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Shaking table test for reinforcement of soil slope with multiple sliding surfaces by reinforced double-row anti-slide piles 被引量:6
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作者 WU Hong-gang PAI Li-fang 《Journal of Mountain Science》 SCIE CSCD 2022年第5期1419-1436,共18页
Despite the continuous advancements of engineering construction in high-intensity areas,many engineering landslides are still manufactured with huge thrust force,and double-row piles are effective to control such larg... Despite the continuous advancements of engineering construction in high-intensity areas,many engineering landslides are still manufactured with huge thrust force,and double-row piles are effective to control such large landslides.In this study,large shaking table test were performed to test and obtain multi-attribute seismic data such as feature image,acceleration,and dynamic soil pressure.Through the feature image processing analysis,the deformation characteristics for the slope reinforced by double-row piles were revealed.By analyzing the acceleration and the dynamic soil pressure time domain,the spatial dynamic response characteristics were revealed.Using Fast Fourier Transform and half-power bandwidth,the damping ratio of acceleration and dynamic soil pressure was obtained.Following that,the Seism Signal was used to calculate the spectral displacement of the accelerations to obtain the regional differences of spectral displacement.The results showed that the overall deformation mechanism of the slope originates from tension failure in the soil mass.The platform at the back of the slope was caused by seismic subsidence,and the peak acceleration ratio was positively correlated with the relative pile heights.The dynamic soil pressure of the front row piles showed an inverted"K"-shaped distribution,but that of the back row piles showed an"S"-shaped distribution.The predominant frequency of acceleration was 2.16 Hz,and the main frequency band was 0.7-6.87 Hz;for dynamic soil pressure,the two parameters became 1.15 Hz and 0.5-6.59 Hz,respectively.In conclusion,dynamic soil pressure was more sensitive to dampening effects than acceleration.Besides,compared to acceleration,dynamic soil pressure exhibited larger loss factors and lower resonance peaks.Finally,back row pile heads were highly sensitive to spectral displacement compared to front row pile heads.These findings may be of reference value for future seismic designs of double-row piles. 展开更多
关键词 double row anti-slide piles multislide surface landslide Shaking table test ACCELERATION Dynamic soil pressure Dynamic response characteristic
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Fiber optic monitoring of an anti-slide pile in a retrogressive landslide 被引量:3
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作者 Lei Zhang Honghu Zhu +1 位作者 Heming Han Bin Shi 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2024年第1期333-343,共11页
Anti-slide piles are one of the most important reinforcement structures against landslides,and evalu-ating the working conditions is of great significance for landslide mitigation.The widely adopted analytical methods... Anti-slide piles are one of the most important reinforcement structures against landslides,and evalu-ating the working conditions is of great significance for landslide mitigation.The widely adopted analytical methods of pile internal forces include cantilever beam method and elastic foundation beam method.However,due to many assumptions involved in calculation,the analytical models cannot be fully applicable to complex site situations,e.g.landslides with multi-sliding surfaces and pile-soil interface separation as discussed herein.In view of this,the combination of distributed fiber optic sensing(DFOS)and strain-internal force conversion methods was proposed to evaluate the working conditions of an anti-sliding pile in a typical retrogressive landslide in the Three Gorges reservoir area,China.Brillouin optical time domain reflectometry(BOTDR)was utilized to monitor the strain distri-bution along the pile.Next,by analyzing the relative deformation between the pile and its adjacent inclinometer,the pile-soil interface separation was profiled.Finally,the internal forces of the anti-slide pile were derived based on the strain-internal force conversion method.According to the ratio of calculated internal forces to the design values,the working conditions of the anti-slide pile could be evaluated.The results demonstrated that the proposed method could reveal the deformation pattern of the anti-slide pile system,and can quantitatively evaluate its working conditions. 展开更多
关键词 anti-slide pile Multi-sliding surface pile-soil interface Brillouin optical time domain reflectometry (BOTDR) Geotechnical monitoring Reservoir landslide
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Dynamic response of a slope reinforced by double-row antisliding piles and pre-stressed anchor cables 被引量:10
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作者 FAN Gang ZHANG Jian-jing +1 位作者 QI Shun-chao WU Jin-biao 《Journal of Mountain Science》 SCIE CSCD 2019年第1期226-241,共16页
Large-scale shaking table tests were conducted to study the dynamic response of a slope reinforced by double-row anti-sliding piles and prestressed anchor cables. The test results show that the reinforcement suppresse... Large-scale shaking table tests were conducted to study the dynamic response of a slope reinforced by double-row anti-sliding piles and prestressed anchor cables. The test results show that the reinforcement suppressed the acceleration amplification effectively. The axial force time histories are decomposed into a baseline part and a vibration part in this study. The baseline part of axial force well revealed the seismic slope stability, the peak vibration values of axial force of the anchor cables changed significantly in different area of the slope under seismic excitations. The peak lateral earth pressure acting on the back of the anti-sliding pile located at the slope toe was much larger than that acting on the back of the anti-sliding pile located at the slope waist. The test results indicate an obvious load sharing ratio difference between these two anti-slide piles, the load sharing ratio between the two anti-sliding piles located at the slope toe and the slope waist varied mainly in a range of 2-5. The anti-slide pile at the slope waist suppressed the horizontal displacement of the slope surface. 展开更多
关键词 SLOPE stability anti-slidING pile ANCHOR cable Seismic design SHAKING table test Earthquake
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Anchoring Depth Research of Anti-Slide Piles of Anchor Bar in Soil 被引量:6
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作者 Xunchang Li,Yuming Men School of Geological Engineering and Surveying Engineering,Chang’an University,Xi’an 710054,China. 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期182-182,共1页
The model test result of earth force in the side of anti-slide pile of anchor bars was introduced.There are three groups of the tests.The loads were on the back side of the slope in two groups.The other one was loaded... The model test result of earth force in the side of anti-slide pile of anchor bars was introduced.There are three groups of the tests.The loads were on the back side of the slope in two groups.The other one was loaded just behind the pile by the jack.In order to get the force of the soil,some earth-pressure boxes were used to get the earth pressure on the side of the piles.The part of the max pressure and the earth pressure was mainly focused under the slip line 展开更多
关键词 anti-slide pile of ANCHOR BAR model test ANCHORING DEPTH SLIP line
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New method of designing anti-slide piles——the strength reduction FEM 被引量:3
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作者 Zheng Yingren Zhao Shanyi +1 位作者 Lei Wenjie Tang Xiaosong 《Engineering Sciences》 EI 2010年第3期2-11,共10页
At present,the thrust of an anti-slide pile can be worked out with some calculation methods. However,the resistance in front of the pile,the distributions of resistance and thrust,and appropriate pile length cannot be... At present,the thrust of an anti-slide pile can be worked out with some calculation methods. However,the resistance in front of the pile,the distributions of resistance and thrust,and appropriate pile length cannot be easily obtained. In this paper,the authors applied the strength-reduction finite element method (FEM) to several design cases of anti-slide piles. Using this method,it is possible to take the pile-soil interactions into consideration,obtain reasonable resistance in front of pile and the distributions of thrust and resistance,and reasonable lengths of anti-slide piles. In particular,the thrust and resistance imposed on embedded anti-slide piles can be calculated and composite anti-slide pile structures such as anchored piles and braced piles can be optimized. It is proved through the calculation examples that this method is more reliable and economical in the design of anti-slide pile. 展开更多
关键词 strength reduction method finite element method anti-slide piles sub-grade reaction embedded piles
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Centrifuge and numerical modeling of h-type anti-slide pile reinforced soil-rock mixture slope 被引量:1
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作者 ZHANG Hao XING Hao-feng +1 位作者 XUE Dao-rui TANNANT Dwayne 《Journal of Mountain Science》 SCIE CSCD 2023年第5期1441-1457,共17页
Due to the loose structure,high porosity and high permeability of soil-rock mixture slope,the slope is unstable and may cause huge economic losses and casualties.The h-type anti-slide pile is regarded as an effective ... Due to the loose structure,high porosity and high permeability of soil-rock mixture slope,the slope is unstable and may cause huge economic losses and casualties.The h-type anti-slide pile is regarded as an effective means to prevent the instability of soilrock mixture slope.In this paper,a centrifuge model test was conducted to investigate the stress distribution of the h-type anti-slide pile and the evolution process of soil arching during the loading.A numerical simulation model was built based on the similar relationship between the centrifuge model and the prototype to investigate the influence factors of the pile spacing,anchored depth,and crossbeam stiffness,and some recommendations were proposed for its application.The results show that the bending moment distribution of the rear pile exhibits Wshaped,while for the front pile,its distribution resembles V-shaped.The soil arching evolution process during loading is gradually dissipated from bottom to top and from far to near.During the loading,the change of bending moment can be divided into three stages,namely,the stabilization stage,the slow growth stage,and the rapid growth stage.In engineering projects,the recommended values of the pile spacing,anchored depth,and crossbeam stiffness are 4.0d,2.0d,and 2.0EI,where d and EI are the diameter and bending stiffness of the h-type anti-slide pile respectively. 展开更多
关键词 Centrifugemodel test Numerical simulation h-type anti-slide pile Soil-rock mixture slop Soil arching
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Research on Effect of Heap Loading on Deformation and Mechanical Properties of Bridge Double Pile Foundation on Steep Slope
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作者 Hao Luo 《Open Journal of Civil Engineering》 2020年第2期117-130,共14页
In order to analyze the deformation and stress characteristics of the pile foundation on the slope<span><span><span style="font-family:" capt",serif;"="" pro="" m... In order to analyze the deformation and stress characteristics of the pile foundation on the slope<span><span><span style="font-family:" capt",serif;"="" pro="" minion="">, </span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">this paper uses the finite element software Abaqus for numerical simulation.</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion=""> </span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">The displacement and stress data of pile under different working conditions (the combination of heap load and vertical load and horizontal load and inclined load) were collected</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">;</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">the distribution of pile displacement, axial force and bending moment were analyzed. Simulation results show that: slope top loading has little effect on vertical displacement</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">;</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion=""> when the heap load exceeds 200 kPa, the horizontal displacement is greatly affected. Pile axial force decreases with pile burial depth</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">;</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">pile lateral resistance plays a more adequate role in the rock and soil layer. The bending moment of double pile foundation is positive at the top and negative at the bottom.</span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion=""> </span></span></span><span><span><span style="font-family:" capt",serif;"="" pro="" minion="">Applied oblique load has obvious p-Δ effect.</span></span></span> 展开更多
关键词 High and Steep Slope double pile Foundation Numerical Modeling Heap Load ABAQUS Influence Degree
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Pre-Stressed Rope Reinforced Anti-Sliding Pile 被引量:1
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作者 XU Jun WANG Chenghua 《Wuhan University Journal of Natural Sciences》 EI CAS 2006年第4期887-891,共5页
Pre-stressed rope reinforced anti-sliding pile is a composite anti-sliding structure. It is made up of pre-stressed rope and general anti-sliding pile. It can bring traditional anti-sliding pile's retaining performan... Pre-stressed rope reinforced anti-sliding pile is a composite anti-sliding structure. It is made up of pre-stressed rope and general anti-sliding pile. It can bring traditional anti-sliding pile's retaining performance into full play, and to treat with landslide fast and economically. The difference between them is that the pre-stressed rope will transfix the whole anti- sliding pile through a prearranged pipe in this structure. The working mechanics, the design method and economic benefit are studied. The results show that the pre-stressed rope reinforced anti-sliding pile can treat with the small and middle landslides or high slopes well and possess the notable advantage of technology and economic. 展开更多
关键词 pre-stressed rope anti-sliding pile composite anti-sliding structure
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Study on distribution rule of sliding pushing force and remnant resistant sliding force acting on anti-sliding pile 被引量:1
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作者 Qingyang YU Lei NIE 《Global Geology》 2006年第2期227-231,共5页
Anti-slide pile is one of the important methods to administer landslide geological disaster because of its advantages.It plays important role in administering landslide.It is a premise of reasonable economy and techno... Anti-slide pile is one of the important methods to administer landslide geological disaster because of its advantages.It plays important role in administering landslide.It is a premise of reasonable economy and technological advance to know the distribution rule and feature of the force between anti-sliding pile and surrounding rock.To determine the sliding force and remnant resistant sliding force,according to need of study,this paper sets up the geological model and mechanics model in term of a typical landslide,and analyzes the effect rule of sliding body distortion,strength and gravity to the pushing force and remnant resistant sliding force by use of the numerical model.The distribution rule of pushing force and remnant resistant sliding force of the type of landslide is given. 展开更多
关键词 anti-slide pile pushing force remnant resistant sliding force numerical model
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敏感环境下地下水池基坑围护施工技术
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作者 苏宇 《山西建筑》 2025年第2期68-71,81,共5页
杨树浦水厂深度处理改造工程具有地质条件复杂、场地工况敏感、施工组织及环境保护要求高等特点。结合周边建筑物密集,且离运营中的文保工业建筑最近距离仅为15 m的特点,从支撑选型、回填及降水、土方开挖等方面介绍了敏感环境下地下水... 杨树浦水厂深度处理改造工程具有地质条件复杂、场地工况敏感、施工组织及环境保护要求高等特点。结合周边建筑物密集,且离运营中的文保工业建筑最近距离仅为15 m的特点,从支撑选型、回填及降水、土方开挖等方面介绍了敏感环境下地下水池处理改造基坑围护施工技术,有效地保障了重大工程的高效、安全实施,为今后类似环境下地下结构建造涉及到的基坑施工提供了借鉴和参考。 展开更多
关键词 硬咬合排桩 复杂地质 文保建筑 双C环形支撑 基坑开挖 工期高效
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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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3-D Simulation Study on Seismic Response of Bridge Piles in Landslide
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作者 Hou Chaoping Liu Qi 《Earthquake Research in China》 CSCD 2018年第3期425-434,共10页
The anti-slide support structure is widely used in the anti-seismic reinforcement of bridge foundations,but related experimental research was processing slowly. Based on the prototype of the Jiuzhaigou bridge at the C... The anti-slide support structure is widely used in the anti-seismic reinforcement of bridge foundations,but related experimental research was processing slowly. Based on the prototype of the Jiuzhaigou bridge at the Chengdu-Lanzhou Railway,a 3-D simulation model was established on the basis of the shaking table model test,and the rationality of the dynamic analysis model was verified by indicators such as the bending moment of the bridge piles,peak soil pressure,and PGA amplification factors. The results show that the inertia force of the bridge pier has an important influence on the deformation of the pile foundation. The bending moment and shearing force are larger in lateral bridge piles,and the maximum value is near the pile top. The PGA amplification factor is stronger in the back of the rear anti-slide piles and so is it in front of the bridge pier,and the soil is prone to slip and damage. The bedrock is rigid and the dynamic response is maintained at a low level. The anti-slide piles in the rear row play a major role in the anti-seismic reinforcement design,and the anti-slide piles in the front row can be used as an auxiliary support structure. 展开更多
关键词 anti-slide pile PIER FOUNDATION SHAKING TABLE test 3-D simulation Earthquake response
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Crack initiation ahead of piled-up of dislocations emitted from a mode Ⅱ blunt crack 被引量:1
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作者 CaifuQian WuyangChu 《Journal of University of Science and Technology Beijing》 CSCD 2002年第5期372-377,共6页
In situ tensile tests in a transmission electronmicroscope(TEM)show that dislocations emitted from a modelⅡcrack tipwill form a inverse piled-up group after equilibrium or a doublepiled-up group when they meet a obst... In situ tensile tests in a transmission electronmicroscope(TEM)show that dislocations emitted from a modelⅡcrack tipwill form a inverse piled-up group after equilibrium or a doublepiled-up group when they meet a obstruction, e.g., grain boundary orsecond phase. A microcrack can initiates in front of the piled-upgroup of dislocations. Micromechanics analysis shows thatdislocations emitted from a modelⅡblunt crack tip can form a inversepiled-up or double piled-up group, depending upon the applied stressintensity factor K_Ⅱa, lattice friction stressτ_f and the distanceof the obstruction from the crack tip L. 展开更多
关键词 modelⅡblunt crack dislocation emission crack initiation double piled-upgroup
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软土地区基坑前排倾斜双排桩支护现场试验及工作机理 被引量:3
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作者 郑刚 王玉萍 +3 位作者 程雪松 余地华 黄晓程 李昕昊 《长江科学院院报》 CSCD 北大核心 2024年第6期98-105,113,共9页
基坑倾斜桩支护大幅提高了无支撑支护结构的适用深度,具有造价低、施工便捷、绿色低碳、变形控制好等特点,然而目前研究多集中在单排倾斜桩,对前排倾斜双排桩支护的试验、理论与应用的研究均较少。针对前排倾斜双排桩支护基坑开展了现... 基坑倾斜桩支护大幅提高了无支撑支护结构的适用深度,具有造价低、施工便捷、绿色低碳、变形控制好等特点,然而目前研究多集中在单排倾斜桩,对前排倾斜双排桩支护的试验、理论与应用的研究均较少。针对前排倾斜双排桩支护基坑开展了现场试验,同时采用有限元方法分别从前排斜桩、桩顶连梁及桩间土体作用3个方面深入探究了前排倾斜双排桩支护的工作机理,进一步分析了直斜桩长度和排距对前排倾斜双排桩支护结构受力变形性能的影响。结果表明,相比传统竖直双排桩,前排倾斜双排桩支护结构的支护性能显著提升,前排斜桩主要发挥“斜撑”作用,连梁主要起到将直斜桩及冠梁连接成一个空间刚架的作用,桩间土体能够提高桩土摩阻力,进而有效减小前排倾斜双排桩变形。研究成果有助于前排倾斜双排桩的推广和应用。 展开更多
关键词 基坑 前排倾斜双排桩 现场试验 工作机理 软土地区
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下横置变刚度叶片弹簧式半主动悬架设计研究
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作者 王孝鹏 刘建军 《机械设计与制造》 北大核心 2024年第12期45-50,共6页
通过对叶片簧模态分析及中性文件编制,设计出下横置可变刚度叶片弹簧式半主动推杆悬架,叶片弹簧在与车身不同点固定处的垂向刚度分别为:-2907.3N/mm、2107.2N/mm、708.7N/mm、708.7N/mm;悬架传力模型分析表明:车身侧倾角加速度与叶片弹... 通过对叶片簧模态分析及中性文件编制,设计出下横置可变刚度叶片弹簧式半主动推杆悬架,叶片弹簧在与车身不同点固定处的垂向刚度分别为:-2907.3N/mm、2107.2N/mm、708.7N/mm、708.7N/mm;悬架传力模型分析表明:车身侧倾角加速度与叶片弹簧与车身安装处位置到弹簧中心处的距离平方成反比;论文提出一种双模糊控制算法,40km/h绕桩计算显示:底盘高刚度模式下俯仰角加速度、侧倾角加速度、横摆角加速度稳定性能指标分别提升89.4%、53.2%、18.2%;针对50km/h FSAE赛车失稳现象提出下双横置叶片弹簧悬架优化方案,最终稳定性能指标分别提升82.3%、85.2%、41.1%。 展开更多
关键词 叶片弹簧 变刚度 传力模型 C特性 双模糊 绕桩仿真 优化
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基于差分法的双排抗滑桩结构内力计算
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作者 李寻昌 高凡凡 +1 位作者 冉雨童 史征征 《水文地质工程地质》 CAS CSCD 北大核心 2024年第5期95-104,共10页
为研究有连梁双排抗滑桩快速有效的内力计算模型,在对有连梁双排桩进行受力分析的基础上,将有连梁双排抗滑桩结构简化为在桩顶连系梁零弯矩处断开的2根单桩结构,通过对双排桩受力进行叠加得到前后排桩桩顶连梁传递的弯矩与剪力,基于有... 为研究有连梁双排抗滑桩快速有效的内力计算模型,在对有连梁双排桩进行受力分析的基础上,将有连梁双排抗滑桩结构简化为在桩顶连系梁零弯矩处断开的2根单桩结构,通过对双排桩受力进行叠加得到前后排桩桩顶连梁传递的弯矩与剪力,基于有限差分法建立了有连梁双排抗滑桩受荷段、嵌固段全桩内力计算模型,进而对有连梁双排抗滑桩桩体内力进行了计算。同时,通过大型室内模型试验内力实测结果对所计算结果进行了对比验证。结果表明:(1)模型试验结果与所建计算模型得到的桩顶位移与桩身弯矩值吻合较好,说明简化计算模型具有一定的适用性;(2)二者的后排桩最大弯矩出现位置略有偏差,计算得到的最大弯矩位置更接近实际桩体破坏位置,进一步验证了全桩内力计算模型的可靠性;(3)所建有限差分计算模型避免了将受荷段与嵌固段利用连续条件进行迭代的复杂运算过程,大大提升了计算效率,为实际工程提供了一种快速高效的有连梁双排桩内力计算方法。 展开更多
关键词 有连梁双排抗滑桩 有限差分法 全桩内力计算 模型试验 计算模型
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排桩倾斜对双排桩支护结构性状影响分析
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作者 龚建伍 张森 谢亮 《建筑技术》 2024年第9期1044-1049,共6页
依托某双排桩基坑工程实践建立有限元模型,分析前、后排桩倾斜对基坑支护效果的影响,并与现场监测数据进行对比验证。研究结果表明:前排桩倾斜一定的角度,桩身弯矩和轴力增大,前排桩发挥斜撑作用,桩身水平位移及桩顶沉降减小,支护效果提... 依托某双排桩基坑工程实践建立有限元模型,分析前、后排桩倾斜对基坑支护效果的影响,并与现场监测数据进行对比验证。研究结果表明:前排桩倾斜一定的角度,桩身弯矩和轴力增大,前排桩发挥斜撑作用,桩身水平位移及桩顶沉降减小,支护效果提高;随着前排桩倾斜角度的增大,支护效果提升幅度减弱;后排桩倾斜可提高支护效果,不同倾斜角度下,桩身弯矩、轴力、水平位移和桩顶沉降变化幅度不同,但倾斜角度过大导致支护效果减弱;相同排桩倾斜角度下,前排桩倾斜对双排桩支护效果的提升显著优于后排桩倾斜,前排桩倾斜15°时支护效果最优。 展开更多
关键词 双排桩 倾斜角度 变形分析 有限元分析
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下穿地下构筑物群桩富水砂层盾构通道MJS预加固施工技术研究及应用
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作者 袁向平 张益 《建筑技术开发》 2024年第6期162-164,共3页
下穿地下构筑物群桩富水砂层盾构通道MJS预加固施工技术包括技术原理、实施思路和具体施工步骤,其由密布群桩富水砂层水平引孔、富水砂层水平引孔砂土流失控制、常规水平MJS注浆加固3个环节组成。技术采用引孔机钻杆+外套管进行水平引孔... 下穿地下构筑物群桩富水砂层盾构通道MJS预加固施工技术包括技术原理、实施思路和具体施工步骤,其由密布群桩富水砂层水平引孔、富水砂层水平引孔砂土流失控制、常规水平MJS注浆加固3个环节组成。技术采用引孔机钻杆+外套管进行水平引孔,实现立柱桩和高强度管桩的穿越,以及富水砂层中的长距离成孔,引孔过程中通过双液注浆对注浆线路进行一次加固,同时利用洞口安装的法兰盘+止回阀来进行砂土流失控制,减少引孔对地下构筑物和周边环境的影响,引孔完成后,进行常规MJS注浆加固,达到预加固目标,并形成具体的下穿地下构筑物群桩富水砂层盾构通道MJS预加固施工步骤指导施工,大幅减少对地下构筑物和周边环境的影响,减少泥浆浪费,提高施工效率,经济社会效益较好,具有较好的推广应用价值。 展开更多
关键词 富水砂层 高强度管桩 引孔机 双液注浆 MJS预加固
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h型双排桩在山地建筑边坡工程中应用
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作者 范春青 林祖锴 《广东水利水电》 2024年第9期102-107,共6页
针对山地建筑边坡受用地限制而常用挡墙不太适用的问题,提出了h型双排桩结构形式,其由冠梁、腰梁、盖板、前排桩及后排桩组成。首先,假定h型双排桩的上部山体为滑裂体,采用传递系数法计算剩余下滑力,与双排桩抗滑力进行比较,判断边坡整... 针对山地建筑边坡受用地限制而常用挡墙不太适用的问题,提出了h型双排桩结构形式,其由冠梁、腰梁、盖板、前排桩及后排桩组成。首先,假定h型双排桩的上部山体为滑裂体,采用传递系数法计算剩余下滑力,与双排桩抗滑力进行比较,判断边坡整体稳定性;假定h型双排桩为悬臂二阶柱结构,计算结构变形,判断变形是否满足正常使用要求。其次,依托某边坡工程进行实例论证,该工程竣工已近两年,监测数据表明边坡处于安全稳定可控状态。最后,h型双排桩解决了山地建筑边坡用地受限的难题,双排桩强有力的结构形式提高了悬臂式挡土高度,且双排桩盖板可兼作山地建筑的室外用地使用。 展开更多
关键词 h型双排桩 整体稳定性 剩余下滑力 二阶柱 监测
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基于动态神经网络NARX时间序列的双排桩基坑变形预测 被引量:1
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作者 侯福昌 曾家俊 +2 位作者 江杰 李结全 范懿文 《广西大学学报(自然科学版)》 CAS 北大核心 2024年第1期49-59,共11页
针对目前基于含基本假设或经验公式的传统土力学计算方法,不能有效地反映具有多因素交叉性以及时空性的基坑变形规律,而监测数据时间序列能够真实地表现基坑土体变形的演变,以南宁市亭洪路72号河南水厂住宅小区危旧房改造项目双排桩基... 针对目前基于含基本假设或经验公式的传统土力学计算方法,不能有效地反映具有多因素交叉性以及时空性的基坑变形规律,而监测数据时间序列能够真实地表现基坑土体变形的演变,以南宁市亭洪路72号河南水厂住宅小区危旧房改造项目双排桩基坑工程为依托,考虑开挖深度和土体暴露时间这2个因素对监测时间序列的影响,提出一种带有外部输入的非线性自回归(NARX)动态神经网络时间序列模型,多方位预测关键断面重要测点的竖向位移和水平位移。结果表明:预测值和实际监测数据的变化趋势具有较好的一致性,且竖向位移预测值与实际监测值的预测残差小于1.0 mm,水平位移预测残差小于0.3 mm。该模型预测效果良好,同时验证了此模型应用于双排桩基坑变形动态分析的可行性。 展开更多
关键词 动态神经网络 时间序列 预测模型 双排桩 基坑变形
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