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柔性荷载作用下水泥土桩复合地基的承载力与沉降特性的研究 被引量:10
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作者 窦远明 戴为民 +1 位作者 刘晓立 刘熙媛 《河北工业大学学报》 CAS 2001年第1期80-83,共4页
在分析现场沉降观测结果和有限元计算结果的基础上,对柔性荷载作用下水泥土桩 复合地基的承载力和沉降特性进行了分析研究,得出桩土应力比随时间、荷载性质、面积 置换率等因素变化的规律,以及沉降随时间荷载变化的特性,并分析了桩... 在分析现场沉降观测结果和有限元计算结果的基础上,对柔性荷载作用下水泥土桩 复合地基的承载力和沉降特性进行了分析研究,得出桩土应力比随时间、荷载性质、面积 置换率等因素变化的规律,以及沉降随时间荷载变化的特性,并分析了桩顶处存在的刺入 变形和土拱效应对复合地基承载力的影响. 展开更多
关键词 柔性荷载 土拱效应 水泥土桩 复合地基 承载力 沉降特性 高速公路
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桩–土–隔震结构相互作用地震响应分析 被引量:17
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作者 邹立华 赵人达 赵建昌 《岩土工程学报》 EI CAS CSCD 北大核心 2004年第6期782-786,共5页
本文在Penzien模型的基础上,建立了隔震结构考虑桩土相互作用(SSI)的计算模型,推导了其运动方程,分析了桩土相互作用对隔震结构的影响,同时,对地震动自由场输入和桩端输入对隔震结构的影响进行了比较。分析结果表明桩土相互作用对隔震... 本文在Penzien模型的基础上,建立了隔震结构考虑桩土相互作用(SSI)的计算模型,推导了其运动方程,分析了桩土相互作用对隔震结构的影响,同时,对地震动自由场输入和桩端输入对隔震结构的影响进行了比较。分析结果表明桩土相互作用对隔震结构地震响应有一定影响,但其影响比非隔震结构小得多,因而,在一般的隔震结构设计中,可以不考虑SSI的影响。 展开更多
关键词 隔震结构 桩土相互作用 桩端 地震响应分析 SSI 基础 地震动 运动方程 自由场 推导
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桩–土–桩相互作用影响的试验研究 被引量:14
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作者 王涛 刘金砺 《岩土工程学报》 EI CAS CSCD 北大核心 2008年第1期100-105,共6页
通过大比例尺模型试验、工程实测结果与弹性理论解进行对比,指出弹性理论解夸大了桩–桩、桩–土、土–土相互作用影响,造成沉降计算值偏大和过高估计桩顶反力的不均匀性和筏底地基土反力的不均匀性。据此,建议进行上部结构–基础–桩... 通过大比例尺模型试验、工程实测结果与弹性理论解进行对比,指出弹性理论解夸大了桩–桩、桩–土、土–土相互作用影响,造成沉降计算值偏大和过高估计桩顶反力的不均匀性和筏底地基土反力的不均匀性。据此,建议进行上部结构–基础–桩土共同作用的分析计算时,必须充分估计弹性理论解与真实值的差别,以工程实测和试验数据为基础对弹性理论解进行修正,方可获得较满意的计算结果。 展开更多
关键词 桩–桩 桩–土 土–土 相互作用因子 弹性理论
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桩-土相互作用影响的模型试验研究 被引量:14
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作者 王涛 《岩土力学》 EI CAS CSCD 北大核心 2008年第6期1589-1592,共4页
通过将模型试验、现场实测的结果与弹性理论解进行对比,指出弹性理论解夸大了桩-桩、桩-土、土-土相互作用影响,造成沉降计算值偏大和过高估计桩顶反力的不均匀性(或筏底地基土反力的不均匀性),并提出对弹性理论解进行修正的途径和方法。
关键词 桩-桩 桩-土 土-土 相互作用影响系数 弹性理论
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A destructive field study on the behavior of piles under tension and compression 被引量:16
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作者 Zhong-miao ZHANG Qian-qing ZHANG Feng YU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第4期291-300,共10页
This paper involves a series of destructive full-scale load tests on long bored piles instrumented with strain gauges along the shafts,including two compression and two tension loading tests.The load-displacement resp... This paper involves a series of destructive full-scale load tests on long bored piles instrumented with strain gauges along the shafts,including two compression and two tension loading tests.The load-displacement response,axial force,skin friction,and the thresholds of the slip displacement for fully mobilizing the skin resistances in different soils are discussed.Moreover,the theoretical solution for estimating the pile tip settlement under compression was adopted to analyze the test results.It was found that the measured skin frictions for the piles under compression were about 6% to 42% higher than the estimated values of the cone penetration tests(CPTs),whereas the measured skin frictions in the uplift cases were about 16% to 50% smaller than the estimated values.In addition,the average limited skin frictions for the tension piles were about 0.36 to 0.78 times the average ultimate skin frictions for the piles under compression.It also can be indicated that the skin friction along the pile depth approached the limited state,and decreased from a peak value with increasing loads. 展开更多
关键词 Destructive full-scale test Load-displacement response Axial force pile-soil relative displacement Skin friction
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Elastoplastic solutions for single piles under combined vertical and lateral loads 被引量:16
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作者 ZHANG Lei GONG Xiao-nan +1 位作者 YANG Zhong-xuan YU Jian-lin 《Journal of Central South University》 SCIE EI CAS 2011年第1期216-222,共7页
In order to improve the reliability of the design and calculation of single piles under the combined vertical and lateral loads, the solutions were presented based on the subgrade reaction method, in which the ultimat... In order to improve the reliability of the design and calculation of single piles under the combined vertical and lateral loads, the solutions were presented based on the subgrade reaction method, in which the ultimate soil resistance was considered and the coefficient of subgrade reaction was assumed to be a constant. The corresponding computational program was developed using FORTRAN language. A comparison between the obtained solutions and the model test results was made to show the validity of the obtained solutions. The calculation results indicate that both the maximum lateral displacement and bending moment increase with the increase of the vertical and lateral loads and the pile length above ground, while decrease as the pile stiffness, the coefficient of subgrade reaction and the yielding displacement of soil increase. It is also shown that the pile head condition controls the pile responses and the vertical load may cause the instability problem to the pile. In general, the proposed method can be employed to calculate the pile responses independent of the magnitude of the pile deflection. 展开更多
关键词 pile-soil interaction combined vertical and lateral loads ultimate resistance subgrade reaction method bendingmoment
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水泥粉煤灰钢渣桩复合地基承载力与沉降特性试验研究及应用 被引量:8
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作者 黄涛 喻国安 +2 位作者 陈文棠 刘敬先 王小章 《建筑结构》 CSCD 北大核心 1999年第12期27-28,23,共3页
总结了CFS桩复合地基的设计、检测和加固效果,其中特别对CFS桩复合地基承载力特性、附加应力、桩土应力分担比、荷载分担比各自特征及相互关系进行了分析论述,并与相类似的CFG桩复合地基作了简单的比较。
关键词 复合地基 承载力 CFG桩 荷载 地基沉降
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Numerical modeling of centrifuge cyclic lateral pile load experiments 被引量:8
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作者 Nikos Gerolymos Sandra Escoffier +1 位作者 George Gazetas Jacques Garnier 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2009年第1期61-76,共16页
To gain insight into the inelastic behavior of piles, the response of a vertical pile embedded in dry sand and subjected to cyclic lateral loading was studied experimentally in centrifuge tests conducted in Laboratoir... To gain insight into the inelastic behavior of piles, the response of a vertical pile embedded in dry sand and subjected to cyclic lateral loading was studied experimentally in centrifuge tests conducted in Laboratoire Central des Ponts et Chaussees. Three types of cyclic loading were applied, two asymmetric and one symmetric with respect to the unloaded pile. An approximately square-root variation of soil stiffness with depth was obtained from indirect in-flight density measurements, laboratory tests on reconstituted samples, and well-established empirical correlations. The tests were simulated using a cyclic nonlinear Winkler spring model, which describes the full range of inelastic phenomena, including separation and re-attachment of the pile from and to the soil. The model consists of three mathematical expressions capable of reproducing a wide variety of monotonic and cyclic experimentalp-y curves. The physical meaning of key model parameters is graphically explained and related to soil behavior. Comparisons with the centrifuge test results demonstrate the general validity of the model and its ability to capture several features of pile-soil interaction, including: soil plastification at an early stage of loading, "pinching" behavior due to the formation of a relaxation zone around the upper part of the pile, and stiffness and strength changes due to cyclic loading. A comparison of the p-y curves derived from the test results and the proposed model, as well as those from the classical curves of Reese et al. (1974) for sand, is also presented. 展开更多
关键词 centrifuge test Winkler model p-y curves cyclic loading pile-soil separation/gapping nonlinear response experimental validation
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3D finite element analysis on pile-soil interaction of passive pile group 被引量:6
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作者 赵明华 刘敦平 +1 位作者 张玲 蒋冲 《Journal of Central South University of Technology》 EI 2008年第1期75-80,共6页
The interaction between pile and soft soil of the passive pile group subjected to soil movement was analyzed with three-dimensional finite element model by using ANSYS software. The soil was assumed to be elastic-plas... The interaction between pile and soft soil of the passive pile group subjected to soil movement was analyzed with three-dimensional finite element model by using ANSYS software. The soil was assumed to be elastic-plastic complying with the Drucker-Prager yield criterion in the analysis. The large displacement of soil was considered and contact elements were used to evaluate the interaction between pile and soil. The influences of soil depth of layer and number of piles on the lateral pressure of the pile were investigated, and the lateral pressure distributions on the (2×1) pile group and on the (2×2) pile group were compared. The results show that the adjacent surcharge may result in significant lateral movement of the soft soil and considerable pressure on the pile. The pressure acting on the row near the surcharge is higher than that on the other row, due to the "barrier" and arching effects in pile groups. The passive load and its distribution should be taken into account in the design of the passive piles. 展开更多
关键词 pile-soil interaction passive pile group soft soil lateral pressure DEFORMATION 3D finite element analysis
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Fiber optic monitoring of an anti-slide pile in a retrogressive landslide 被引量:1
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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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A simplified method for the determination of vertically loaded pile-soil interface parameters in layered soil based on FLAC3D 被引量:5
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作者 Jiu-jiang WU Yan LI +2 位作者 Qian-gong CHENG Hua WEN Xin LIAN 《Frontiers of Structural and Civil Engineering》 EI CSCD 2016年第1期103-111,共9页
The numerical analysis of pile-soil interaction commonly requires a lot of trial works to determine the interface parameters and the accuracy cannot be ensured normally. Considering this, this paper first conducts a s... The numerical analysis of pile-soil interaction commonly requires a lot of trial works to determine the interface parameters and the accuracy cannot be ensured normally. Considering this, this paper first conducts a sensitivity analysis to figure out the influence of interface parameters on the bearing behavior of a single pile in sand. Then, a simplified method for the determination of pile-soil interface parameters in layered soil is proposed based on the parameter studies. Finally, a filed loading test is used for the validation of the simplified method, and the calculated results agree well with the monitoring data. In general, the simplified method proposed in this paper works with higher accuracy and consumes less time compared with the traditional trial works, especially on the determinations ofinterfacial cohesive and interracial friction angle. 展开更多
关键词 determination of interface parameters pile-soil interaction FLAC3D sensitivity analysis layered soil
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The mechanical response of piles with consideration of pile-soil interactions under a periodic wave pressure 被引量:6
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作者 王环玲 徐卫亚 朱峰 《Journal of Hydrodynamics》 SCIE EI CSCD 2014年第6期921-929,共9页
The pile-soil interaction under wave loads is an extremely complex and difficult issue in engineering. In this study, a physical model test is designed based on the principle of the gravity similarity to obtain time h... The pile-soil interaction under wave loads is an extremely complex and difficult issue in engineering. In this study, a physical model test is designed based on the principle of the gravity similarity to obtain time histories of wave forces of unsteady regular waves, and to measure the magnitude and the distribution of wave forces acting on the piles. A numerical model and relevant numerical methods for the pile-soil contact surface are adopted based on the principles of elastic dynamics. For a practical project, the time histories of wave forces on the piles are obtained through physical model tests. The deformations of the piles in the pile-soil interactions and the distribution of the bending moment on the piles are studied. It is shown that, with the increase of the period of wave pressures, the absolute value of the horizontal displacement of the piles increases, the embedment depth of the piles increases, and the scope of influence of soils increases. The change of the bending moment on the piles is consistent with that of its theoretical results, and the proposed numerical method can very well simulate the properties of the piles. 展开更多
关键词 periodic wave pressure pile-soil interaction non-linear contact numerical calculation
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Numerical simulation on behavior of pile foundations under cyclic axial loads 被引量:4
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作者 ZHAO Ming-hua HENG Shuai ZHENG Yue 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第12期2906-2913,共8页
On the basis of the two dimensional finite element analysis model, the pile foundations' mechanical effect of the rigid pile composite foundation under the dynamic load was researched. Through the research, the de... On the basis of the two dimensional finite element analysis model, the pile foundations' mechanical effect of the rigid pile composite foundation under the dynamic load was researched. Through the research, the development law and deformation property of axial force of pile body, shaft resistance of pile, and cumulative settlement of pile head under vertical cyclic dynamic loads were concluded. Through the comparison and analysis of the test results of dynamic models, the test results of Poulos(1989) and cumulative settlement model of the single pile under cyclic loads were confirmed. Based on the above research, Fortran language was adopted to introduce the soil attenuation factor, the secondary development of relevant modules of ABAQUS was carried out, and the effect of soil attenuation factor on dynamic property of pile-soil was discussed further. 展开更多
关键词 pile FOUNDATION ABAQUS CYCLIC dynamic load numerical simulation pile-soil interaction SECONDARY development
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桩锚试验的数值模拟 被引量:3
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作者 冯紫良 冯时恩 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2006年第2期175-180,共6页
提出了一种新型的单元模型来模拟桩锚结构:桩体内的混凝土用脆弹性材料模型、钢筋用典型的应变硬化弹塑性材料模型、桩土间的相互作用则用一种特殊的非线性W INKLER(文克尔)类地基来模拟其间的粘合、滑移和分离等力学状态.推导了锚桩工... 提出了一种新型的单元模型来模拟桩锚结构:桩体内的混凝土用脆弹性材料模型、钢筋用典型的应变硬化弹塑性材料模型、桩土间的相互作用则用一种特殊的非线性W INKLER(文克尔)类地基来模拟其间的粘合、滑移和分离等力学状态.推导了锚桩工作状态下接触面处的位移解答和刚度公式,编写了有关的计算程序.根据试验的数据结果,用复形调优法对一些计算参数做了反分析研究.最后给出了计算实例,并与工程的实测数据进行了对比. 展开更多
关键词 桩锚与土层 相互作用 非线性 有限元 反分析 优化
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桩-土动力相互作用分析模型的对比分析 被引量:6
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作者 刘立平 李英民 韩军 《地震工程与工程振动》 CSCD 北大核心 2009年第2期191-197,共7页
本文对常用的刚结模型、铰结模型、接触模型、简化模型和弹簧模型五种桩-土动力相互作用分析模型进行了对比研究,分析发现:不同的分析模型有不同的适用范围,在桩-土动力相互作用分析时应根据所关心的问题选用不同的分析模型。本文给出... 本文对常用的刚结模型、铰结模型、接触模型、简化模型和弹簧模型五种桩-土动力相互作用分析模型进行了对比研究,分析发现:不同的分析模型有不同的适用范围,在桩-土动力相互作用分析时应根据所关心的问题选用不同的分析模型。本文给出了选择模型的建议,一般优先采用接触模型,次优为铰结模型。 展开更多
关键词 桩-土 动力相互作用 分析模型 接触模型
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Pile-clayey soil interaction analysis by boundary element method 被引量:2
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作者 Mohammed Y.Fattah Kais T.Shlash Madhat S.M.Al-Soud 《Journal of Rock Mechanics and Geotechnical Engineering》 2012年第1期28-43,共16页
This paper is an attempt to solve the soil-pile interaction problems using the boundary element method(BEM).A computer package called PGroupN,which deals mainly with the analysis of the pile group problem,is employe... This paper is an attempt to solve the soil-pile interaction problems using the boundary element method(BEM).A computer package called PGroupN,which deals mainly with the analysis of the pile group problem,is employed in this study.Parametric studies are carried out to assess the impacts of the pile diameter,pile length,ratio of spacing to diameter and the thickness of soil stratum.The external load is applied incrementally and,at each increment,a check is made that the stress state at the pile-soil interfaces does not violate the yield criteria.This is achieved by specifying the limited stresses of the soil for the axial pile shaft capacity and end-bearing resistance.The elements of the pile-soil interface yielded can take no additional load,and any increase in load is therefore redistributed between the remaining elements until all elements have failed.Thus,by successive application of loading increments,the entire load-displacement relationship for the pile group is determined.It is found that as the applied load reaches the ultimate bearing capacity of the pile group,all the piles will share the same amount of load.An exception to this case is for the center pile in a group of 9 piles embedded in clay,which is not consistent with the behaviors of the other piles in the group even if the load reaches the ultimate state.For the 4 piles group embedded in clay,the maximum load carried by the base does not exceed 8% of the load carried by each pile with different diameters.This low percentage ascertains that the piles embedded in cohesive soils carry most of the load throughout their shafts. 展开更多
关键词 pile foundations clayey soil pile-soil interaction boundary element method (BEM)
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The Boundary Element Method for Pile-Soil Interaction 被引量:1
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作者 Liu Xingye Associate Professor, Department of Civil Engineering, Tianjin University, 300072 Tianjin 《China Ocean Engineering》 SCIE EI 1992年第3期317-330,共14页
In this paper, several mathmatical models for the pile- soil interaction are outlined. The Boundary Element Method is one of the very effective methods for the reasonable models of elasticity and elastoplasticity. The... In this paper, several mathmatical models for the pile- soil interaction are outlined. The Boundary Element Method is one of the very effective methods for the reasonable models of elasticity and elastoplasticity. The major of this paper is concerned with the Boundary Element Method for the pile-soil interaction, including general methods and calculating formulation of static and dynamic analysis of the pile and pile groups. Some results of analysis are also given. 展开更多
关键词 pile soil pile-soil interaction boundary element method BE-FE coupled method
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Pile-soil stress ratio in bidirectionally reinforced composite ground by considering soil arching effect 被引量:1
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作者 邹新军 杨眉 +1 位作者 赵明华 杨小礼 《Journal of Central South University》 SCIE EI CAS 2008年第S2期1-7,共7页
To discuss the soil arching effect on the load transferring model and sharing ratios by the piles and inter-pile subsoil in the bidirectionally reinforced composite ground, the forming mechanism, mechanical behavior a... To discuss the soil arching effect on the load transferring model and sharing ratios by the piles and inter-pile subsoil in the bidirectionally reinforced composite ground, the forming mechanism, mechanical behavior and its effect factors were discussed in detail. Then, the unified strength theory was introduced to set up the elastoplastic equilibrium differential equation of the subsoil under the limit equilibrium state. And from the equation, the solutions were derived with the corresponding formulas presented to calculate the earth pressure over and beneath the horizontal reinforced cushion or pillow, the stress of inter-pile subsoil and the pile-soil stress ratio. Based on the obtained solutions and measured data from an engineering project, the influence rules by the soil property parameters (i.e., the cohesion c and internal friction angle φ) and pile spacing on the pile-soil stress ratio n were discussed respectively. The results show that to improve the load sharing ratio by the piles, the more effective means for filling materials with a larger value of φ is to increase the ratio of pile cap size to spacing, while to reduce the pile spacing properly and increase the value of cohesion c is advisable for those filling materials with a smaller value of φ. 展开更多
关键词 composite ground pile geosynthetic-reinforced CUSHION soil ARCHING effect pile-soil stress ratio
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Investigation on the Effect of Geometrical and Geotechnical Parameters on Elongated Offshore Piles Using Fuzzy Inference Systems 被引量:1
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作者 Ali AMINFAR Alireza MOJTAHEDI +1 位作者 Hamid AHMADI Mohammad Hossain AMINFAR 《China Ocean Engineering》 SCIE EI CSCD 2017年第3期378-388,共11页
Among numerous offshore structures used in oil extraction, jacket platforms are still the most favorable ones in shallow waters. In such structures, log piles are used to pin the substructure of the platform to the se... Among numerous offshore structures used in oil extraction, jacket platforms are still the most favorable ones in shallow waters. In such structures, log piles are used to pin the substructure of the platform to the seabed. The pile's geometrical and geotechnical properties are considered as the main parameters in designing these structures. In this study, ANSYS was used as the FE modeling software to study the geometrical and geotechnical properties of the offshore piles and their effects on supporting jacket platforms. For this purpose, the FE analysis has been done to provide the preliminary data for the fuzzy-logic post-process. The resulting data were implemented to create Fuzzy Inference System (FIS) classifications. The resultant data of the sensitivity analysis suggested that the orientation degree is the main factor in the pile's geometrical behavior because piles which had the optimal operational degree of about 5° arc more sustained. Finally, the results showed that the related fuzzified data supported the FE model and provided an insight for extended offshore pile designs. 展开更多
关键词 pile soil FEM offshore jacket platform pile-soil interaction ^-logic FUZZIFICATION
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桩土影响下LNG储罐基础隔震地震响应分析 被引量:5
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作者 郑建华 孙建刚 +2 位作者 崔利富 王向楠 郝进锋 《地震工程与工程振动》 CSCD 北大核心 2014年第2期223-232,共10页
为了考虑桩土对LNG储罐基础隔震体系地震响应的影响,依据《建筑桩基技术规范》,将桩土简化为弹簧阻尼系统,将其附加到LNG储罐基础隔震动力方程中,建立桩土影响下的LNG基础隔震简化力学模型及控制方程,同时应用ADINA有限元数值仿真程序建... 为了考虑桩土对LNG储罐基础隔震体系地震响应的影响,依据《建筑桩基技术规范》,将桩土简化为弹簧阻尼系统,将其附加到LNG储罐基础隔震动力方程中,建立桩土影响下的LNG基础隔震简化力学模型及控制方程,同时应用ADINA有限元数值仿真程序建立LNG储罐基础隔震三维有限元模型,采用动力时程积分法进行地震响应分析,并将理论解与有限元解进行对比。结果表明:桩土影响下的立式储罐基础隔震地震响应减震效果明显,但晃动波高有所放大;无基础隔震情况下,桩土作用对LNG储罐内罐的内力具有减震效果,但对总内力有所放大。在基础隔震情况下,桩土作用对LNG储罐地震响应影响不明显。从安全角度,无基础隔震下,考虑桩土作用,对总内力来讲是安全的,而内罐设计时,可以忽略桩土的影响。基础隔震情况下可不考虑桩土作用。在基础隔震时,理论解和有限元解内力比较接近,无基础隔震时理论解内力偏大20%左右;对于晃动波高,理论解小于有限元解,建议实际设计时给予放大考虑。从反应实际情况出发,考虑桩土影响的理论解是可行的。 展开更多
关键词 LNG储罐 基础隔震 桩土 ADINA 地震响应
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