piled embankment model was set up,and a model test was carried out,in which a servo-hydraulic actuator outputting M-shaped waves was adopted to simulate the process of a running train.Earth pressure,settlement,strain in the geogrid and pile and excess pore water pressure were measured.The results show that the soil arching height under the dynamic train load of a high-speed railway is shorter than under static loading.The growth trend for accumulated settlement slowed down after long-term vibration although there was still a tendency for it to increase.Accumulated geogrid strain has an increasing tendency after long-term vibration.The closer the embankment edge,the greater the geogrid strain over the subsoil.Strains in the pile were smaller under dynamic train loads,and their distribution was different from that under static loading.At the same elevation,excess pore water pressure under the track slab was greater than that under the embankment shoulder. 展开更多
关键词 piled embankment model test dynamic train load of high-speed railways XCC-pile M-shaped wave
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Regressive approach for predicting bearing capacity of bored piles from cone penetration test data 被引量:4
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作者 Iyad S. Alkroosh Mohammad Bahadori +1 位作者 Hamid Nikraz Alireza Bahadori 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2015年第5期584-592,共9页
In this study, th e least sq u are su p p o rt v ecto r m achine (LSSVM) alg o rith m w as applied to predicting th ebearing capacity o f b ored piles e m b ed d ed in sand an d m ixed soils. Pile g eo m etry an d c... In this study, th e least sq u are su p p o rt v ecto r m achine (LSSVM) alg o rith m w as applied to predicting th ebearing capacity o f b ored piles e m b ed d ed in sand an d m ixed soils. Pile g eo m etry an d cone p e n e tra tio nte s t (CPT) resu lts w ere used as in p u t variables for pred ictio n o f pile bearin g capacity. The d ata u se d w erecollected from th e existing litera tu re an d consisted o f 50 case records. The application o f LSSVM w ascarried o u t by dividing th e d ata into th re e se ts: a train in g se t for learning th e pro b lem an d obtain in g arelationship b e tw e e n in p u t variables an d pile bearin g capacity, and testin g an d validation sets forevaluation o f th e predictive an d g en eralization ability o f th e o b tain ed relationship. The predictions o f pilebearing capacity by LSSVM w ere evaluated by com paring w ith ex p erim en tal d ata an d w ith th o se bytrad itio n al CPT-based m eth o d s and th e gene ex pression pro g ram m in g (GEP) m odel. It w as found th a t th eLSSVM perform s w ell w ith coefficient o f d eterm in atio n , m ean, an d sta n d ard dev iatio n equivalent to 0.99,1.03, an d 0.08, respectively, for th e testin g set, an d 1, 1.04, an d 0.11, respectively, for th e v alidation set. Thelow values o f th e calculated m ean squared e rro r an d m ean ab so lu te e rro r indicated th a t th e LSSVM w asaccurate in p redicting th e pile bearing capacity. The results o f com parison also show ed th a t th e p roposedalg o rith m p red icted th e pile bearin g capacity m ore accurately th a n th e trad itio n al m eth o d s including th eGEP m odel. 展开更多
关键词 Bored piles Cone penetration test(CPT) Bearing capacity Least square support vector machine(LSSVM) TRAINING VALIDATION
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Simulation analysis for O-cell test of pile and the interaction of upper pile and lower pile
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作者 郑英杰 张克绪 张尔其 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2009年第4期541-547,共7页
In this paper,the soil-pile system of O-cell test of pile is simplified as an axi-symmetric problem.By using aggregation of quadrilateral isoparametric elements to simulate pile and soil,setting Goodman's elements... In this paper,the soil-pile system of O-cell test of pile is simplified as an axi-symmetric problem.By using aggregation of quadrilateral isoparametric elements to simulate pile and soil,setting Goodman's elements between pile and soils,a method of numerical simulation analysis on O-cell test of pile is presented with the consideration of nonlinear mechanical behavior of soils and pile-soil interface.The method is applied to the analysis of a case of O-cell test of pile.The load-displacement curves and axial force curves of upper pile and lower pile obtained from the O-cell test of pile are fitted,and parameters of the mechanical model of soils and interface are determined.Analysis results validate that the numerical simulation analysis method put forward in this paper is applicable.Furthermore,the interaction and influence of upper pile and lower pile in the O-cell test are also studied with the method.The result shows that if load box is located in a soil layer with fine mechanical behavior,the interaction of upper pile and lower pile in O-cell test can be ignored generally. 展开更多
关键词 O-cell test of pile simulation analysis nonlinear behavior p-s curve interaction
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Shake table test of soil-pile groups-bridge structure interaction in liquefiable ground 被引量:16
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作者 Tang Liang Ling Xianzhang +2 位作者 Xu Pengju Gao Xia Wang Dongsheng 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第1期39-50,共12页
This paper describes a shake table test study on the seismic response of low-cap pile groups and a bridge structure in liquefiable ground. The soil profile, contained in a large-scale laminar shear box, consisted of a... This paper describes a shake table test study on the seismic response of low-cap pile groups and a bridge structure in liquefiable ground. The soil profile, contained in a large-scale laminar shear box, consisted of a horizontally saturated sand layer overlaid with a silty clay layer, with the simulated low-cap pile groups embedded. The container was excited in three E1 Centro earthquake events of different levels. Test results indicate that excessive pore pressure (EPP) during slight shaking only slightly accumulated, and the accumulation mainly occurred during strong shaking. The EPP was gradually enhanced as the amplitude and duration of the input acceleration increased. The acceleration response of the sand was remarkably influenced by soil liquefaction. As soil liquefaction occurred, the peak sand displacement gradually lagged behind the input acceleration; meanwhile, the sand displacement exhibited an increasing effect on the bending moment of the pile, and acceleration responses of the pile and the sand layer gradually changed from decreasing to increasing in the vertical direction from the bottom to the top. A jump variation of the bending moment on the pile was observed near the soil interface in all three input earthquake events. It is thought that the shake table tests could provide the groundwork for further seismic performance studies of low-cap pile groups used in bridges located on liquefiable groun. 展开更多
关键词 liquefiable ground seismic soil-pile-structure interaction pile groups of bridge shake table test
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Model Tests of Pile Defect Detection
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作者 Li Guocheng Wang Jingtao School of Civil Engineering , Huazhong University of Science and Technology , Wuhan 430074 《Journal of China University of Geosciences》 SCIE CSCD 2001年第4期321-324,共4页
The pile, as an important foundation style, is being used in engineering practice. Defects of different types and damages of different degrees easily occur during the process of pile construction. So, dietecting defec... The pile, as an important foundation style, is being used in engineering practice. Defects of different types and damages of different degrees easily occur during the process of pile construction. So, dietecting defects of the pile is very important. As so far, there are some difficult problems in pile defect detection. Based on stress wave theory, some of these typical difficult problems were studied through model tests. The analyses of the test results are carried out and some significant results of the low-strain method are obtained, when a pile has a gradually-decreasing crosssection part, the amplitude of the reflective signal originating from the defect is dependent on the decreasing value of the rate of crosssection β. No apparent signal reflected from the necking appeares on the velocity response curve when the value of β is less than about 3. 5 %. 展开更多
关键词 model tests pile defect detection stress wave responses.
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In-Situ Test on Fatigue Characteristics of Top-Mounted Dividable Pile-Board Subgrade for High-Speed Railway 被引量:5
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作者 苏谦 白皓 +1 位作者 王迅 蒋浩然 《Journal of Southwest Jiaotong University(English Edition)》 2010年第1期8-12,共5页
To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at differen... To simulate the fatigue characteristics of the pile-board structure under long-term dynamic load, using the in-situ dynamic testing system DTS-1, the forced vibration loading was repeated one million times at different cross-sections of the pile-board structure for high-speed railway. The dynamic deformation, permanent deformation and dynamic stress of main reinforcements were measured. The test results show that the dynamic responses of the pile-board structure almost did not vary with the forced vibration times under the simulated trainload. After one million times of forced vibration, the permanent deformations of the midspan section of intermediate span and midspan section of side span were 0.7 mm and 0. 6 mm, respectively, and there was no accumulative plastic deformation at the bearing section of intermediate span. 展开更多
关键词 High-speed railway Top-mounted dividable pile-board structure In-situ test Forced vibration test Fatigue characteristics
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Field load testing of copper extraction aeration pipes under simulated high heap pile
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作者 Shad M.Sargand Teruhisa Masada Jim Goddard 《International Journal of Mining Science and Technology》 SCIE EI 2013年第5期751-756,共6页
Recently a research team at Ohio University,USA,conducted a unique full-scale feld load test to simulate the aeration pipe installations at a copper extraction mine operated in Chile.The overliner material taken from ... Recently a research team at Ohio University,USA,conducted a unique full-scale feld load test to simulate the aeration pipe installations at a copper extraction mine operated in Chile.The overliner material taken from the mine was used in recreating the in situ conditions.Electric heaters were utilized to raise the temperature inside each pipe to simulate the essential element of the copper extraction process.The maximum vertical deflection reached by the test pipes was close to 20%,when the simulated heap pile height was 80 m.The plastic pipes and the overliner material were also tested in the laboratory.Based on the results,the maximum heap pile fll depth was recommended for the aeration system.The results indicated that the vertical deflection was the primary performance index for the aeration pipes installed in heap piles at mines.Lastly,the pipe made of polypropylene resin was super. 展开更多
关键词 Copper extraction Aeration pipe Heap pile Field load test Laboratory testing
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Shaking Table Tests on Bridge Foundation Reinforced by Antislide Piles on Slope 被引量:1
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作者 ZHOU Heng SU Qian +1 位作者 LIU Jie YUE Fei 《Earthquake Research in China》 CSCD 2019年第3期514-524,共11页
Based on the requirement of seismic reinforcement of bridge foundation on slope in the Chengdu-Lanzhou railway project,a shaking table model test of anti-slide pile protecting bridge foundation in landslide section is... Based on the requirement of seismic reinforcement of bridge foundation on slope in the Chengdu-Lanzhou railway project,a shaking table model test of anti-slide pile protecting bridge foundation in landslide section is designed and completed. By applying Wenchuan seismic waves with different acceleration peaks,the stress and deformation characteristics of bridge pile foundation and anti-slide pile are analyzed,and the failure mode is discussed. Results show that the dynamic response of bridge pile and anti-slide pile are affected by the peak value of seismic acceleration of earthquake,with which the stress and deformation of the structure increase. The maximum dynamic earth pressure and the moment of anti-slide piles are located near the sliding surface,while that of bridge piles are located at the top of the pile. Based on the dynamic response of structure,local reinforcement needs to be carried out to meet the requirement of the seismic design. The PGA amplification factor of the surface is greater than the inside,and it decreases with the increase of the input seismic acceleration peak. When the slope failure occurs,the tension cracks are mainly produced in the shallow sliding zone and the coarse particles at the foot of the slope are accumulated. 展开更多
关键词 SHAKING TABLE test Anti-slide pile Bridge pile FOUNDATION Dynamic response Damage mode
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The Shaking Table Test on the Performance of Cement-mixed Piles in Liquefiable Railway Foundations
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作者 ZHAO Mengyi XIE Qiang +1 位作者 CAO Xinwen ZHAO Wen 《Earthquake Research in China》 CSCD 2019年第1期120-131,共12页
Cement-mixed piles,as countermeasure against liquefaction of silt and sand ground,can improve the shear strength and bearing capacity of foundation soil,meaning cement-mixed piles are capable of resisting displacement... Cement-mixed piles,as countermeasure against liquefaction of silt and sand ground,can improve the shear strength and bearing capacity of foundation soil,meaning cement-mixed piles are capable of resisting displacement when an earthquake happens. However,investigations of cement-mixed piles by experimental methods such as the shaking table test is few and far between. It is especially true for the seismic performance of cement-mixed piles in liquefiable railway foundations in high seismic intensity regions. To this end,a cross-section of the Yuxi-Mengzi railway was selected as the prototype and studied by the shaking table test in this study. The results showed that composite foundation of cementmixed piles was not liquefied when the seismic acceleration was lower than 0. 30g. In the process of acceleration increasing from 0. 30g at 2Hz to 0. 60g at 3Hz,the upper middle silt outside slope toe was partly liquefied. The foundation soil under the shoulders and center of subgrade was far from the initial liquefaction criterion during the test. Cementmixed piles can effectively reduce the embankment settlement and differential settlement. It can be concluded that, the design of cement-mixed piles can ensure the seismic performance of the subgrade,and satisfy the seismic design requirements of the YuxiMengzi railway in areas of VIII degrees seismic fortification intensity. 展开更多
关键词 LIQUEFACTION Cement-mixed pile RAILWAY SHAKING table test
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Field Tests for Investigating the Extraction Rate of Piles Using a Vibratory Technique
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作者 QIN Zhaohui CHEN Longzhu +1 位作者 SONG Chunyu ZHANG Jingyi 《Journal of Shanghai Jiaotong university(Science)》 EI 2018年第4期482-489,共8页
Factors directly affecting the extraction rate of the piles pulled out by a vibratory pulling system are summarized and classified into five categories(excitation force,resistance,vibration amplitude,pile plumbness ke... Factors directly affecting the extraction rate of the piles pulled out by a vibratory pulling system are summarized and classified into five categories(excitation force,resistance,vibration amplitude,pile plumbness keeping,and slowing down at the later stage) from the mechanics and engineering practice.Field tests on steel sheet piles extracted by vibratory technique in different soil conditions are conducted to ascertain how these factors affect the extraction rate of a pile with regard to three major actors of vibratory pile pulling:the pile to be extracted,the selected pulling system,and the imposed soil conditions.The extraction rates of three different sheet pile types(having up to four different lengths) pulled out by two different vibratory pulling systems are documented.The piles with different lengths and types,pulled out with or without a clutch,have different extraction rates.The working parameters governing the vibratory hammer,such as excitation force and vibration amplitude,exert significant influences on the rate of pile extraction,especially in the early stages of up-lift process.The extraction rate of the piles driven in different soil conditions is uniform because different extraction resistances mainly refer to shaft friction.The properties of the pile-soil interface influence the extraction rate of the piles,and the extraction rate decreases with the time for which the piles have been buried in the earth. 展开更多
关键词 field tests steel sheet pile vibratory pile pulling extraction rate
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Study on soil-pile-structure-TMD interaction system by shaking table model test 被引量:3
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作者 楼梦麟 王文剑 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2004年第1期127-137,共11页
The success of the tuned mass damper (TMD) in reducing wind-induced structural vibrations has been well established. However, from most of the recent numerical studies, it appears that for a structure situated on very... The success of the tuned mass damper (TMD) in reducing wind-induced structural vibrations has been well established. However, from most of the recent numerical studies, it appears that for a structure situated on very soft soil, soil-structure interaction (SSI) could render a damper on the structure totally ineffective. In order to experimentally verify the SSI effect on the seismic performance of TMD, a series of shaking table model tests have been conducted and the results are presented in this paper. It has been shown that the TMD is not as effective in controlling the seismic responses of structures built on soft soil sites due to the SSI effect. Some test results also show that a TMD device might have a negative impact if the SSI effect is neglected and the structure is built on a soft soil site. For structures constructed on a soil foundation, this research verifies that the SSI effect must be carefully understood before a TMD control system is designed to determine if the control is necessary and if the SSI effect must be considered when choosing the optimal parameters of the TMD device. 展开更多
关键词 soil-pile-structure interaction TMD’s performance structural control shaking table model test
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Field testing of stiffened deep cement mixing piles under lateral cyclic loading 被引量:10
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作者 Werasak Raongjant Meng Jing 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第2期261-265,共5页
Construction of seaside and underground wall bracing often uses stiffened deep cement mixed columns (SDCM). This research investigates methods used to improve the level of bearing capacity of these SDCM when subject... Construction of seaside and underground wall bracing often uses stiffened deep cement mixed columns (SDCM). This research investigates methods used to improve the level of bearing capacity of these SDCM when subjected to cyclic lateral loading via various types of stiffer cores. Eight piles, two deep cement mixed piles and six stiffened deep cement mixing piles with three different types of cores, H shape cross section prestressed concrete, steel pipe, and H-beam steel, were embedded though soft clay into medium-hard clay on site in Thailand. Cyclic horizontal loading was gradually applied until pile failure and the hysteresis loops of lateral load vs. lateral deformation were recorded. The lateral carrying capacities of the SDCM piles with an H-beam steel core increased by 3-4 times that of the DCM piles. This field research clearly shows that using H-beam steel as a stiffer core for SDCM piles is the best method to improve its lateral carrying capacity, ductility and energy dissipation capacity. 展开更多
关键词 stiffened deep cement mixing pile lateral capacity cyclic lateral loading energy dissipation capacity field testing
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Response of single piles and pipelines in liquefaction-induced lateral spreads using controlled blasting 被引量:8
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作者 Scott A.Ashford Teerawut Juirnarongrit 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2002年第2期181-193,共13页
Two full-scale experiments using controlled blasting were conducted in the Port of Tokachi on Hokkaido Island, Japan,to assess the behavior of piles and pipelines subjected to lateral spreading.Test specimens were ext... Two full-scale experiments using controlled blasting were conducted in the Port of Tokachi on Hokkaido Island, Japan,to assess the behavior of piles and pipelines subjected to lateral spreading.Test specimens were extensively instrumented with strain gauges to measure the distribution of moment during lateral spreading.This allowed us to compute the loading condition,as well as to conduct damage and performance assessments on the piles and pipelines.This paper presents the test results and discussions on the response of single piles and pipelines observed from the full-scale experiments.Based on the test results,it can be concluded that using controlled blasting successfully liquefied the soil,and subsequently induced lateral spreading.The movements of the single pile,as well as the transverse pipelines,were approximately the same as the free field soil movement.Observed moment distribution of the single pile indicated that global translation of the liquefied soil layer provided insignificant force to the pile.In addition,the degree of fixity at the pile tip significantly affected the moment along the pile as well as the pile head displacement.The pile with a higher degree of fixity at the pile tip had smaller pile head displacement but larger maximum moment. 展开更多
关键词 pileS pipelines pile tests lateral spreading LIQUEFACTION soil-pile interaction
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双排抗滑管桩加固路堑边坡力学行为模型试验
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作者 余学奎 吴兵 +1 位作者 肖世国 梁瑶 《水文地质工程地质》 北大核心 2026年第1期160-172,共13页
抗滑管桩一般为便于快速施工的小直径预应力混凝土结构,双排抗滑管桩可用于中小型滑坡或边坡的加固,但其相关的力学行为研究较为有限。为此,依托某高速公路的路堑边坡工程,针对双排抗滑管桩加固红层堆积体路堑边坡的力学行为,进行了几... 抗滑管桩一般为便于快速施工的小直径预应力混凝土结构,双排抗滑管桩可用于中小型滑坡或边坡的加固,但其相关的力学行为研究较为有限。为此,依托某高速公路的路堑边坡工程,针对双排抗滑管桩加固红层堆积体路堑边坡的力学行为,进行了几何相似比为1∶12、重度相似比为1∶1的室内缩尺物理模型试验。在模型坡体后侧施加推力荷载以模拟不同的滑坡推力作用,通过坡面位移、桩侧坡体压力、桩身应变的测试,以及采用粒子图像测速技术对坡体变形发展过程的测量,获得了在整个加载过程中双排抗滑桩的变形与内力,以及坡体的变形发展特征与失稳破坏模式。结果表明:(1)随着滑坡推力的逐渐增大,后排桩先后经历线弹性小变形、弹塑性变形、塑性大变形等三个主要阶段,前排桩只经历前两个阶段,具有变形滞后性;(2)前排桩弯矩呈顶点位于中下部的抛物线形分布,在距桩顶深约1/2受荷段高度范围内,呈现前侧受拉的反弯模式;(3)后排桩两侧的坡体压力呈上小下大的抛物线形分布,但前侧抗力略高于后侧推力,最大弯矩约占前排桩的50%;(4)在滑坡推力小于70%界限荷载(桩体超过正常使用状态的最小推力荷载)条件下,后排桩对提高上级边坡的局部稳定性有利;当滑坡推力大于界限荷载时,坡体中出现深层整体滑动面,后排桩的抗滑作用显著减弱,主要由前排桩承担抗滑作用;数值模拟与试验结果较为符合,二者相互印证。双排抗滑管桩适用于坡率较缓(≤1∶1.5)、坡高不大(≤30 m)的堆积体边坡,后排桩约束上部坡体变形、前排桩控制边坡整体稳定性,呈现以前排桩为主、后排桩为辅的加固作用。研究结果有助于深入认识双排抗滑管桩加固边坡或滑坡的力学行为,可为相关工程设计提供科学依据。 展开更多
关键词 路堑边坡 双排抗滑管桩 力学行为 失稳破坏模式 模型试验
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基于现场试验的分层土中钢管桩竖向承载性能研究
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作者 柳丽香 傅赛 李俊龙 《山西建筑》 2026年第1期6-10,19,共6页
基于河北秦皇岛某近海光伏项目两根钢管桩基础轴向静载试验,研究了分层土中的桩土相互作用及桩的承载特性。试验通过两根大直径钢管桩在不同加载条件下的静载荷试验,获得了荷载-沉降曲线、桩身轴力分布和沉降数据。通过反分析法,提出了... 基于河北秦皇岛某近海光伏项目两根钢管桩基础轴向静载试验,研究了分层土中的桩土相互作用及桩的承载特性。试验通过两根大直径钢管桩在不同加载条件下的静载荷试验,获得了荷载-沉降曲线、桩身轴力分布和沉降数据。通过反分析法,提出了一种修正后的轴向抗压极限承载力计算模型,解决了现有设计规范中无法准确反映分层土承载力问题。与JGJ 94-2008建筑桩基技术规范进行对比,修正后的模型更符合实际试验结果,能够更准确地评估单桩的竖向极限承载力。 展开更多
关键词 现场试验 钢管桩 抗压承载力 抗压静载荷试验
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Pile-up现象对材料本构关系反演计算的影响 被引量:3
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作者 王月敏 闫相桥 李垚 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2018年第5期825-830,共6页
针对商用纳米压痕测试中忽略凸起(Pile-up)现象的问题,开展了Pile-up现象对材料力学参数和本构反演计算结果影响的研究。推导能量法理论,选取5种不同材料进行了纳米压痕测试,利用商用Oliver-Pharr(O-P)法和能量法分别进行硬度和弹性模... 针对商用纳米压痕测试中忽略凸起(Pile-up)现象的问题,开展了Pile-up现象对材料力学参数和本构反演计算结果影响的研究。推导能量法理论,选取5种不同材料进行了纳米压痕测试,利用商用Oliver-Pharr(O-P)法和能量法分别进行硬度和弹性模量计算,并比较测试误差率。推导极限分析法理论并进行反演计算,得到考虑材料Pile-up现象的应力应变曲线,并根据计算结果对纳米压痕过程进行仿真。结果表明:当纳米压痕测试中压痕残余深度与压入深度比值大于0.7时,Pile-up现象对商用O-P法测试影响明显,弹性模量和硬度值误差率达到20%以上;对发生塑性变形较大材料进行本构关系反演计算时,理论计算值和数值模拟结果均证明了Pile-up现象对应力应变曲线计算有一定的影响。研究结果可为纳米压痕测试本构关系的反演计算方法提供参考。 展开更多
关键词 能量法 纳米压痕测试 极限分析法 pile-up现象 反演分析 本构关系 有限元分析 量纲分析
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全砂地质超长桩基础竖向承载力分析及施工技术研究
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作者 左宽 李雨浓 《山西建筑》 2026年第1期118-121,125,共5页
为确定全砂地层条件下大直径超长桩基础的竖向极限承载力,依托某实体工程,对桩径2.0 m、桩长75.0 m的钻孔灌注桩采用双加载箱自平衡静载试验,并结合GTS-NX有限元软件进行数值模拟分析。试验结果显示,试桩竖向极限承载力为97924 kN;数值... 为确定全砂地层条件下大直径超长桩基础的竖向极限承载力,依托某实体工程,对桩径2.0 m、桩长75.0 m的钻孔灌注桩采用双加载箱自平衡静载试验,并结合GTS-NX有限元软件进行数值模拟分析。试验结果显示,试桩竖向极限承载力为97924 kN;数值模拟以桩顶沉降100 mm为标准,得到极限承载力93.21 MN,两者规律一致、数值差异较小,验证了双加载箱自平衡试验结果的准确性。分析表明,试验与模拟的沉降差异源于双荷载箱对桩身完整性的影响及超长桩侧阻弱化现象,据此提出了提升桩顶清渣与桩底注浆效果的施工建议。 展开更多
关键词 桩基础 自平衡试验 全砂地层 竖向承载力 数值模拟 市政工程
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Bearing behavior and failure mechanism of squeezed branch piles 被引量:16
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作者 Minxia Zhang Ping Xu +1 位作者 Wenjie Cui Youbin Gao 《Journal of Rock Mechanics and Geotechnical Engineering》 CSCD 2018年第5期935-946,共12页
The current practice for the design of squeezed branch piles is mainly based on the calculated bearing capacity of circular piles. Insufficient considerations of the load-transfer mechanism, branch effect and failure ... The current practice for the design of squeezed branch piles is mainly based on the calculated bearing capacity of circular piles. Insufficient considerations of the load-transfer mechanism, branch effect and failure mechanism, as well as overreliance on pile load tests, have led to conservative designs and limited application. This study performs full-scale field load tests on instrumented squeezed branch piles and shows that the shaft force curves have obvious drop steps at the branch position, indicating that the branches can effectively share the pile top load. The effects of branch position, spacing, number and diameter on the pile bearing capacity are analyzed numerically. The numerical results indicate that the squeezed branch piles have two types of failure mechanisms, i.e. individual branch failure mechanism and cylindrical failure mechanism. Further research should focus on the development of the calculation method to determine the bearing capacities of squeezed branch piles considering these two failure mechanisms. 展开更多
关键词 Squeezed branch piles Field test Bearing behavior Failure mechanism Numerical simulation
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