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Working mechanism of two-direction reinforced composite foundation 被引量:10
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作者 张玲 赵明华 贺炜 《Journal of Central South University of Technology》 EI 2007年第4期589-594,共6页
Based on the discussion about working mechanism of horizontal reinforcement and that of vertical reinforcement,respectively,the working mechanism of two-direction reinforced composite foundation was studied.The enhanc... Based on the discussion about working mechanism of horizontal reinforcement and that of vertical reinforcement,respectively,the working mechanism of two-direction reinforced composite foundation was studied.The enhancing effect of horizontal reinforcement on vertical reinforced composite foundation was analyzed.A simplified calculation method for such two-direction reinforced working system was presented.A model experiment was carried out to validate the proposed method.In the experiment,geocell reinforcement worked as the horizontal reinforcement,while gravel pile composite foundation worked as the vertical reinforcement.The results show that the calculated curve is close to the measured one.The installation of geosynthetic reinforcement can increase the bearing capacity of composite foundation by nearly 68% at normal foundation settlement,which suggests that the enhancing effect by geosynthetic reinforcement should be taken into account in current design/analysis methods. 展开更多
关键词 composite foundation two-direction reinforcement working mechanism bearing capacity
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Effect of cantilever soldier pile foundation excavation closing to an existing composite foundation 被引量:4
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作者 王贵和 杨宇友 《Journal of Central South University》 SCIE EI CAS 2013年第5期1384-1396,共13页
Adjacent high-rise building with CFG pile composite foundation was studied using model test method to investigate stress and displacement of the foundation pile retaining structure, the subsidence and transmogrificati... Adjacent high-rise building with CFG pile composite foundation was studied using model test method to investigate stress and displacement of the foundation pile retaining structure, the subsidence and transmogrification law of the composite foundation. Two different project cases with and without high-rise building adjacent to pile foundation were compared. The relationships of slope pile bending moment, earth pressure, pile top displacement and complex settlement with respect to time were obtained. 1) When there is no adjacent building, the displacement of supporting system caused by excavation is mainly in the horizontal direction; while when the adjacent building exists, the displacement of supporting system will be vertical. 2) When the excavation depth is less than or equal to the adjacent building's composite foundation depth, the force of supporting structure is uniform and has small value, at the same time, the pile strength is in fully use and the foundation is stable; while when the excavation depth is greater than the depth of adjacent building's composite foundation, the results will be opposite. 3) During the excavation process, the adjustment of the composite ground loads on the supporting structure is carried out downward and the force of the supporting structure is reduced through the deformation of the bearing layer. 展开更多
关键词 model test foundation adjacent high-rise building composite foundation
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Consolidation analysis of composite foundation with partially penetrated cement fly-ash gravel(CFG) piles under changing permeable boundary conditions 被引量:3
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作者 邹新军 赵增明 徐洞斌 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期4019-4026,共8页
Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the ... Based on the double-layered foundation theory, the composite ground with partially penetrated cement fly-ash gravel(CFG) piles was regarded as a double-layered foundation including the surface reinforced area and the underlying untreated stratum. Due to the changing permeability property of CFG piles, the whole consolidation process of the composite ground with CFG piles was divided into two stages, i.e., the early stage(permeable CFG pile bodies) and the later stage(impermeable pile bodies). Then, the consolidation equation of the composite foundation with CFG piles was established by using the Terzaghi one-dimensional consolidation theory. Consequently, the unified formula to calculate the excess pore water pressure was derived with the specific solutions for the consolidation degree of composite ground, reinforced area and underlying stratum under instant load obtained respectively. Finally, combined with a numerical example, influencing rules by main factors(including the replacement rate m, the treatment depth h1, the permeability coefficient Ks1, Kv2 and compression modulus Es1, Es2 of reinforced area and underlying stratum) on the consolidation property of composite ground with CFG piles were discussed in detail. The result shows that the consolidation velocity of underlying stratum is slower than that of the reinforced area. However, the consolidation velocity of underlying stratum is slow at first then fast as a result of the transferring of effective stress to the underlying stratum during the dissipating process of excess pore water pressure. 展开更多
关键词 composite ground CFG piles permeability double-layered foundation consolidation degree
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Settlement calculation for long-short composite piled raft foundation 被引量:4
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作者 赵明华 张玲 杨明辉 《Journal of Central South University of Technology》 EI 2006年第6期749-754,共6页
The mechanism of long-short composite piled raft foundation was discussed. Assuming the relationship between shear stress and shear strain of the surrounding soil was elasto-plastic, shear displacement method was empl... The mechanism of long-short composite piled raft foundation was discussed. Assuming the relationship between shear stress and shear strain of the surrounding soil was elasto-plastic, shear displacement method was employed to establish the different explicit relational equations between the load and the displacement at the top of pile in either elastic or elasto-plastic period. Then Mylonakis & Gazetas model was introduced to simulate the interaction between two piles or between piles and soil. Considering the effect of cushion, the flexible coefficients of interaction were provided, With the addition of a relevant program, the settlement calculation for long-short composite piled raft foundation was developed which could be used to account for the interaction of piles, soil and cushion. Finally, the calculation method was used to analyze an engineering example. The calculated value of settlement is 10.2 ram, which is close to the observed value 8.8 mm. 展开更多
关键词 long-short composite oiled raft foundation shear displacement method SETTLEMENT Mylonakis Gazetas model
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Buckling analysis of shear deformable composite conical shells reinforced by CNTs subjected to combined loading on the two-parameter elastic foundation 被引量:3
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作者 A.H.Sofiyev N.Kuruoglu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第2期205-218,共14页
The main objective of this study is to investigate the buckling analysis of CCSs reinforced by CNTs subjected to combined loading of hydrostatic pressure and axial compression resting on the twoparameter elastic found... The main objective of this study is to investigate the buckling analysis of CCSs reinforced by CNTs subjected to combined loading of hydrostatic pressure and axial compression resting on the twoparameter elastic foundation(T-P-EF).It is one of the first attempts to derive the governing equations of the CCSs reinforced with CNTs,based on a generalized first-order shear deformation shell theory(FSDST)which includes shell-foundation interaction.By adopting the extended mixing rule,the effective material properties of CCSs reinforced by CNTs with linear distributions are approximated by introducing some efficiency parameters.Three carbon nanotube distribution in the matrix,i.e.uniform distribution(U)and V and X-types linear distribution are taken into account.The stability equations are solved by using the Galerkin procedure to determine the combined buckling loads(CBLs)of the structure selected here.The numerical illustrations cover CBLs characteristics of CCSs reinforced by CNTs in the presence of the T-P-EF.Finally,a parametric study is carried out to study the influences of the foundation parameters,the volume fraction of carbon nanotubes and the types of reinforcement on the CBLs. 展开更多
关键词 NANOcompositeS CNTS composite conical shells Two-parameter elastic foundations Combined buckling loads Shear deformation shell theories
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Spring constitutive model of rigid pile composite foundation and application in design of raft foundation 被引量:1
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作者 韩小雷 肖成安 +1 位作者 李稼轩 冯杰强 《Journal of Central South University》 SCIE EI CAS 2013年第4期1079-1084,共6页
The simplified analysis method based on the static equilibrium is generally adopted for raft design. The secondary stress of superstructure due to the differential settlement of the foundation is neglected, which lead... The simplified analysis method based on the static equilibrium is generally adopted for raft design. The secondary stress of superstructure due to the differential settlement of the foundation is neglected, which leads to larger support moments and longitudinal bending of raft compared with real values. The spring constitutive relation of composite foundation is obtained by the flat plate loading tests in Karst region. The interaction between the spring and the raft is equivalent to the interaction between the composite foundation and the raft. The model for superstructure-raft-composite foundation interaction analysis is thus established and the raft is designed. This method not only considers the nonlinear properties of composite foundation but also analyzes the influence of superstructure on bending moment and deformation of raft. Compared with the inverted floor method, the calculated values of moment become more reasonable and uneven settlements are considered. This can be references to the design of raft foundation in similar regions. 展开更多
关键词 spring constitutive relation composite foundation RAFT INTERACTION
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Calculation method of composite foundation sedimentation of grouting pile with cover plate under embankment load
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作者 顾长存 洪昌地 +1 位作者 马文彬 李雪平 《Journal of Central South University》 SCIE EI CAS 2008年第S2期138-146,共9页
Grouting pile is a new soft soil foundation treatment method with characteristics such as no vibration, no noise, no soil compaction, light construction machines and quick construction velocity and so on. At present, ... Grouting pile is a new soft soil foundation treatment method with characteristics such as no vibration, no noise, no soil compaction, light construction machines and quick construction velocity and so on. At present, study on reinforcement mechanism and design calculation method of composite foundation of grouting pile is initially started without design specifications, so it is usually required to draw on design specifications of stump pile when designing composite foundation of grouting pile while grouting pile has its characteristics and difference although reinforcement mechanisms and construction processes of two types of piles are similar. Sedimentation formula of composite foundation of grouting pile with cover plate is educed and a suitable deformation mode is proposed by aiming to deformation characteristics of composite foundation of grouting pile with cover plate under embankment load on basis of relevant sedimentation theories of composite foundation by combination of characteristics of composite foundation of grouting pile. The sedimentation calculation formula of grouting pile with cover plate under embankment load is educed according to balance relation of force and displacement coordination conditions by elastic theory and sedimentation calculation model established is validated by sedimentation monitoring documents of one expressway in China. 展开更多
关键词 GROUTING PILE COVER plate composite foundation ELASTIC theory SEDIMENTATION
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Settlement of composite foundation with discrete material pile considering modulus change
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作者 曹文贵 刘海涛 +1 位作者 李翔 张永杰 《Journal of Central South University》 SCIE EI CAS 2008年第S2期8-14,共7页
Based on deeply discussing the deformation mechanism of composite foundation with discrete material pile, firstly, the settlement of composite foundation in rigid foundation conditions was assumed to consist of two pa... Based on deeply discussing the deformation mechanism of composite foundation with discrete material pile, firstly, the settlement of composite foundation in rigid foundation conditions was assumed to consist of two parts, an expanding part and an un-expanding part. Then, in view of the differences of deformation properties between the expanding part and the un-expanding part, the relationships between the pile modulus and the applied load in these two parts were respectively developed. Thirdly, by introducing the above relationships into settlement analysis, a new method to calculate displacement of composite foundation with discrete material pile was proposed by using the multi-stage loading theory and the layer-wise summation approach. This method is effective not only for accounting for the effect of variations of pores on deformation modulus of the pile body in different depths, but also for describing the characteristics of different deformation mechanisms of the pile body with varying depth. Finally, the proposed method was used to a practical composite foundation problem, whose theoretical results were presented and compared to those of other methods. The rationality and feasibility of this method are identified through comparative analysis. 展开更多
关键词 DISCRETE material PILE composite foundation SETTLEMENT calculation pores DEFORMATION MODULUS
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Bearing capacity and mechanical behavior of CFG pile composite foundation
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作者 陈秋南 赵明华 +1 位作者 周国华 张主华 《Journal of Central South University》 SCIE EI CAS 2008年第S2期45-49,共5页
CFG pile (i.e., pile constructed by granular materials of cement, fly-ash and gravel) composite foundation is applied in subsoil treatment widely and successfully. In order to have a further study of this kind of subs... CFG pile (i.e., pile constructed by granular materials of cement, fly-ash and gravel) composite foundation is applied in subsoil treatment widely and successfully. In order to have a further study of this kind of subsoil treatment technology, the influencing factors and calculation methods of the vertical bearing capacity of single CFG pile and the CFG pile composite foundation were discussed respectively. And based on the obtained solutions, effects by the cushion and measurements to reduce negative friction area were analyzed. Moreover, the developing law of settlement and bearing capacity eigenvalue controlled by the material strength with the increase of load were given for the CFG composite foundation. The in-situ static load test was tested for CFG pile. The results of test show that the maximum test load or half of the ultimate load is used from all the points of test, the average bearing capacity eigenvalue of single pile is 390 kN, and slightly greater than the design value of bearing capacity. The bearing capacity eigenvalues of composite foundation for 3 piles are greater than 300 kPa, and the mechanical properties of CFG pile composite foundation are almost identical in the case of the same load and cushion thickness. The pile-soil stress ratio and the load-sharing ratio can be adjusted through setting up cushion thickness. 展开更多
关键词 CFG PILE composite foundation properties of BEARING capacity in-situ static load PILE-SOIL stress ratio
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Dynamic analysis of bio-inspired helicoid laminated composite plates resting on Pasternak foundation excited by explosive loading
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作者 Ngoc-Tu Do Quoc-Hoa Pham 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第12期126-140,共15页
This paper uses isogeometric analysis(IGA)based on higher-order shear deformation theory(HSDT)to study the dynamic response of bio-inspired helicoid laminated composite(B-iHLC)plates resting on Pasternak foundation(PF... This paper uses isogeometric analysis(IGA)based on higher-order shear deformation theory(HSDT)to study the dynamic response of bio-inspired helicoid laminated composite(B-iHLC)plates resting on Pasternak foundation(PF)excited by explosive loading.IGA takes advantage of non-uniform rational Bspline(NURBS)basic functions to exactly represent the structure geometry models and the attainment of higher-order approximation conditions.This method also ensures a C1 continuous function in the analysis of transverse shear deformation via HSDT.Furthermore,IGA eliminates the requirement for correction factors and delivers accurate results.Pasternak foundation with two stiffness parameters:springer stiffness(k_(1))and shear stiffness(k_(2)).The derivation of the governing equations is based on Hamilton's principle.The proposed method is validated through numerical examples.A comprehensive analysis of the impact of geometrical parameters,material properties,boundary conditions(BCs),and foundation stiffness on dynamic response of B-i HLC plates is carried out. 展开更多
关键词 Isogeometric analysis Pasternak foundation Dynamic response Laminated composite
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Bending and stress analysis of polymeric composite plates reinforced with functionally graded graphene platelets based on sinusoidal shear-deformation plate theory
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作者 Mohammad Arefi Ali Tabatabaeian Masoud Mohammadi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第1期64-74,共11页
The bending and stress analysis of a functionally graded polymer composite plate reinforced with graphene platelets are studied in this paper.The governing equations are derived by using principle of virtual work for ... The bending and stress analysis of a functionally graded polymer composite plate reinforced with graphene platelets are studied in this paper.The governing equations are derived by using principle of virtual work for a plate which is rested on Pasternak’s foundation.Sinusoidal shear deformation theory is used to describe displacement field.Four different distribution patterns are employed in our analysis.The analytical solution is presented for a functionally graded plate to investigate the influence of important parameters.The numerical results are presented to show the deflection and stress results of the problem for four employed patterns in terms of geometric parameters such as number of layers,weight fraction and two parameters of Pasternak’s foundation. 展开更多
关键词 Reinforced composite plate Graphene platelet Sinusoidal shear deformation theory Pasternak’s foundation Stress and deformation analysis
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多腔式型钢混凝土地下连续墙受弯承载力研究
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作者 秦鹏 幸永康 +2 位作者 宁继鸿 易伟建 陈仁朋 《湖南大学学报(自然科学版)》 北大核心 2025年第3期1-14,共14页
总结了钢筋混凝土地下连续墙在工程应用中的局限性,在此基础上提出多腔式型钢混凝土(multi-cavity steel reinforced concrete,MSRC)组合结构作为深基坑支护结构的研究设想并对其抗弯性能开展研究.对采用不同制作工艺的两类MSRC结构开... 总结了钢筋混凝土地下连续墙在工程应用中的局限性,在此基础上提出多腔式型钢混凝土(multi-cavity steel reinforced concrete,MSRC)组合结构作为深基坑支护结构的研究设想并对其抗弯性能开展研究.对采用不同制作工艺的两类MSRC结构开展纯弯试验.试验结果显示,两类构件在承载力等性能上差异较小,均表现为受弯破坏且具有较好的延性与后期承载力.对构件受弯全过程中钢材与混凝土相互作用进行有限元分析,发现钢材在中后期承担了80%以上的弯矩,而混凝土的主要作用是延缓钢材的局部屈曲.分析混凝土强度、钢材屈服强度、含钢率对构件受弯承载力与抗弯刚度的影响,结果显示:三类参数均与构件受弯承载力呈正相关,含钢率影响最显著,混凝土强度影响最小;混凝土强度和含钢率与构件初始抗弯刚度和使用阶段抗弯刚度呈正相关,混凝土强度影响较小,含钢率影响显著;钢材屈服强度与抗弯刚度呈负相关,但影响在10%以内.在平截面假定基础上给出适用于MSRC结构受弯承载力计算式,计算结果与试验和有限元模拟值吻合较好. 展开更多
关键词 基坑支护 组合结构 受弯试验 ABAQUS
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基于桩身弯曲破坏的路堤下筋箍碎石桩复合地基稳定分析
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作者 张玲 彭搏程 +1 位作者 徐泽宇 赵明华 《岩土力学》 北大核心 2025年第2期413-421,共9页
筋箍碎石桩复合地基的稳定分析是其设计计算的主要内容之一,但针对该方面的研究尚不完善。基于路堤下不同位置筋箍碎石桩破坏模式的差异对其进行分区,考虑桩身受压和弯曲破坏,对路堤下筋箍碎石桩复合地基稳定分析方法开展了理论研究。... 筋箍碎石桩复合地基的稳定分析是其设计计算的主要内容之一,但针对该方面的研究尚不完善。基于路堤下不同位置筋箍碎石桩破坏模式的差异对其进行分区,考虑桩身受压和弯曲破坏,对路堤下筋箍碎石桩复合地基稳定分析方法开展了理论研究。首先借鉴钢筋混凝土桩抗弯承载力的计算方法,结合筋箍碎石桩自身物理特性及二次逼近法求解超越方程的思想,提出了筋箍碎石桩临界弯矩理论值的计算方法。随后将桩身临界弯矩和等效抗剪强度概念引入传统极限平衡法进行改进,提出了基于桩身弯曲破坏的路堤下筋箍碎石桩复合地基稳定分析方法。最后通过算例分析对比传统极限平衡法、数值强度折减法与所提方法的计算结果,证明了所提方法用于路堤下筋箍碎石桩复合地基稳定分析的合理性。 展开更多
关键词 路堤 筋箍碎石桩 复合地基 稳定分析 弯曲破坏
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浅埋岩软土刚性桩复合地基桩土应力比试验研究
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作者 任佳丽 江洎洧 +2 位作者 胡胜刚 陈航 叶晨珲 《长江科学院院报》 北大核心 2025年第7期207-213,共7页
桩土应力比是浅埋岩软土地基中刚性桩复合地基设计的关键参数,但其取值规律及影响因素尚不明确。依托某混凝土闸坝工程,通过室内物理模型试验,系统研究单桩复合地基的承载特性与桩土应力比,分析垫层类型、桩受力情况、桩距及桩端持力层... 桩土应力比是浅埋岩软土地基中刚性桩复合地基设计的关键参数,但其取值规律及影响因素尚不明确。依托某混凝土闸坝工程,通过室内物理模型试验,系统研究单桩复合地基的承载特性与桩土应力比,分析垫层类型、桩受力情况、桩距及桩端持力层等因素的影响,获取桩土应力比随荷载变化规律及承载力对应的桩土应力比。结果表明:随荷载增加,摩擦桩桩土应力比先增后减,端承桩桩土应力比基本持续增大;水泥土垫层可显著提高复合地基承载力与桩土应力比,其最大桩土应力比约为砂砾石垫层的2倍;桩端持力层强度与桩间距对桩土应力比影响显著,可通过增大桩间距、调整桩端持力层来优化方案;端承桩复合地基在水泥土垫层下的承载力与砂砾石垫层接近,但桩土应力比更高,可采用复合嵌入式褥垫层以兼顾防渗与应力调节需求。研究成果可为浅埋岩软土刚性桩复合地基优化设计提供理论依据。 展开更多
关键词 刚性桩复合地基 桩土应力比 浅埋岩 软土 承载特性
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论纪检监察学自主知识体系的建构
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作者 塔娜 《内蒙古社会科学》 北大核心 2025年第3期30-38,共9页
纪检监察学是一门新兴学科,因其形成基础的特殊性,具有天然的中国特色。纪检监察学科的建设过程本身就是纪检监察学自主知识体系的建构过程,“自主性”是由其学科特点决定的。就纪检监察学自主知识体系的建构基础而言,需要解决其定位问... 纪检监察学是一门新兴学科,因其形成基础的特殊性,具有天然的中国特色。纪检监察学科的建设过程本身就是纪检监察学自主知识体系的建构过程,“自主性”是由其学科特点决定的。就纪检监察学自主知识体系的建构基础而言,需要解决其定位问题,从而明确自主知识体系建构的基本出发点和总体要求,其中需要处理好自主知识体系与学科体系、学术体系、话语体系等相近概念的关系,并遵循纪检监察知识全覆盖、模块化、衔接性要求。就纪检监察学自主知识体系的建构目标而言,需要全面梳理纪检监察的知识内容,形成逻辑关系清晰的知识分类及其有机整体,其中应当包括纪检监察理论、纪检监察体制、纪检监察法规、纪检监察政策四大类型的知识内容,从而充分体现纪检监察的理论性知识和经验性知识。 展开更多
关键词 纪检监察学 自主知识体系 基础定位 内容构成
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螺纹杆桩复合地基桩周土扰动细观试验研究
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作者 陈晓斌 段嘉洁 +1 位作者 杨严龙 李雨婷 《铁道科学与工程学报》 北大核心 2025年第7期3025-3036,共12页
螺纹杆桩作为一种异形变截面桩,其承载机理和荷载传递机制较直杆桩更为复杂。为了明确螺纹杆桩承载过程中桩周土的扰动范围和程度,对螺纹杆桩桩周土扰动特征开展细观试验研究。通过室内模型试验与CT(computed tomography)扫描技术初步... 螺纹杆桩作为一种异形变截面桩,其承载机理和荷载传递机制较直杆桩更为复杂。为了明确螺纹杆桩承载过程中桩周土的扰动范围和程度,对螺纹杆桩桩周土扰动特征开展细观试验研究。通过室内模型试验与CT(computed tomography)扫描技术初步探讨螺纹杆桩和直杆桩的承载性能差异,以及2种桩型桩周土的扰动状态,结合颗粒流数值模拟从宏细观2个层面研究螺纹杆桩在竖向荷载作用下桩周土的扰动范围与程度。采用CT扫描技术对试验前后的模型地基分别进行1次扫描,精确记录桩周土的位移,从而构建螺纹杆桩的校正颗粒流模型,对桩周土的竖向位移、配位数、力链等变化规律开展研究。结果表明,在相同条件下,螺纹杆桩的极限承载力较直杆桩提高了约60%。CT扫描和数值模拟结果显示,螺纹杆桩对桩周砂土颗粒的影响明显高于直杆桩,影响范围约为直杆桩的2倍。通过分析桩周砂土的位移、配位数变化规律,结果显示,在极限荷载作用下,螺纹杆桩桩周砂土在0.75倍桩径范围内发生显著扰动,在0.75~1倍桩径范围内发生微小扰动,在1倍桩径范围外则呈现明显的挤土效应。螺纹杆桩桩周土的接触力链分布较直杆桩更粗更密集,进一步表明螺纹杆桩的承载能力更强,桩周土扰动更为剧烈。研究结果可为螺纹杆桩的实际工程应用和相关理论研究提供参考。 展开更多
关键词 螺纹杆桩 复合地基 桩周土扰动 细观试验 CT扫描 颗粒流
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G3铜陵长江公铁大桥U形无内支撑预应力锚索组合围堰设计
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作者 何明辉 《世界桥梁》 北大核心 2025年第2期15-20,共6页
G3铜陵长江公铁大桥主桥采用(127.5+131+988+131+127.5)m斜拉-悬索协作体系桥。4号桥塔墩矩形-哑铃形承台平面尺寸为88.6 m×42.5 m,厚7.0 m,平均埋置深度约10 m。墩位处紧邻深切大崖壁,河床基岩基本裸露,综合考虑墩位处地形、地质... G3铜陵长江公铁大桥主桥采用(127.5+131+988+131+127.5)m斜拉-悬索协作体系桥。4号桥塔墩矩形-哑铃形承台平面尺寸为88.6 m×42.5 m,厚7.0 m,平均埋置深度约10 m。墩位处紧邻深切大崖壁,河床基岩基本裸露,综合考虑墩位处地形、地质等条件,采用靴形断面的U形无内支撑+预应力锚索组合形式的双壁钢围堰。围堰平面设计为129 m×81 m的U形开口结构,围堰上游侧长81.1 m,江心侧长129.0 m,下游侧长52.0 m,围堰顶高程+14.5 m,底高程随河床高程变化。为方便围堰制造与安装,围堰平面分为A~K共计11个节段,B~J钢结构节段竖向分为双壁侧板和单壁侧板,通过扩大基础、预应力锚索将围堰锚固在河床面上,A、K混凝土节段与钢结构节段和山体连接。采用有限元软件对围堰建模计算,围堰整体抗倾覆、抗滑移性能、受力及变形均满足要求。 展开更多
关键词 斜拉-悬索协作体系桥 桥塔墩 组合围堰 无内支撑 预应力锚索 扩大基础 结构设计
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海上风电桩-桶复合基础吸力安装特性研究
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作者 马文冠 邱旭 +3 位作者 刘鑫 张波 李会 赵昊 《太阳能学报》 北大核心 2025年第2期522-528,共7页
桩-桶复合基础沉放特性不同于打入式单桩基础,需准确评估安装过程中需要的吸力。基于模型试验与理论分析方法,研究吸力式桩-桶复合基础黏土中的沉放特性及需要吸力计算方法。结果表明:吸力式桩-桶复合基础可通过两步式安装方式沉放就位... 桩-桶复合基础沉放特性不同于打入式单桩基础,需准确评估安装过程中需要的吸力。基于模型试验与理论分析方法,研究吸力式桩-桶复合基础黏土中的沉放特性及需要吸力计算方法。结果表明:吸力式桩-桶复合基础可通过两步式安装方式沉放就位,相比较于打入桩可节约打桩成本;增加桶型基础分舱数量可有效实现对基础姿态矫正和下沉过程精细化控制;基于Su和CPT需吸力计算方法适用于评估基础下沉过程种需吸力预测,但吸力桩沉放会受到在位桶型基础影响,增加了沉放的需要吸力。 展开更多
关键词 海上风电 桩-桶复合基础 需要吸力 姿态控制 分步式安装 分舱
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墙背高填式省水船闸刚性桩复合地基处理研究
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作者 戈国庆 张毅濠 +2 位作者 王曙光 何良德 孟彦廷 《人民长江》 北大核心 2025年第6期130-137,161,共9页
省水船闸在中国北方平原地区应用潜力较大,但在软土覆盖层深厚的鲁西平原等地区,多级分布式省水船闸闸室结构本身和墙背高填土将引起地基显著沉降,不利于工程安全。以“位山-解山”渡槽穿黄-八级分散式省水船闸为例,考虑厚覆盖层、高水... 省水船闸在中国北方平原地区应用潜力较大,但在软土覆盖层深厚的鲁西平原等地区,多级分布式省水船闸闸室结构本身和墙背高填土将引起地基显著沉降,不利于工程安全。以“位山-解山”渡槽穿黄-八级分散式省水船闸为例,考虑厚覆盖层、高水头、墙背高填土等复杂条件,结合宽缝施工,提出了多种填土区与闸底刚性桩布置及桩顶连接方案,并建立有限元模型分析了闸室与桩体的受力、变形特性。结果表明:填土区宜采用等桩长变间距带桩帽布置,闸底宜采用边密中疏布置,宽缝宜在第③~⑤级省水池挡墙及回填土施工时封合;闸墙与桩顶刚接使得底板与闸墙差异沉降最小,可作为最优的桩顶连接方式,但此时桩身弯矩、剪力均超过预应力管桩极限承载力,需将其替换为灌注桩作为优化的刚性桩组合地基处理方案;优化方案下,闸墙外侧桩体顶部轴力、剪力及弯矩均最大,但仍在灌注桩极限承载力范围内。 展开更多
关键词 省水船闸 复合地基 地基处理 刚性连接 宽缝施工 京杭运河 穿黄工程
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路基不均匀沉降下无砟轨道受力变形特性解析解
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作者 颜建伟 朱兆铭 +3 位作者 刘天宇 谭鑫 程超 胡勇 《土木与环境工程学报(中英文)》 北大核心 2025年第2期98-106,共9页
基于无拉力Pasternak地基叠合梁理论,提出考虑土体剪切和层间脱空的轨道变形解析法,探讨路基不均匀沉降对双块式无砟轨道受力变形的影响规律。引入Heaviside阶梯函数描述轨道与路基的脱空行为,采用有限差分法求解微分控制方程,建立三维... 基于无拉力Pasternak地基叠合梁理论,提出考虑土体剪切和层间脱空的轨道变形解析法,探讨路基不均匀沉降对双块式无砟轨道受力变形的影响规律。引入Heaviside阶梯函数描述轨道与路基的脱空行为,采用有限差分法求解微分控制方程,建立三维梁-体空间有限元模型对比验证分析解析模型的适用性并确定其适用范围。结果表明:路基沉降变形较平缓时,解析模型与有限元模型计算结果几乎无差异,随着路基沉降变形加剧,两种模型计算偏差越来越大;在路基沉降波长为20 m的工况下,沉降幅值超过21 mm时,解析模型不再适用;在给定路基沉降幅值为20 mm的条件下,解析模型适用于沉降波长大于19.8 m的路基沉降工况。 展开更多
关键词 PASTERNAK地基 叠合梁 双块式无砟轨道 有限差分法 有限元模型
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