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Seismic response of existing stone masonry structures on soft soil foundations
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作者 Xin Zhao Haojiang Shang Yingxiong Wu 《Earthquake Research Advances》 2025年第3期88-99,共12页
The coastal region of Fujian contains numerous existing stone masonry structures,many of which are constructed on soft soil sites.Previous studies have shown that the soil-structure interaction(SSI)effect on soft soil... The coastal region of Fujian contains numerous existing stone masonry structures,many of which are constructed on soft soil sites.Previous studies have shown that the soil-structure interaction(SSI)effect on soft soil foundations can prolong the structure's natural vibration period and enhance its seismic response.We develops a soilstructure interaction system model and a comparative rigid foundation model using the finite element software LS-DYNA to investigate the impact of SSI on the dynamic characteristics and seismic response of stone structures.The results indicate that the SSI effect alters stone structures'dynamic properties and seismic response.This alteration is evident in the extended natural vibration period,which reduces overall stiffness,increases interstory displacement angles,and slightly decreases the acceleration response.Under both SSI and FIX systems,the structural failure mode is characterized by the external collapse of the second-story stone walls,which causes the roof stone slabs to lose support and fall,leading to overall collapse.The FIX system demonstrates better structural integrity and stability with slower crack development.In contrast,the SSI system exhibits cracks that appear earlier and develop more rapidly,causing more severe damage.The research findings provide a theoretical basis for the seismic reinforcement of existing stone structures on soft soil foundations. 展开更多
关键词 Stone structure Soft soil foundation Soil-structure interaction Seismic response LS-DYNA
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Design of foundation structures of sea-crossing bridges on serviceability limit state
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作者 金伟良 胡琦忠 +2 位作者 帅长斌 于群力 鲁征 《Journal of Southeast University(English Edition)》 EI CAS 2008年第1期74-79,共6页
The target reliability indices of the foundation structures of sea-crossing bridges on the serviceability limit state (SLS) are different from those of common bridges due to their different surroundings. Consequentl... The target reliability indices of the foundation structures of sea-crossing bridges on the serviceability limit state (SLS) are different from those of common bridges due to their different surroundings. Consequently, three levels of the target reliability indices, which are 1.5, 2. 0 and 2. 3, respectively, for those structures on the SLS are suggested based on the Joint Committee on Structural Safety (JCSS) model code, and a new method of calibrating factors of live loads, which is based on the contribution ratio of tensile stresses of reinforcing bars produced by various loads to the maximum crack width of concrete, is proposed. Finally, the calibration of the reliability-based factors of the frequent value and the quasi-permanent value of live loads is conducted by the Joint Committee (JC) method through an actual design, and the indices are proved to be reasonable and the new method is proved to be feasible. 展开更多
关键词 sea-crossing bridges target reliability JC (Joint Committee) method frequent value quasi-permanent value foundation structures
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Study of vibrating foundations considering soil-pile-structure interaction for practical applications 被引量:5
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作者 Han Yingcai 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第3期321-327,共7页
An investigation of soil-pile-structure interaction is carried out, based on a large reciprocating compressor installed on an elevated concrete foundation (table top structure). A practical method is described for t... An investigation of soil-pile-structure interaction is carried out, based on a large reciprocating compressor installed on an elevated concrete foundation (table top structure). A practical method is described for the dynamic analysis, and compared with a 3D finite element (FE) model. Two commercial software packages are used for dynamic analysis considering the soilpile-structure interaction (SPSI). Stiffness and damping of the pile foundation are generated from a computer program, and then input into the FE model. To examine the SPSI thoroughly, three cases for the soil, piles and superstructure are considered and compared. In the first case, the interaction is fully taken into account, that is, both the superstructure and soil-pile system are flexible. In the second case, the superstructure is flexible but fixed to a rigid base, with no deformation in the base (no SSI). In the third case, the dynamic soil-pile interaction is taken into account, but the table top structure is assumed to be rigid. From the comparison beteen the results of these three cases some conclusions are made, which could be helpful for engineering practice. 展开更多
关键词 soil-pile-structure interaction soil dynamics structural dynamics vibrating foundation
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Sensor monitoring of a newly designed foundation pit supporting structure 被引量:3
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作者 杨宇友 吕建国 +1 位作者 黄学刚 涂晓明 《Journal of Central South University》 SCIE EI CAS 2013年第4期1064-1070,共7页
A new type of pit supporting structure, which was tested and verified using the sensor monitoring technology, was presented. The new supporting structure is assembled by prefabricated steel structural units. The adjac... A new type of pit supporting structure, which was tested and verified using the sensor monitoring technology, was presented. The new supporting structure is assembled by prefabricated steel structural units. The adjacent steel structural units are jointed with fasteners, and each steel structural unit has a certain radian and is welded by two steel tubes and one piece of steel disc. In order to test and verify the reliability of the new supporting structure, the field tests are designed. The main monitoring programs include the hoop stress of supporting structure, lateral earth pressure, and soil deformation. The monitoring data of the field tests show that the new supporting structure is convenient, reliable and safe. 展开更多
关键词 foundation pit supporting structure sensor monitoring earth pressure horizontal displacement
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Seabed structures and foundations related to deep-sea resource development:A review based on design and research 被引量:2
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作者 Shengjie Rui Haojie Zhang +3 位作者 Hang Xu Xing Zha Mengtao Xu Kanmin Shen 《Deep Underground Science and Engineering》 2024年第2期131-148,共18页
The deep‐sea ground contains a huge amount of energy and mineral resources,for example,oil,gas,and minerals.Various infrastructures such as floating structures,seabed structures,and foundations have been developed to... The deep‐sea ground contains a huge amount of energy and mineral resources,for example,oil,gas,and minerals.Various infrastructures such as floating structures,seabed structures,and foundations have been developed to exploit these resources.The seabed structures and foundations can be mainly classified into three types:subsea production structures,offshore pipelines,and anchors.This study reviewed the development,installation,and operation of these infrastructures,including their structures,design,installation,marine environment loads,and applications.On this basis,the research gaps and further research directions were explored through this literature review.First,different floating structures were briefly analyzed and reviewed to introduce the design requirements of the seabed structures and foundations.Second,the subsea production structures,including subsea manifolds and their foundations,were reviewed and discussed.Third,the basic characteristics and design methods of deep‐sea pipelines,including subsea pipelines and risers,were analyzed and reviewed.Finally,the installation and bearing capacity of deep‐sea subsea anchors and seabed trench influence on the anchor were reviewed.Through the review,it was found that marine environment conditions are the key inputs for any offshore structure design.The fabrication,installation,and operation of infrastructures should carefully consider the marine loads and geological conditions.Different structures have their own mechanical problems.The fatigue and stability of pipelines mainly depend on the soil‐structure interaction.Anchor selection should consider soil types and possible trench formation.These focuses and research gaps can provide a helpful guide on further research,installation,and operation of deep‐sea structures and foundations. 展开更多
关键词 ANCHORS floating structures pipelines RISERS subsea foundations
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Experimental investigation of turbulent flows around high-rise structure foundations and implications on scour 被引量:2
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作者 Dong-fang Liang Hao Jia +1 位作者 Yang Xiao Sai-yu Yuan 《Water Science and Engineering》 EI CAS CSCD 2022年第1期47-56,共10页
Many studies have been undertaken to predict local scour around offshore high-rise structure foundations(HRSFs),which have been used in constructing the Donghai Wind Farm in China.However,there have been few works on ... Many studies have been undertaken to predict local scour around offshore high-rise structure foundations(HRSFs),which have been used in constructing the Donghai Wind Farm in China.However,there have been few works on the turbulent flow that drives the scour process.In this study,the characteristics of the turbulent flow fields around an HRSF were investigated using the particle image velocimetry technique.The mean flow,vorticity,and turbulence intensity were analyzed in detail.The relationship between the flow feature and scour development around an HRSF was elaborated.The results showed that the flow velocity increased to its maximum value near the third row of the pile group.The shear layer and wake vortices could not be fully developed downstream of the last row of the piles at small Reynolds numbers.The strong flow and turbulent fluctuation near the third piles explained the existence of a longtail scour pattern starting from the HRSF shoulders and a trapezoidal deposition region directly downstream of HRSF.This laboratory experiment gains insight into the mechanism of the turbulent flow around HRSFs and provides a rare dataset for numerical model verifications. 展开更多
关键词 High-rise structure foundations(HRSFs) Turbulent flow fields Particle image velocimetry(PIV) SCOUR Sediment transport
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Simplified approach for design of raft foundations against fault rupture.Part II:soil-structure interaction 被引量:5
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作者 I. Anastasopoulos N. Gerolymos +1 位作者 G. Gazetas M. F. Bransby 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2008年第2期165-179,共15页
This is the second paper of two, which describe the results of an integrated research effort to develop a four-step simplified approach for design of raft foundations against dip-slip (normal and thrust) fault ruptu... This is the second paper of two, which describe the results of an integrated research effort to develop a four-step simplified approach for design of raft foundations against dip-slip (normal and thrust) fault rupture. The first two steps dealing with fault rupture propagation in the free-field were presented in the companion paper. This paper develops an approximate analytical method to analyze soil-foundation-structure interaction (SFSI), involving two additional phenomena: (i) fault rupture diversion (Step 3); and (ii) modification of the vertical displacement profile (Step 4). For the first phenomenon (Step 3), an approximate energy-based approach is developed to estimate the diversion of a fault rupture due to presence of a raft foundation. The normalized critical load for complete diversion is shown to be a function of soil strength, coefficient of earth pressure at rest, bedrock depth, and the horizontal position of the foundation relative to the outcropping fault rupture. For the second phenomenon (Step 4), a heuristic approach is proposed, which "scans" through possible equilibrium positions to detect the one that best satisfies force and moment equilibrium. Thus, we account for the strong geometric nonlinearities that govern this interaction, such as uplifting and second order (P-△) effects. Comparisons with centrifuge-validated finite element analyses demonstrate the efficacy of the method. Its simplicity makes possible its utilization for preliminary design. 展开更多
关键词 fault rupture analytical method raft foundation soil-structure interaction EARTHQUAKE
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Finite element response sensitivity analysis of three-dimensional soil-foundation-structure interaction (SFSI) systems 被引量:8
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作者 Gu Quan Liu Yongdou +1 位作者 Li Yong Lin Chun 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期555-566,共12页
The nonlinear finite element(FE) analysis has been widely used in the design and analysis of structural or geotechnical systems.The response sensitivities(or gradients) to the model parameters are of significant i... The nonlinear finite element(FE) analysis has been widely used in the design and analysis of structural or geotechnical systems.The response sensitivities(or gradients) to the model parameters are of significant importance in these realistic engineering problems.However the sensitivity calculation has lagged behind,leaving a gap between advanced FE response analysis and other research hotspots using the response gradient.The response sensitivity analysis is crucial for any gradient-based algorithms,such as reliability analysis,system identification and structural optimization.Among various sensitivity analysis methods,the direct differential method(DDM) has advantages of computing efficiency and accuracy,providing an ideal tool for the response gradient calculation.This paper extended the DDM framework to realistic complicated soil-foundation-structure interaction(SFSI) models by developing the response gradients for various constraints,element and materials involved.The enhanced framework is applied to three-dimensional SFSI system prototypes for a pilesupported bridge pier and a pile-supported reinforced concrete building frame structure,subjected to earthquake loading conditions.The DDM results are verified by forward finite difference method(FFD).The relative importance(RI) of the various material parameters on the responses of SFSI system are investigated based on the DDM response sensitivity results.The FFD converges asymptotically toward the DDM results,demonstrating the advantages of DDM(e.g.,accurate,efficient,insensitive to numerical noise).Furthermore,the RI and effects of the model parameters of structure,foundation and soil materials on the responses of SFSI systems are investigated by taking advantage of the sensitivity analysis results.The extension of DDM to SFSI systems greatly broaden the application areas of the d gradient-based algorithms,e.g.FE model updating and nonlinear system identification of complicated SFSI systems. 展开更多
关键词 finite element method response sensitivity analysis direct differentiation method finite difference method soil-foundation-structure interaction
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Analysis of Dynamic Stability of Ocean Gravity Structure Foundations
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作者 He Guangna and Cao Yalin Professor, Dalian University of Technology, Dalian 116024 . Former Postgruate Student, Dalian University of Technology, Dalian 116024 《China Ocean Engineering》 SCIE EI 1995年第2期183-192,共10页
Based on unified equivalent harmonic loading on seabed foundation and energy approach suggested by the authors, the development of dynamic pore water pressure and stability of soil foundation for the vibration of ocea... Based on unified equivalent harmonic loading on seabed foundation and energy approach suggested by the authors, the development of dynamic pore water pressure and stability of soil foundation for the vibration of ocean gravity structures excited by random wave loading are analysed. It may be seen that the present method for the study of dynamic problems of ocean gravity structure soil foundations is more reasonable and convenient. 展开更多
关键词 ocean gravity structure foundation dynamic pore water pressure dynamic stability unified equi- valent harmonic loading energy approach
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Out-of-plane (SH) soil-structure interaction: a shear wall with rigid and flexible ring foundation 被引量:1
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作者 Thang Le Vincent W. Lee Hao Luo 《Earthquake Science》 CSCD 2016年第1期45-55,共11页
Soil-structure interaction (SSI) of a building and shear wall above a foundation in an elastic half-space has long been an important research subject for earthquake engineers and strong-motion seismologists. Numerou... Soil-structure interaction (SSI) of a building and shear wall above a foundation in an elastic half-space has long been an important research subject for earthquake engineers and strong-motion seismologists. Numerous papers have been published since the early 1970s; however, very few of these papers have analytic closed-form solu- tions available. The soil-structure interaction problem is one of the most classic problems connecting the two dis- ciplines of earthquake engineering and civil engineering. The interaction effect represents the mechanism of energy transfer and dissipation among the elements of the dynamic system, namely the soil subgrade, foundation, and super- structure. This interaction effect is important across many structure, foundation, and subgrade types but is most pro- nounced when a rigid superstructure is founded on a rela- tively soft lower foundation and subgrade. This effect may only be ignored when the subgrade is much harder than a flexible superstructure: for instance a flexible moment frame superstructure founded on a thin compacted soil layer on top of very stiff bedrock below. This paper will study the interaction effect of the subgrade and the super- structure. The analytical solution of the interaction of a shear wall, flexible-rigid foundation, and an elastic half- space is derived for incident SH waves with various angles of incidence. It found that the flexible ring (soft layer) cannot be used as an isolation mechanism to decouple asuperstructure from its substructure resting on a shaking half-space. 展开更多
关键词 Out-of-plane SH waves Closed-formanalytic solution Rigid-flexible foundation Fourier-bessel series Soil-structure interaction
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Civil Engineering Structure Design and Foundation Reinforcement Technology
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作者 LIN Songbo 《外文科技期刊数据库(文摘版)工程技术》 2021年第7期056-059,共6页
In the construction project, design and construction is a very important link, the main reason is that design affects construction, construction affects the quality of construction. However, the content of structural ... In the construction project, design and construction is a very important link, the main reason is that design affects construction, construction affects the quality of construction. However, the content of structural design and construction management in construction engineering is relatively complex, which should be considered comprehensively and implemented actively. Only by reasonably controlling the structural design and construction site, can the construction be carried out smoothly. 展开更多
关键词 civil engineering structural design foundation reinforcement TECHNOLOGY
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Research on Pile Foundation Design in Building Structure Design
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作者 ZHANG Na 《外文科技期刊数据库(文摘版)工程技术》 2021年第11期1006-1009,共6页
At present, the construction industry is developing faster and faster, and people pay more and more attention to the safety of construction engineering. At present, the foundation of high-rise buildings often adopts t... At present, the construction industry is developing faster and faster, and people pay more and more attention to the safety of construction engineering. At present, the foundation of high-rise buildings often adopts the form of pile foundation. Because its construction period is controllable, the construction technology is relatively mature. In the design process, the reasonable selection of pile foundation has a great impact on the whole project cost and construction period. At present, including real estate development companies and design institutes, they attach great importance to the rationality of pile foundation design. Based on this, the selection of suitable pile foundation type in building structure design plays a vital role in the construction of the whole project. 展开更多
关键词 ARCHITECTURE structural design pile foundation design
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Analysis of Foundation Design in Building Structure Design
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作者 YU Di 《外文科技期刊数据库(文摘版)工程技术》 2021年第1期562-566,共5页
The structural design of housing architecture is the core part of housing architecture design, and the overall design effect is directly related to the safety and stability of the building, as well as the life and pro... The structural design of housing architecture is the core part of housing architecture design, and the overall design effect is directly related to the safety and stability of the building, as well as the life and property safety of users. With the rapid development of China's economy, users have a higher demand for the structural design of housing construction. The basic structural design is also a key part of the building architecture design. Therefore, we need to pay more attention to the building architecture design to ensure the rationality and scientificity of the overall design, so as to comprehensively improve the overall level of building architecture design. 展开更多
关键词 housing construction structural design foundation design
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TIME DOMAIN PARAMETERS IDENTIFICATION OF FOUNDATION-STRUCTURE INTERACTION SYSTEM
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作者 黄义 刘增荣 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2005年第7期855-864,共10页
The time domain parameter laenuncauon memoa oi me iounuauon-structure interaction system is presented. On the basis of building the computation mode and the motion equation of the foundation-structure interaction syst... The time domain parameter laenuncauon memoa oi me iounuauon-structure interaction system is presented. On the basis of building the computation mode and the motion equation of the foundation-structure interaction system, the system parameter identification method was established by using the extended Kalman filter (EKF) technique and taking the unknown parameters in the system as the augment state variables. And the time parameter identification process of the foundation-structure interaction system was implemented by using the data of the layer foundation-storehouse interaction system model test on the large vibration platform. The computation result shows that the established parameter identification method can induce good parameter estimation. 展开更多
关键词 foundation-structure interaction system time domain parameter identification
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Simulation and Optimization of Double Row Piles Supporting Structure for Deep Foundation Pit
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作者 SHEN Xiaoyan 《外文科技期刊数据库(文摘版)工程技术》 2021年第7期108-110,共5页
In Chinese modernization and social development level enhances unceasingly, and under the background of deepening the process of urbanization, urban development level in China has been an unprecedented increase, espec... In Chinese modernization and social development level enhances unceasingly, and under the background of deepening the process of urbanization, urban development level in China has been an unprecedented increase, especially with the constant development of information technology, make our country construction technology has been constantly strengthened, all kinds of tunnel construction, underground construction, high-rise buildings appear constantly, higher and more strict requirements are put forward for deep foundation pit engineering in terms of quantity and construction quality. In this paper, a detailed analysis is carried out on the simulation and optimization of the double-row pile supporting structure of deep foundation pit, which lays a solid foundation for the further improvement of the modern construction technology level in China. 展开更多
关键词 deep foundation pit double row pile support structure SIMULATION optimization approach
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Exploration of Pile Foundation Design in Building Structure Design
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作者 MEI Wen 《外文科技期刊数据库(文摘版)工程技术》 2021年第12期1225-1229,共8页
At present, the construction industry is developing faster and faster, and people pay more and more attention to the safety of construction projects. At present, the foundation of high-rise buildings often adopts the ... At present, the construction industry is developing faster and faster, and people pay more and more attention to the safety of construction projects. At present, the foundation of high-rise buildings often adopts the form of pile foundation, because its construction period is controllable and the construction technology is relatively mature. In the design process, the reasonable selection of pile foundation has a great impact on the whole project cost and construction period. At present, including real estate development companies and design institutes, they attach great importance to the rationality of pile foundation design. Based on this, the selection of suitable pile foundation type in building structure design plays a vital role in the construction of the whole project. 展开更多
关键词 building structure design pile foundation design EXPLORE
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INFINITE SPLINE BOUNDARY ELEMENT METHOD AND ITS APPLICATION TO STRUCTURE-FOUNDATION INTERACTION
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作者 王有成 王章虎 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 1993年第1期53-61,共9页
In view of the infinity behaviors of 3-D Kelvin solution, we constructed an infinite spline boundary element which has fine precision in the analysis of the half space foundation subjected to uniform pressure on the c... In view of the infinity behaviors of 3-D Kelvin solution, we constructed an infinite spline boundary element which has fine precision in the analysis of the half space foundation subjected to uniform pressure on the circular domain. We also analysed a square plate resting on elastic half space foundation. The results indicate that this model not only fits for the coupled analysis of foundation and structures but also has the advantage of fewer degrees of freedom and fine precision. 展开更多
关键词 infinite spline boundary element structure-foundation interaction
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The Application of Pile Foundation Bearing-Retaining Wall Combination Structure in a Mountainous Urban High Fill Project
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作者 Hongmei Wang Xiaoguang Mao Qi Su 《Journal of World Architecture》 2022年第4期15-21,共7页
Pile foundation bearing-retaining wall combination structure is a new type of support structure developed in recent years.This article focuses on the characteristics,advantages,and application scope of the support str... Pile foundation bearing-retaining wall combination structure is a new type of support structure developed in recent years.This article focuses on the characteristics,advantages,and application scope of the support structure,while combining a variety of algorithms,according to different geological conditions and slope stability,as well as summarizes the pile foundation bearing-retaining wall combination structure force analysis and design methods,taking a high-fill road project in Chongqing as an example.The application of this support structure under special conditions,such as thicker soil layer,steeper sliding surface,weak foundation,and limited slope release conditions,is presented,which illustrates the technical advantages of this support structure and proving that it has several other advantages,including clear force mechanism as well as economic and reasonable structure,thus providing reference for similar projects. 展开更多
关键词 Pile foundation bearing-retaining wall Combined support structure Design calculation method
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Influence of the Soil-Structure Interaction in the Behavior of Mat Foundation
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作者 Oustasse Abdoulaye Sall Meissa Fall +2 位作者 Yves Berthaud Makhaly Ba Mapathé Ndiaye 《Open Journal of Civil Engineering》 2014年第1期71-83,共13页
This article focuses on the study of the behavior of a soil mass under a plate subjected to a uniformly distributed load. The aim of this paper is to highlight the soil-structure interaction with a linear variation of... This article focuses on the study of the behavior of a soil mass under a plate subjected to a uniformly distributed load. The aim of this paper is to highlight the soil-structure interaction with a linear variation of the mechanical properties of the soil with the depth. The theory of plates and the soil-structure interaction has allowed reaching the general equation of the problem which depends on both the mechanical properties of the concrete and the subgrade. This study shows that the linearity of the elastic modulus of subgrade leads to larger displacements when this modulus is assumed to be constant in the soil mass. It also shows that the Poisson’s ratio of soil and mechanical properties of the concrete have an insignificant influence on the displacements. This analysis also shows that the points in the upper half-thickness of soil are the most sensitive to the parameters of the model. 展开更多
关键词 MAT foundation PLATE THEORY Soil-structure INTERACTION Mechanical PROPERTIES
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Structural Strength Analysis of a Tri-Floater Floating Foundation for Offshore VAWT 被引量:1
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作者 LIU Liqin ZHAO Haixiang +2 位作者 XU Wanhai YUAN Rui GUO Ying 《Journal of Ocean University of China》 SCIE CAS CSCD 2018年第4期753-762,共10页
Vertical axis wind turbines(VAWTs) are advantageous for the development of large-scale offshore wind power because the drive system is located at the bottom of the turbine. This study investigates the structural stren... Vertical axis wind turbines(VAWTs) are advantageous for the development of large-scale offshore wind power because the drive system is located at the bottom of the turbine. This study investigates the structural strength of a tri-floater floating foundation supporting a 2.6 MW Darrieus VAWT. Finite element models of the floating foundation were developed using space plate-beam elements. The environmental loads, such as the aerodynamic loads, static wind loads, and wave-current loads, were considered. The general strengths of the floating foundation were calculated for the normal operating case(a cut-out wind speed of 25 m s^(-1) and blade rotation of 12 r min^(-1) were used to analyze the most unfavorable loads) and an extreme case(wind speed of 40 m s^(-1) and parked blades), and the weak components of the structure were analyzed. The results show that the floating foundation meets the strength requirements and the structural stress is highest when the wave, wind, and current are in a collinear direction. The main and secondary supporting bars transmit the loads between the stand columns and the tower foundation, and their stresses are higher than those in the other components. In the actual design, these supporting bars should be strengthened. The aerodynamic loads are very important and should be considered in the structural strength analysis of the floating foundation and the floating wind turbine system. 展开更多
关键词 vertical axis wind TURBINE tri-floater FLOATING foundation strength analysis finite element method structural stress
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