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Influence of Incomplete Soil Plugs on Bearing Capacities of Bucket Foundations in Clay
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作者 LI Hui-shan LIU Run +1 位作者 YANG Xu LIAN Ji-jian 《China Ocean Engineering》 SCIE EI CSCD 2024年第1期144-155,共12页
Due to the uneven seabed and heaving of soil during pumping,incomplete soil plugs may occur during the installation of bucket foundations,and the impacts on the bearing capacities of bucket foundations need to be eval... Due to the uneven seabed and heaving of soil during pumping,incomplete soil plugs may occur during the installation of bucket foundations,and the impacts on the bearing capacities of bucket foundations need to be evaluated.In this paper,the contact ratio(the ratio of the top diameter of the soil plug to the diameter of the bucket)and the soil plug ratio(the ratio of the soil heave height to the skirt height)are defined to describe the shape and size of the incomplete soil plug.Then,finite element models are established to investigate the bearing capacities of bucket foundations with incomplete soil plugs and the influences of the contact ratios,and the soil plug ratios on the bearing capacities are analyzed.The results show that the vertical bearing capacity of bucket foundations in homogeneous soil continuously improves with the increase of the contact ratio.However,in normally consolidated soil,the vertical bearing capacity barely changes when the contact ratio is smaller than 0.75,while the bearing capacity suddenly increases when the contact ratio increases to 1 due to the change of failure mode.The contact ratio hardly affects the horizontal bearing capacity of bucket foundations.Moreover,the moment bearing capacity improves with the increase of the contact ratio for small aspect ratios,but hardly varies with increasing contact ratio for aspect ratios larger than 0.5.Consequently,the reduction coefficient method is proposed based on this analysis to calculate the bearing capacities of bucket foundations considering the influence of incomplete soil plugs.The comparison results show that the proposed reduction coefficient method can be used to evaluate the influences of incomplete soil plug on the bearing capacities of bucket foundations. 展开更多
关键词 bucket foundation incomplete soil plug uniaxial bearing capacity contact ratio soil plug ratio
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Estimation of Undrained Bearing Capacity for Offshore Soft Foundations with Cyclic Load 被引量:18
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作者 Wang, JH Liu, YF +1 位作者 Xing, Y Di, HM 《China Ocean Engineering》 SCIE EI 1998年第2期213-222,共10页
The degradation strength of soils under cyclic loading is studied and a method for determining the cyclic degradation strength with cyclic triaxial tests is given in the paper. Furthermore, a dum my static method for ... The degradation strength of soils under cyclic loading is studied and a method for determining the cyclic degradation strength with cyclic triaxial tests is given in the paper. Furthermore, a dum my static method for estimating the undrained bearing capacity for offshore soft foundation under wave loads is developed. It can consider the effect of the difference of cyclic stress for different parts of the foundation on both the degradation strength of the foundation soil and the bearing capacity so that the estimated result can better reflect the real condition of foundation under cyclic loading. The method can be applied to plane and space problem. 展开更多
关键词 offshore engineering soft foundation soil dynamics bearing capacity cyclic load
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Characteristic Test Study on Bearing Capacity of Suction Caisson Foundation Under Vertical Load 被引量:3
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作者 DAI Guo-liang ZHU Wen-bo +2 位作者 ZHAI qian GONG wei-ming ZHAO Xue-liang 《China Ocean Engineering》 SCIE EI CSCD 2020年第2期267-278,共12页
Suction caisson foundations are often subjected to vertical uplift loads,but there are still no wide and spread engineering specifications on design and calculation method for uplift bearing capacity of suction caisso... Suction caisson foundations are often subjected to vertical uplift loads,but there are still no wide and spread engineering specifications on design and calculation method for uplift bearing capacity of suction caisson foundation.So it is important to establish an uplift failure criterion.In order to study the uplift bearing mechanism and failure mode of suction caisson foundation,a series of model tests were carried out considering the effects of aspect ratio,soil permeability and loading mode.Test results indicate that the residual negative pressure at the top of caisson is beneficial to enhance uplift bearing capacity.The smaller the permeability coefficient is,the higher the residual negative pressure will be.And the residual negative pressure is approximately equal to the water head that causes seepage in the caisson.When the load reaches the ultimate bearing capacity,both the top and bottom negative pressures are smaller than Su and both the top and bottom reverse bearing capacity factors are smaller than 1.0 in soft clay.Combined the uplift bearing characteristics of caisson in sandy soil and soft clay,the bearing capacity composition and the calculation method are proposed.It can provide a reference for the engineering design of suction caisson foundation under vertical load. 展开更多
关键词 suction caisson foundation uplift bearing capacity failure mode negative pressure sandy soil soft clay
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Effect of Bearing Capacity on Designing Foundations in Iraq Using STAAD Pro-v8i 被引量:3
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作者 Entidhar Al-Taie Nadhir Al-Ansari Sven Knutsson 《Engineering(科研)》 2014年第6期292-303,共12页
Most of Iraqi soil is classified as Quaternary deposits, especially in the Mesopotamian plain and tributaries of the River Tigris. Soil varies from north to south of Iraq. These differences in soil affected the proces... Most of Iraqi soil is classified as Quaternary deposits, especially in the Mesopotamian plain and tributaries of the River Tigris. Soil varies from north to south of Iraq. These differences in soil affected the process to select the suitable type of foundation. This research is to study the effect of bearing capacity on shallow foundations in different regions of Iraq. Seventy nine samples were collected from 23 boreholes at three different locations (Mosul at the North, Baghdad at the middle and Basrah at the south of Iraq). The samples were collected at varying depth between 1 to 24 m. They were subjected to the following testes: Atterberg limits, sieve and hydrometers, consolidation, direct shear, unconfined compression and the filed (SPT test). The values of the bearing capacity parameters ( and c) were obtained from the above tests. The results obtained were used in the application of the general equation of the bearing capacity. Then, the model of a building was designed (two floors, with mat foundation type) using STAAD Pro software. The average values of bearing capacity in each region were applied in the program (Mosul = 177 KPa, Baghdad = 125 KPa and Basrah = 84 KPa). In addition, the worst bearing capacity values were also used for the three regions (Mosul = 77 KPa, Baghdad = 68 KPa and Basrah = 24 KPa). The results obtained from the average and worst bearing capacity indicated that for Mosul, we could use shallow foundation (spread and mat used if there was basement) for different areas and for buildings with many stories. For Baghdad region, shallow foundation was more suitable for building not higher than five stories. Finally, for Basrah region, shallow foundations were an appropriate selection, but for most areas deep foundation was the right choice. 展开更多
关键词 bearing Capacity soil STAAD Pro. Laboratory Tests and foundation
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Upper Bound Solution of the Resisting Moment Bearing Capacity of A Composite Bucket Shallow Foundation of An Offshore Wind Turbine in Sand 被引量:1
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作者 LIU Run LI Tian-liang +1 位作者 CHEN Guang-si LIAN Ji-jian 《China Ocean Engineering》 SCIE EI CSCD 2022年第6期859-870,共12页
Bearing the large moment that is generated by the wind load that acts on the upper structure of offshore wind turbines is an important feature of their foundations that is different from other offshore structures.A co... Bearing the large moment that is generated by the wind load that acts on the upper structure of offshore wind turbines is an important feature of their foundations that is different from other offshore structures.A composite bucket shallow foundation(CBSF)has been proposed by Tianjin University to address the soft geological conditions in the offshore regions of China for wind turbines.The CBSF is a new type of foundation and is effective against large moments.The soil deformation test of a CBSF and the numerical simulation study under the same working conditions are carried out to determine the failure mechanism of a CBSF under moment loading.The resisting soil compression rateηm is defined as a new empirical parameter that indicates the ability of the soil inside the bucket to resist moment loading.The upper limit of the resisting moment bearing capacity of the bucket foundation is derived through the upper bound theorem of classical plasticity theory based on the failure mechanism.The calculation method is validated by tests of bucket models with different height-diameter ratios in sand under moment loading. 展开更多
关键词 bucket foundation failure mechanism resisting moment bearing capacity upper bound theorem resisting soil compression rate
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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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Performance assessment of borehole arrangements for the design of rectangular shallow foundation systems
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作者 Marcin Chwała Danko J.Jerez +1 位作者 Hector A.Jensen Michael Beer 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第12期3291-3304,共14页
This study proposes a framework to evaluate the performance of borehole arrangements for the design of rectangular shallow foundation systems under spatially variable soil conditions. Performance measures are introduc... This study proposes a framework to evaluate the performance of borehole arrangements for the design of rectangular shallow foundation systems under spatially variable soil conditions. Performance measures are introduced to quantify, for a fixed foundation layout and given soil sounding locations, the variability level of the foundation system bearing capacities in terms of their mean values and standard deviations. To estimate these measures, the recently proposed random failure mechanism method (RFMM) has been adopted and extended to consider any arrangement of rectangular foundations and boreholes. Hence, three-dimensional bearing capacity estimation under spatially variable soil can be efficiently performed. Several numerical examples are presented to illustrate the applicability of the proposed framework, including diverse foundation arrangements and different soil correlation structures. Overall, the proposed framework represents a potentially useful tool to support the design of geotechnical site investigation programs, especially in situations where very limited prior knowledge about the soil properties is available. 展开更多
关键词 foundationS Geotechnical engineering bearing capacity Optimal borehole placement soil spatial variability
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Spatially variable soils affecting geotechnical strip foundation design
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作者 Joanna Pieczyńska-Kozowska Giovanna Vessia 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2022年第3期886-895,共10页
Natural soil variability is a well-known issue in geotechnical design,although not frequently managed in practice.When subsoil must be characterized in terms of mechanical properties for infrastructure design,random f... Natural soil variability is a well-known issue in geotechnical design,although not frequently managed in practice.When subsoil must be characterized in terms of mechanical properties for infrastructure design,random finite element method(RFEM)can be effectively adopted for shallow foundation design to gain a twofold purpose:(1)understanding how much the bearing capacity is affected by the spatial variability structure of soils,and(2)optimisation of the foundation dimension(i.e.width B).The present study focuses on calculating the bearing capacity of shallow foundations by RFEM in terms of undrained and drained conditions.The spatial variability structure of soil is characterized by the autocorrelation function and the scale of fluctuation(δ).The latter has been derived by geostatistical tools such as the ordinary Kriging(OK)approach based on 182 cone penetration tests(CPTs)performed in the alluvial plain in Bologna Province,Italy.Results show that the increase of the B/δratio not only reduces the bearing capacity uncertainty but also increases its mean value under drained conditions.Conversely,under the undrained condition,the autocorrelation function strongly affects the mean values of bearing capacity.Therefore,the authors advise caution when selecting the autocorrelation function model for describing the soil spatial variability structure and point out that undrained conditions are more affected by soil variability compared to the drained ones. 展开更多
关键词 bearing capacity Shallow foundation Random finite element method(RFEM) Ordinary kriging(OK) soil property variability structure Reliability-based design
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Foundation Assessment in Different Parts of Iraq Using STAAD Pro V8i 被引量:2
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作者 Entidhar A1-Taie Nadhir A1-Ansari Sven Knutsson Tarek Edrees Saaed 《Journal of Civil Engineering and Architecture》 2013年第3期273-281,共9页
Foundation is considered as one of the main parts of any structure. The type of foundation used is highly dependent on the type and properties of soil. The design of foundations requires many factors that should be de... Foundation is considered as one of the main parts of any structure. The type of foundation used is highly dependent on the type and properties of soil. The design of foundations requires many factors that should be defined. There are number of differences in the geological and soil conditions in Iraq. As a consequence, these differences are reflected on the type of foundation to be used. Despite these differences, same materials and style of buildings are used all over Iraq. The main problems of Iraqi soil are high gypsum content, salinity and shallow water table depth. These factors that influence the foundations are the soil properties and the amount of loads that transmitted by the superstructure. The situation has been analysed through a case study which illustrated the link between soil and foundation types in three different parts of Iraq (Mosul, Baghdad and Basra). One building was analysed using "STAAD (structural analysis and design). Pro" software in these regions. It is evident that Iraqi designers and engineers require local code to define all the loads, materials and design of the foundation to be used. The use of local materials might be very effective from both engineering and economic perspectives. 展开更多
关键词 GYPSUM bearing capacity Iraqi soil raft foundation foundation design base pressure
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Failure envelope of a caisson foundation under combined vertical,horizontal and moment loadings
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作者 Abdellatif Boucheloukh Gong Weiming +1 位作者 Dai Guoliang Zhu Mingxing 《Journal of Southeast University(English Edition)》 EI CAS 2020年第2期188-197,共10页
To investigate the bearing capacity of a caisson foundation under combined vertical,horizontal and moment loadings,the three-dimensional finite element analyses of a circular caisson foundation in homogenous sandy soi... To investigate the bearing capacity of a caisson foundation under combined vertical,horizontal and moment loadings,the three-dimensional finite element analyses of a circular caisson foundation in homogenous sandy soil subjected to combined loadings are conducted.The caisson model has a depth to breadth ratio equaling one,and a soil-caisson interface friction coefficientμ=0.3.First,the responses of caisson foundations under uniaxial vertical loading V,horizontal loading H and moment loading M are examined.Moreover,the responses of caisson foundations under combined vertical-horizontal V-H,vertical-moment V-M and horizontal-moment H-M load space are studied and presented using normalized failure envelopes generated by the load-controlled method.Subsequently,the bearing behavior of caisson foundations under combined vertical-horizontal-moment V-H-M load space,as well as the kinematic mechanisms accompanying the failure under uniaxial and combined loading,are addressed and presented for different vertical load ratios V/Vu.Finally,three equations that approximate the three-dimensional shape of the failure locus are proposed,which provides a convenient means of calculating the bearing capacity of a caisson foundation subjected to uniaxial and combined vertical,horizontal and moment loadings. 展开更多
关键词 caisson foundation failure envelope finite element analysis bearing capacity sandy soil
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软土地层临近地铁基坑施工影响控制研究 被引量:1
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作者 李家平 雷丹 +2 位作者 杨石飞 袁钊 成顺博 《工程勘察》 2024年第4期7-12,共6页
随着城市地铁沿线地下空间的持续开发,基坑施工对临近地铁变形影响控制越来越受到关注。以上海某邻近地铁的基坑工程为例,通过实测分析和数值计算的方法研究了基坑开挖和拆撑对临近隧道变形的影响,并对伺服系统控制临近隧道变形进行定... 随着城市地铁沿线地下空间的持续开发,基坑施工对临近地铁变形影响控制越来越受到关注。以上海某邻近地铁的基坑工程为例,通过实测分析和数值计算的方法研究了基坑开挖和拆撑对临近隧道变形的影响,并对伺服系统控制临近隧道变形进行定量分析。结果表明:覆存于软土地层中的隧道对临近施工扰动非常敏感,尽管大区基坑与隧道间距超过2.5倍开挖深度,隧道变形仍超过了监护要求的控制值;大区地下结构施工时拆撑对隧道收敛变形影响超过开挖影响的50%;应力伺服支撑系统对控制临近隧道变形比较有效,适当的“负位移”可以对隧道变形产生有利效果。 展开更多
关键词 软土地层 基坑开挖 伺服系统 隧道变形
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上砂下黏地层中桩-筒复合基础V-H承载特性 被引量:1
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作者 邹新军 胡建峰 杨紫健 《防灾减灾工程学报》 CSCD 北大核心 2024年第2期415-425,共11页
海上风机基础不仅受自重等竖向力V作用,也因水流、波浪和风等影响而承受水平荷载H。为探讨上砂下黏地层中一种由单桩和吸力筒组成的新型海上风机桩-筒复合基础受V-H组合作用时的承载特性,自主设计完成了一系列室内桩-筒复合基础V-H组合... 海上风机基础不仅受自重等竖向力V作用,也因水流、波浪和风等影响而承受水平荷载H。为探讨上砂下黏地层中一种由单桩和吸力筒组成的新型海上风机桩-筒复合基础受V-H组合作用时的承载特性,自主设计完成了一系列室内桩-筒复合基础V-H组合加载模型试验,获得不同组合参数下桩-筒复合基础的荷载-位移曲线和桩身弯矩分布曲线,并绘制出V-H承载力包络线。在此基础上,采用ABAQUS建立了上砂下黏地层中桩-筒复合基础三维数值分析模型,经模型验证与参数分析,进一步讨论了砂土厚度、筒径、筒高以及加载高度等参数对桩-筒复合基础承载特性的影响曲线,并拟合出桩-筒复合基础承载力简化计算公式,分析结果表明:桩-筒复合基础能显著提高桩身水平承载力,增幅达30%~90%,且增加筒径比增加筒高更有利于提高基础水平承载力;上部砂土层较厚时,桩-筒复合基础存在一个使复合基础水平承载力达到最大的预加竖向荷载最佳值,其值随不同载荷工况在(0.4~0.7)Vult范围内变化。 展开更多
关键词 桩-筒复合基础 V-H组合作用 上砂下黏地层 承载力包络线
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上软下硬黏土中四筒基础抗倾覆承载特性研究
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作者 练继建 曹政 +1 位作者 杨旭 黎慧珊 《海洋工程》 CSCD 北大核心 2024年第1期1-10,共10页
随着海上风电向深远海发展,四筒基础发展潜力巨大。中国大多数海域存在较厚的上覆软土层,对基础抗倾覆承载能力有着重大影响。采用有限元软件ABAQUS建立上软下硬分层黏土模型,对四筒基础在单向水平荷载和弯矩荷载作用下的承载力特性进... 随着海上风电向深远海发展,四筒基础发展潜力巨大。中国大多数海域存在较厚的上覆软土层,对基础抗倾覆承载能力有着重大影响。采用有限元软件ABAQUS建立上软下硬分层黏土模型,对四筒基础在单向水平荷载和弯矩荷载作用下的承载力特性进行研究。研究结果表明:四筒基础在水平、弯矩荷载作用下主要运动模式为转动,对边加载时,转动轴靠近受压筒且随着软土层厚度增加不断靠近四筒基础平面中心,但变化幅度较小;水平和弯矩极限承载力对于不同的筒间距和长径比具有相同的变化趋势,当软土层厚度h/筒高L≤3/4时,水平和弯矩承载力随着软土层厚度的增加近似线性降低,当h/L>3/4后,承载力降低速率明显减小。 展开更多
关键词 海上风电 四筒基础 表层软土 旋转中心 承载能力
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寒区冻土桩基承载特性研究现状与展望
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作者 唐丽云 丁冰 +2 位作者 郑建国 许培智 邱培勇 《岩土工程技术》 2024年第3期253-262,共10页
冻土地区季节性的温度变化、大气升温以及人类工程活动加剧,常引起桩基冻胀融沉、倾斜、混凝土开裂等灾害,造成桩基的承载力降低,给寒区冻土桩基带来新的更大挑战。通过回顾国内外相关文献,对冻土桩基的承载性能目前的研究现状进行了总... 冻土地区季节性的温度变化、大气升温以及人类工程活动加剧,常引起桩基冻胀融沉、倾斜、混凝土开裂等灾害,造成桩基的承载力降低,给寒区冻土桩基带来新的更大挑战。通过回顾国内外相关文献,对冻土桩基的承载性能目前的研究现状进行了总结。从特殊的冻土性质出发,描述了冻土桩基体系主要的受力形式及其作用特征;从桩–冻土界面力学特性试验及荷载传递机制两个方面,阐述了冻土区桩–土界面力学特性变化机制;从试验研究、理论分析以及数值模拟三个方面,阐明了冻土桩基承载性能变化规律及分析、预测方法;归纳了冻土区桩–土体系温度、水分、应力应变等方面的监测技术。对寒区冻土桩基承载特性未来的研究提出了展望。 展开更多
关键词 冻土 桩基承载性能 桩–土界面 监测
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地基承载力特征值确定土变形模量的探讨
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作者 杨光华 彭祥 《建筑结构》 北大核心 2024年第8期120-128,共9页
目前我国地基沉降计算主要采用土压缩模量来计算,再用经验系数对计算结果进行修正。这种方法对于一些结构性较强的硬土地基误差较大,主要原因是取样扰动影响。为此,探讨了变形模量与地基承载力特征值的理论联系,在笔者提出的确定变形模... 目前我国地基沉降计算主要采用土压缩模量来计算,再用经验系数对计算结果进行修正。这种方法对于一些结构性较强的硬土地基误差较大,主要原因是取样扰动影响。为此,探讨了变形模量与地基承载力特征值的理论联系,在笔者提出的确定变形模量经验方法基础上,总结出依据地基承载力特征值确定变形模量的方法,该方法具有理论依据,可便捷地通过岩土工程勘察报告中常提供的地基承载力特征值确定土的变形模量,能够更为准确计算地基沉降值。采用不同方法(压板试验法、压缩模量推求法、标贯击数法、承载力经验法、依据地基承载力特征值确定变形模量法)计算了若干试验案例,通过对不同方法结果的对比,初步验证了依据地基承载力特征值确定变形模量法是可行的。 展开更多
关键词 土变形模量 地基承载力特征值 压板载荷试验 地基沉降计算
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基坑开挖对管桩竖向承载性状影响研究
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作者 杨庆光 肖森 +1 位作者 刘峰 柳雄 《湖南工业大学学报》 2025年第1期19-25,78,共8页
针对基坑开挖引起管桩挤土效应的弱化,以及挤土效应弱化对管桩承载性质影响问题,开展了室内模型试验,并通过对模型试验进行数值建模,验证了数值模型的可靠性。在此基础上,从桩长、桩间距、桩侧摩阻力系数对开挖卸荷影响下管桩基础承载... 针对基坑开挖引起管桩挤土效应的弱化,以及挤土效应弱化对管桩承载性质影响问题,开展了室内模型试验,并通过对模型试验进行数值建模,验证了数值模型的可靠性。在此基础上,从桩长、桩间距、桩侧摩阻力系数对开挖卸荷影响下管桩基础承载性状的影响展开研究。结果表明:开挖卸荷对管桩承载特性造成较大影响,极限承载力对应桩顶沉降量提高54.5%;数值计算发现,卸载前后极限荷载所对应最大沉降差率为9.52%,满足工程精度要求,验证了所提数值模型的可靠性;数值计算结果表明,随桩长提高,最大桩身轴力位置不断上升,而中性点位置却不断下降;桩间距越小,开挖卸荷对桩身轴力影响越大,而对负摩阻力影响越小;摩阻力系数为0.3时,摩阻力系数对桩身轴力及桩侧摩阻力发挥敏感度最高。 展开更多
关键词 承载性状 挤土效应 侧摩阻力 管桩 基坑开挖
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纤维对桥墩砂土地基的力学性能改善试验研究
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作者 李振成 《合成纤维》 CAS 2024年第11期88-91,共4页
研究了聚酯纤维、玄武岩纤维和甘蔗渣纤维对桥墩砂土地基的力学性能影响。通过对不同纤维质量分数(0.5%、1%和2%)以及不同纤维长度(2.5、5.0、7.5 mm)下砂土试样的加州承载比(CBR)和间接抗拉强度进行测试。结果表明:长度为7.5 mm的聚酯... 研究了聚酯纤维、玄武岩纤维和甘蔗渣纤维对桥墩砂土地基的力学性能影响。通过对不同纤维质量分数(0.5%、1%和2%)以及不同纤维长度(2.5、5.0、7.5 mm)下砂土试样的加州承载比(CBR)和间接抗拉强度进行测试。结果表明:长度为7.5 mm的聚酯纤维可获得最高的CBR值,其数值比未添加纤维的砂土试样增加了约3.3倍;三种纤维中,甘蔗渣纤维具有最佳的间接抗拉强度。该研究结果为遭遇不良地质条件的桥墩砂土地基改良和设计提供了有益的指导。 展开更多
关键词 桥墩地基 砂土 聚酯纤维 玄武岩纤维 甘蔗渣纤维 加州承载比 间接抗拉强度
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套筒强夯长短桩复合地基承载特性研究
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作者 于克深 王鑫 +2 位作者 徐昊 康逸飞 郭伟 《水利水电技术(中英文)》 北大核心 2024年第1期167-179,共13页
【目的】随着大型海洋工程项目不断发展,对水下软土地基处理提出了新的挑战,水下挤密砂桩和水下水泥搅拌桩复合地基等传统方法具有定位难、制桩难、桩体质量差等问题,始终制约着其在海洋工程中的应用和发展。【方法】借鉴陆上孔内深层... 【目的】随着大型海洋工程项目不断发展,对水下软土地基处理提出了新的挑战,水下挤密砂桩和水下水泥搅拌桩复合地基等传统方法具有定位难、制桩难、桩体质量差等问题,始终制约着其在海洋工程中的应用和发展。【方法】借鉴陆上孔内深层强夯施工方法,因地制宜地提出水下套筒强夯复合地基成桩技术,该技术使用套筒阻隔海水进入桩孔,具有定位准、加固深和强度高等优点,通过模型试验的方法对该技术进行研究。【结果】结果表明,在强夯碎石桩与传统碎石桩相结合的工况下,地基极限承载力提高50%以上,等长度群桩复合地基极限承载力比长短桩复合地基提升18%;在全部采用强夯碎石桩的工况下,地基极限承载力提高170%以上,等长度群桩复合地基极限承载力比长短桩复合地基提升3.7%。【结论】全部采用强夯碎石桩的复合地基比强夯碎石桩与传统碎石桩组合而成的复合地基承载力提高更多,在提高承载力方面,采用套筒强夯长短桩复合地基更加经济有效。 展开更多
关键词 套筒强夯法 软土地基处理 长短桩 复合地基 承载特性 变形 力学性能
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上硬下软层状土中锚板抗拔承载特性研究
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作者 舒健 毋晓妮 +2 位作者 唐超 陈锦剑 李濡宇 《海洋工程》 CSCD 北大核心 2024年第5期54-67,共14页
锚板基础是一类在海工系泊系统中广泛应用的锚固基础,其特点是具有较高的承载力和稳定性。锚板的承载能力是基础设计的重要参考因素,而承载能力与土体的性质密切相关。现有关于锚板承载力的研究多集中在单一均质土层中,而对层状土尤其... 锚板基础是一类在海工系泊系统中广泛应用的锚固基础,其特点是具有较高的承载力和稳定性。锚板的承载能力是基础设计的重要参考因素,而承载能力与土体的性质密切相关。现有关于锚板承载力的研究多集中在单一均质土层中,而对层状土尤其是上硬下软这类层状土体中的承载特性认识不足。基于数值分析,综合考虑层状土的分层性质,对锚板基础在硬黏-软黏层状土体及砂土-软黏土复合土体中的承载特性展开研究,分析锚板埋深、土层抗剪强度比、层厚比及土体性质等关键因素对锚板周围土体破坏模式和承载力的影响。结果表明:在硬黏-软黏土体中,随着抗剪强度比、层厚比的增加,极限承载力均显著增加;在砂土-软黏土体中,极限承载力同样随着层厚比的增加而增加,当下层软黏土中的锚板破坏进入局部破坏后,层厚比对承载力的影响逐渐减弱。研究可以为上硬下软层状土中锚板基础的承载力确定提供计算方法和理论参考。 展开更多
关键词 锚板基础 抗拔承载力 层状土 埋深比 抗剪强度比 层厚比
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上覆CRSS快速固化淤泥硬壳层厚度对淤泥地基承载特性的影响
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作者 王明明 方祥位 +3 位作者 刘汉龙 王忍 申春妮 张熙晨 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第2期70-78,共9页
复合型早强土壤固化剂(CRSS)具有快凝高强特性,利用自主研发的CRSS固化剂对表层淤泥快速固化并作为上覆硬壳层,通过模型试验研究不同上覆硬壳层厚度(3、6、9、12 cm)条件下硬壳层破坏形式、p-s曲线特性、弯沉盆形状以及土压力分布规律,... 复合型早强土壤固化剂(CRSS)具有快凝高强特性,利用自主研发的CRSS固化剂对表层淤泥快速固化并作为上覆硬壳层,通过模型试验研究不同上覆硬壳层厚度(3、6、9、12 cm)条件下硬壳层破坏形式、p-s曲线特性、弯沉盆形状以及土压力分布规律,在现有弯沉盆变形理论基础上,结合试验结果,对弯沉盆变形形状函数进行修正。研究结果表明:随硬壳层厚度增大,硬壳层破坏形式由对折破坏过渡到冲切破坏;硬壳层厚度越大,扩散作用越明显,极限承载力越高,沉降相应增大;与荷载板中心点不同距离的沉降位移可用弯沉盆形状描述,提出了修正的对数弯沉盆假设变形计算公式,比线性弯沉盆假设变形计算公式更合理;土压力从中心向外呈下降趋势,沿深度方向逐渐减小;随硬壳层厚度增大,土压力分布更均匀。 展开更多
关键词 淤泥地基 复合型早强土壤固化剂 快速固化 硬壳层 承载力 弯沉盆
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