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Influence of Soil-Structure Interaction Models on the Dynamic Responses of An Offshore Wind Turbine Under Environmental Loads
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作者 TANG Hong-ming YUE Min-nan +3 位作者 YAN Yang-tian LI Zhi-hao LI Chun NIU Kai-lun 《China Ocean Engineering》 SCIE EI CSCD 2023年第2期218-231,共14页
Offshore wind turbines(OWTs) suffer wind, wave and earthquake loads. The investigation of OWTs' dynamic response under environmental loads is essential for structural safety assessment. The soil-structure interact... Offshore wind turbines(OWTs) suffer wind, wave and earthquake loads. The investigation of OWTs' dynamic response under environmental loads is essential for structural safety assessment. The soil-structure interaction(SSI)significantly affects the responses of OWT under environmental loads. However, there is few systematic research about the difference in the dynamic response of different SSI models under environmental loads. In order to solve the problem, the OWT is modeled by shell element, and several SSI models are built. The wind, wave and earthquake loads are taken into account. Moreover, the dynamic response, fatigue and buckling analysis are performed by ANSYS. The results indicate that SSI cannot be ignored in the dynamic response of the OWT under wind and wave loads. The SSI can decrease the displacement response of the OWT by 19% under wind and wave loads and reduce the fatigue damage of the pile. Multi-layer SSI can strongly influence the OWT's dynamic response under wind and wave loads or earthquake-only load. The vertical earthquake load increases the dynamic response in three directions.Besides, in order to simulate real environment, multi-layer SSI, soil damping and vertical SSI must be considered to evaluate the displacement response of the OWT under wind, wave and earthquake loads. The earthquake and gravity loads can cause more obvious response of the OWT than that of only wind and wave loads. The top and bottom of the tower are prone to occur buckling. 展开更多
关键词 OWT soil structure interaction EARTHQUAKE dynamic analysis structural damage
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Seismic wave input method for three-dimensional soil-structure dynamic interaction analysis based on the substructure of artificial boundaries 被引量:16
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作者 Liu Jingbo Tan Hui +2 位作者 Bao Xin Wang Dongyang Li Shutao 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2019年第4期747-758,共12页
The method of inputting the seismic wave determines the accuracy of the simulation of soil-structure dynamic interaction. The wave method is a commonly used approach for seismic wave input, which converts the incident... The method of inputting the seismic wave determines the accuracy of the simulation of soil-structure dynamic interaction. The wave method is a commonly used approach for seismic wave input, which converts the incident wave into equivalent loads on the cutoff boundaries. The wave method has high precision, but the implementation is complicated, especially for three-dimensional models. By deducing another form of equivalent input seismic loads in the fi nite element model, a new seismic wave input method is proposed. In the new method, by imposing the displacements of the free wave fi eld on the nodes of the substructure composed of elements that contain artifi cial boundaries, the equivalent input seismic loads are obtained through dynamic analysis of the substructure. Subsequently, the equivalent input seismic loads are imposed on the artifi cial boundary nodes to complete the seismic wave input and perform seismic analysis of the soil-structure dynamic interaction model. Compared with the wave method, the new method is simplifi ed by avoiding the complex processes of calculating the equivalent input seismic loads. The validity of the new method is verifi ed by the dynamic analysis numerical examples of the homogeneous and layered half space under vertical and oblique incident seismic waves. 展开更多
关键词 soil-structure dynamic interaction SEISMIC WAVE INPUT WAVE method EQUIVALENT INPUT SEISMIC loads SUBstructure of artifi cial boundaries
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Evaluation of Dynamic Soil-Structure Interaction and Dynamic Seismic Soil Pressures Acting on It Subjected to Strong Earthquake Motions 被引量:1
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作者 车爱兰 IWATATE Takahiro 葛修润 《Journal of Shanghai Jiaotong university(Science)》 EI 2006年第4期530-536,共7页
In order to clarify the damage mechanism of the subway structure, the dynamic soil-structure interaction and the dynamic forces acting on the structure, a series of shaking table tests and simulation analyses were per... In order to clarify the damage mechanism of the subway structure, the dynamic soil-structure interaction and the dynamic forces acting on the structure, a series of shaking table tests and simulation analyses were performed. The seismic response of the structure and the dynamic forces acting on the structure due to sinusoidal and random waves were investigated with special attention to the dynamic soil-structure interaction. The result shows that the compression seismic soil pressures and extension seismic soil pressures simultaneously act on the sidewalls, and big shear stress also acts on the ceiling slab due to horizontal excitation. The seismic soil pressure could be approximated to hyperbola curve, and reached a peak value with increase of the shear strain of the model ground. In addition, a slide and exfoliation phenomenon between the structure and the surrounding ground was simulated, using the nonlinear analyses. The foundation is provided for amending the calculation method of seismic soil pressure and improving the anti-earthquake designing level of underground structure. 展开更多
关键词 SUBWAY structure dynamic SEISMIC soil pressure dynamic soil-structure interaction SHAKING TABLE tests dynamic analyses nonlinear characteristics
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An overview of structure-soil-structure dynamic interaction research
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作者 王淮峰 《Journal of Chongqing University》 CAS 2011年第3期101-112,共12页
The concept of structure-soil-structure dynamic interaction was introduced and the research methods were summarized.Based on lots of documents,a systematic summary of the history and current situation of structure-soi... The concept of structure-soil-structure dynamic interaction was introduced and the research methods were summarized.Based on lots of documents,a systematic summary of the history and current situation of structure-soil-structure dynamic interaction research considering adjacent structures was proposed as reference for researchers.The existing matter and the prospect of future research trend in this field was also examined. 展开更多
关键词 soil-structure interaction (SSI) structure-soil-structure interaction (SSSI) dynamic cross interaction (DCI) foundation-soil-foundation interaction (FSFI) adjacent structure
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Dynamic Analysis of Soil Structure Interaction Effect on Multi Story RC Frame
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作者 Hailu Getachew Kabtamu Gang Peng Denghong Chen 《Open Journal of Civil Engineering》 2018年第4期426-446,共21页
In this study dynamic analysis of Soil Structure Interaction (SSI) effect on multi story reinforced concrete (RC) frame founded on soft soil (flexible base) is made and compared with fixed base. Two model 2D RC frames... In this study dynamic analysis of Soil Structure Interaction (SSI) effect on multi story reinforced concrete (RC) frame founded on soft soil (flexible base) is made and compared with fixed base. Two model 2D RC frames with 7 and 12 story are selected for analysis. Winkler Spring and half space direct method models are used for flexible base for the frames founded on two types of soft soils with shear velocity Vs < 150 m/s Asper Seismic Codes of Chinese GB50011-2010 Soil IV and Ethiopian ES8-2015 soil D. The frames are subjected to strong ground motion matched to response spectrums of soft soil of Chinese GB50011-2010 and Ethiopian ES8-2015 for linear time history analysis. The dynamic analysis result shows Spring and Fixed base mass participation 90% reaches in 2 or 3 modes but in direct method 11 to 30 modes for story 12 and 7 respectively. However, both flexible base models have bigger fundamental period of vibration and inter story drift but smaller base shear than fixed base. In addition, within the flexible base models the inter-story drift, second order effect (P-Δ) and Story shear distribution are different along the height of frames. The spring model shows larger Story drift and second order effect (P-Δ) at the bottom of Story for both soft soils types. On the other hand, half space direct method model indicates value reverse to spring model;it gives bigger Story drift and P-Δ effect in the top stories than fixed base. Finally, this study concludes that base shear reduction due to SSI may not be always beneficial. Because the gravity load is constant in both fixed and flexible bases that cause bigger P-Δ effect at the bottom stories due to increase, inter story drift and decrease story shear in flexible base. 展开更多
关键词 soil structure interaction dynamic Analysis Fixed BASE Flexible BASE Direct Method WINKLER Spring PERIOD of Vibration STORY SHEAR STORY DRIFT and P-Δ Effect
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Dynamic Response of A Group of Cylindrical Storage Tanks with Baffles Considering the Effect of Soil Foundation
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作者 SUN Ying WANG Jia-dong +3 位作者 HUO Rui-li ZHOU Ding GU Zhen-yuan QIAN Wang-ping 《China Ocean Engineering》 SCIE EI CSCD 2024年第1期129-143,共15页
The sloshing in a group of rigid cylindrical tanks with baffles and on soil foundation under horizontal excitation is studied analytically.The solutions for the velocity potential are derived out by the liquid subdoma... The sloshing in a group of rigid cylindrical tanks with baffles and on soil foundation under horizontal excitation is studied analytically.The solutions for the velocity potential are derived out by the liquid subdomain method.Equivalent models with mass-spring oscillators are established to replace continuous fluid.Combined with the least square technique,Chebyshev polynomials are employed to fit horizontal,rocking and horizontal-rocking coupling impedances of soil,respectively.A lumped parameter model for impedance is presented to describe the effects of soil on tank structures.A mechanical model for the soil-foundation-tank-liquid-baffle system with small amount of calculation and high accuracy is proposed using the substructure technique.The analytical solutions are in comparison with data from reported literature and numerical codes to validate the effectiveness and correctness of the model.Detailed dynamic properties and seismic responses of the soil-tank system are given for the baffle number,size and location as well as soil parameter. 展开更多
关键词 cylindrical tanks multiple annular baffles equivalent analytical model soilstructure interaction subdomain method dynamic response
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Seismic response of tall building considering soil-pile-structure interaction 被引量:6
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作者 Han Yingcai Fluor Canada Ltd.,Calgary,AB,Canada Ph.D.,Principal Engineering Specialist 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2002年第1期57-64,共8页
The seismic behavior of tall buildings can he greatly affected by non-linear soil-pile interaction during strong earthquakes.In this study a 20-storey building is examined as a typical structure supported on a pile fo... The seismic behavior of tall buildings can he greatly affected by non-linear soil-pile interaction during strong earthquakes.In this study a 20-storey building is examined as a typical structure supported on a pile foundation for different conditions:(1) rigid base,i.e.no deformation in the foundation:(2) linear soil-pile system;and (3) nonlinear soil-pile system. The effects of pile foundation displacements on the behavior of tall building are investigated,and compared with the behavior of buildings supported on shallow foundation.With a model of non-reflective boundary between the near field and far field, Novak's method of soil-pile interaction is improved.The computation method for vibration of pile foundations and DYNAN computer program are introduced comprehensively.A series of dynamic experiments have been done on full-scale piles, including single pile and group,linear vibration and nonlinear vibration,to verify the validity of boundary zone model. 展开更多
关键词 dynamic soil-pile-structure interaction soil dynamics structural dynamics nonlinear vibration seismic response of tall building
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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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SOIL PILE INTERACTION UNDER STATIC, DYNAMIC AND CYCLIC LATERAL LOADS AND A PROPOSAL OF p-y CURVE FORMULA 被引量:1
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作者 Gao, Ming Chen, Jinzhen +1 位作者 Zhen, Guofang Fang, Huolang 《China Ocean Engineering》 SCIE EI 1989年第3期259-270,共12页
In this paper, the studies on soil-pile interaction behaviors in saturated sands under static, dynamic and cyclic lateral loads by model testing are described. By comparing with the field test results for piles in sof... In this paper, the studies on soil-pile interaction behaviors in saturated sands under static, dynamic and cyclic lateral loads by model testing are described. By comparing with the field test results for piles in soft sandy clay, a formula of p-y curves based on constitutive relationship of soils applicable for both sandy and soft clays is proposed. Good agreements are obtained in comparison with the field test results performed by other investigators abroad. A p-y hysteresis curve formula based on the modified Masing's doubling criterion is also proposed, and the results are in satisfactory agreement with field test results. 展开更多
关键词 FOUNDATIONS soil structure interaction Mathematical Models PILES Loading soilS structural Analysis dynamic Response
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Dynamic Response of Fluid-Single Leg Gravity Platform-Soil Interaction System 被引量:1
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作者 Kuang, Zhiping Cao, Guoao 《China Ocean Engineering》 SCIE EI 1993年第2期187-195,共9页
An approximate method is presented to investigate the earthquake response of the fluid-single leg (shortened for S. L.) gravity platform-soil interaction system. By assuming a suitable form of the velocity potential o... An approximate method is presented to investigate the earthquake response of the fluid-single leg (shortened for S. L.) gravity platform-soil interaction system. By assuming a suitable form of the velocity potential of the radiation waves and by using the motion equation and the boundary conditions, the unknown coefficients can be obtained. Thereafter the function of frequency for the interaction system may also be obtained. In this paper, the difference of the system dynamic response between rigid foundation is analyzed and the influences of the various foundation geometric dimension and the various water-depth on the hydrodynamic loading and dynamic response of the system is illustrated. 展开更多
关键词 Approximation theory dynamic loads dynamic response Earthquake resistance Equations of motion FLUIDS FOUNDATIONS Production platforms soil structure interactions Vibrations (mechanical)
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Soil-Structure Interaction Analysis of Jack-up Platforms Subjected to Monochrome and Irregular Waves 被引量:3
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作者 Maziar Gholami KORZANI Ali Akbar AGHAKOUCHAK 《China Ocean Engineering》 SCIE EI CSCD 2015年第1期65-80,共16页
As jack-up platforms have recently been used in deeper and harsher waters, there has been an increasing demand to understand their behaviour more accurately to develop more sophisticated analysis techniques. One of th... As jack-up platforms have recently been used in deeper and harsher waters, there has been an increasing demand to understand their behaviour more accurately to develop more sophisticated analysis techniques. One of the areas of significant development has been the modelling of spudean performance, where the load-displacement behaviour of the foundation is required to be included in any numerical model of the structure. In this study, beam on nonlinear winkler foundation (BNWF) modeling--which is based on using nonlinear springs and dampers instead of a continuum soil media--is employed for this purpose. A regular monochrome design wave and an irregular wave representing a design sea state are applied to the platform as lateral loading. By using the BNWF model and assuming a granular soil under spudcans, properties such as soil nonlinear behaviour near the structure, contact phenomena at the interface of soil and spudcan (such as uplifting and rocking), and geometrical nonlinear behaviour of the structure are studied. Results of this study show that inelastic behaviour of the soil causes an increase in the lateral displacement at the hull elevation and permanent unequal settlement in soil below the spudcans, which are increased by decreasing the friction angle of the sandy soil. In fact, spudeans and the underlying soil cause a relative fixity at the platform support, which changes the dynamic response of the structure compared with the case where the structure is assumed to have a fixed support or pinned support. For simulating this behaviour without explicit modelling of soil-structure interaction (SSI), moment- rotation curves at the end of platform legs, which are dependent on foundation dimensions and soil characteristics, are obtained. These curves can be used in a simplified model of the platform for considering the relative fixity at the soil- foundation interface. 展开更多
关键词 jack-up platforms wave loading nonlinear dynamic analysis soil-structure interaction (SS1) beam on nonlinear winkler foundation (BNWF)
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Numerical analysis of the interaction of soil-structure under earthquake loading
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作者 章根德 宁书成 《Acta Seismologica Sinica(English Edition)》 CSCD 1997年第4期63-69,共7页
In this paper, the dynamical response of soil structure coupled system was studied by the continuum theory of soild fluid mixtures, the building foundation system subjected to rapid earthquake excitation were calcul... In this paper, the dynamical response of soil structure coupled system was studied by the continuum theory of soild fluid mixtures, the building foundation system subjected to rapid earthquake excitation were calculated by using finite element method.In the results, the deformation patterns and corresponding contour diagrams of pore pressure at various time levels are given, time variations of displacement in a certain node and shear stress in a certain element are also presented. The results of this study have provided an improved understanding of coupled behaviour of porous media. The procedure developed in this paper can be effectively used under a wide range of loading conditions from very slow quasi static to very rapid earthquake excitations. 展开更多
关键词 soil dynamics soil structure interaction earthquake response
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Dynamic Response Analysis of Interaction System of R.C. Gravity Single-Leg Platform
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作者 Cao, Guoao Shen, Yilei 《China Ocean Engineering》 SCIE EI 1991年第1期23-30,共8页
In this paper, the responses of the interaction system of R.C. gravity single-leg platform to seismic excitation are mainly analysed. A set of nonlinear equations for the interaction system are established by using th... In this paper, the responses of the interaction system of R.C. gravity single-leg platform to seismic excitation are mainly analysed. A set of nonlinear equations for the interaction system are established by using the wave, one is the soil-structure interaction and the other is the fluid-structure interaction. The seismic response of the interaction system is analysed for the influence of the asymmetric structure, fluid action, etc. with the input of seismic SH waves in any direction. The numerical results are given for a simple example. 展开更多
关键词 FOUNDATIONS soil structure interaction HYDROdynamicS Fluid structure interaction Mathematical Techniques Nonlinear Equations structural Analysis dynamic Response
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隧道-土-桥桩相互作用体系振动台试验与数值模拟研究
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作者 路沙沙 赵东旭 +2 位作者 白举科 刘少栋 尹航 《振动工程学报》 EI CSCD 北大核心 2024年第1期168-181,共14页
以大连实际工程为背景,通过振动台试验研究了双隧道-砂土-桥桩系统在地震作用下的动力相互作用(SSSI),得到结构、场地的动力响应规律,并与ABAQUS数值模拟结果进行对比。数值模型引入Kelvin本构模型子程序,利用等效线性方法处理砂土在计... 以大连实际工程为背景,通过振动台试验研究了双隧道-砂土-桥桩系统在地震作用下的动力相互作用(SSSI),得到结构、场地的动力响应规律,并与ABAQUS数值模拟结果进行对比。数值模型引入Kelvin本构模型子程序,利用等效线性方法处理砂土在计算过程中的非线性问题。将试验结果与数值模拟结果进行对比,验证了数值模拟的可靠性。在此基础上设计了8种工况,通过对比分析研究了体系内各结构之间的相互作用规律。结果表明,隧道会放大桥桩、临近隧道的峰值加速度,而桥桩却会对侧穿隧道的峰值加速度起到减弱作用;隧道与桥桩的存在均会增大彼此的截面剪力与弯矩,其中受影响的区域主要集中在隧道上下拱,桥桩的桩底与桩-土交界面。 展开更多
关键词 结构--结构相互作用 振动台试验 数值模拟 动力响应 放大系数
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考虑桩-土相互作用的超大型单桩式海上风机结构地震响应
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作者 许成顺 李超越 +1 位作者 石世刚 孙毅龙 《北京工业大学学报》 CAS CSCD 北大核心 2024年第11期1301-1311,共11页
为了解决桩-土相互作用对超大型单桩式海上风机结构地震响应影响的问题,基于IEA 15 MW的固定式单桩海上风机原型,使用Abaqus建立考虑桩-土相互作用与泥面固定2种风机结构模型,桩-土相互作用通过一组非线性弹簧模拟。考虑风-波浪与地震... 为了解决桩-土相互作用对超大型单桩式海上风机结构地震响应影响的问题,基于IEA 15 MW的固定式单桩海上风机原型,使用Abaqus建立考虑桩-土相互作用与泥面固定2种风机结构模型,桩-土相互作用通过一组非线性弹簧模拟。考虑风-波浪与地震联合作用,分析桩-土相互作用对超大型固定式单桩海上风机结构动力响应的影响。结果表明:针对超大型海上风机,桩-土相互作用效应使风机支撑结构的特征频率降低3%~6%;考虑桩-土相互作用的大兆瓦风机动力响应远大于泥面固定风机模型的动力响应;海上风机尺寸越大,桩-土相互作用引起的海上风机结构动力响应偏差越显著。 展开更多
关键词 -土相互作用 -波浪-地震联合作用 单桩式海上风机 支撑结构 特征频率 动力响应
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土-承台动力相互作用对砂土场地桩基桥梁地震反应的影响
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作者 杨当 王靖程 叶爱君 《城市道桥与防洪》 2024年第1期199-204,M0017,共7页
在桩基桥梁的地震反应分析中,桩-土动力相互作用是个重要的问题,而对于采用低桩承台基础的桥梁,承台埋在土面以下,还存在土与承台之间的动力相互作用。目前,地震反应分析中一般不考虑土-承台动力相互作用的影响,相关研究也很少。为此,利... 在桩基桥梁的地震反应分析中,桩-土动力相互作用是个重要的问题,而对于采用低桩承台基础的桥梁,承台埋在土面以下,还存在土与承台之间的动力相互作用。目前,地震反应分析中一般不考虑土-承台动力相互作用的影响,相关研究也很少。为此,利用OpenSees有限元分析程序,基于p-y曲线建立了土-结构一体化桩基单墩模型,选择40条实际岩石场地地震记录作为输入,开展了考虑土-承台动力相互作用的桩基桥梁地震反应分析。结果表明,考虑土-承台动力相互作用后,结构的基本周期会减小,墩底曲率会明显增大,桩顶曲率会大幅减小,但墩顶位移的减小可以忽略。 展开更多
关键词 桥梁 群桩基础 地震反应 -结构一体化模型 -承台动力相互作用
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基于隔离非线性法-黏弹性人工边界的结构高效抗震分析方法
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作者 李佳龙 任东兴 李志远 《地震工程与工程振动》 CSCD 北大核心 2024年第4期208-221,共14页
黏弹性人工边界是解决土-结构动力相互作用问题的有效手段之一,但其在分析过程中通常需要进行大量的非线性动力时程计算,效率较低。建立采用黏弹性人工边界求解土-结构动力相互作用问题控制方程求解的高效计算方法,为此,引入隔离非线性... 黏弹性人工边界是解决土-结构动力相互作用问题的有效手段之一,但其在分析过程中通常需要进行大量的非线性动力时程计算,效率较低。建立采用黏弹性人工边界求解土-结构动力相互作用问题控制方程求解的高效计算方法,为此,引入隔离非线性法高效求解思想,构造基于隔离非线性法-黏弹性人工边界的非线性土-结构动力相互作用分析模型,推导的动力控制方程在形式上与固定边界的隔离非线性动力控制方程基本一致,仅需将黏弹性人工边界的弹簧-阻尼器元件的刚度直接集成到近场土-结构模型的初始刚度矩阵与阻尼矩阵上即可。此外,结合Woodbury公式与组合近似法提出了改进Woodbury近似法,该改进方法能同时降低控制方程求解的时间复杂度与空间复杂度,实现了黏弹性人工边界求解土-结构动力相互作用问题动力控制方程的高效求解。研究方法同时保留了黏弹性人工边界与隔离非线性法的优点,数值算例验证了所提方法的正确性与高效性。 展开更多
关键词 隔离非线性法 黏弹性人工边界 -结构动力相互作用 改进Woodbury近似法
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土-结构动力相互作用振动台试验时间相似比问题讨论 被引量:3
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作者 景立平 张建林 +2 位作者 陆新宇 汪刚 齐文浩 《地震工程与工程振动》 CSCD 北大核心 2023年第2期127-135,共9页
土-结构动力相互作用振动台试验中,由于结构和土材料性质的不同,无法给出统一的试验相似关系,模型试验结果无法定量地反演到原型,一般只能近似地反映原型结构的动力反应特征。在土-结构振动台试验中,为了将试验结果定性地反映原型地震... 土-结构动力相互作用振动台试验中,由于结构和土材料性质的不同,无法给出统一的试验相似关系,模型试验结果无法定量地反演到原型,一般只能近似地反映原型结构的动力反应特征。在土-结构振动台试验中,为了将试验结果定性地反映原型地震反应特征,需要考虑土-结构体系的特征尺寸和土体中地震动波长的相对大小,换言之,要考虑输入地震动时程的时间压缩比,文中根据振动台不同土体模型试验结果,依据现有的振动台相似关系,讨论了时间相似比问题。通过凹陷地形的振动台试验和地下结构试验模型的数值分析,验证了文中给出的时间相似比可以定性地反映地震动传播过程中土-结构动力相互作用特征。 展开更多
关键词 -结构动力相互作用 振动台试验 时间相似关系 特征尺寸
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基于动力p-y曲线法的曲线梁桥抗震性能研究
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作者 焦驰宇 张家辉 +1 位作者 胡彪 李杨杰 《地震工程与工程振动》 CSCD 北大核心 2023年第2期93-102,共10页
受空间耦合效应影响,国内外考虑桩-土-结构相互作用的曲线梁桥抗震性能的相关研究略显不足。基于此,文中以某匝道桥为工程背景,基于OpenSees平台,采用空间动力p-y曲线法开展了5种不同曲率半径、3种典型下部结构形式的15组动力非线性有... 受空间耦合效应影响,国内外考虑桩-土-结构相互作用的曲线梁桥抗震性能的相关研究略显不足。基于此,文中以某匝道桥为工程背景,基于OpenSees平台,采用空间动力p-y曲线法开展了5种不同曲率半径、3种典型下部结构形式的15组动力非线性有限元数值模型对比研究,探讨了考虑桩-土-结构相互作用影响下曲线梁桥的地震响应规律。研究表明:曲线梁桥的法向结构响应量大于直线梁桥,切向结构响应规律相反;随着曲率半径的增加,曲线梁桥的各结构响应规律与直线梁桥逐渐接近;与考虑桩土效应的直线桥相比,在法向和切向上,曲线梁桥边墩和中墩的结构响应量差异大,随着曲率半径的增加,差异显著减小;对同一曲率半径的桥梁来说,下部结构中墩为独柱墩刚接体系时,该墩内力响应最大、位移响应最小,中墩为双柱加支座结构时,动力响应规律相反,直线梁桥的规律与此类似。文中研究结果可为曲线梁桥地震反应规律提供指导和建议。 展开更多
关键词 曲线梁桥 桩基础 --结构动力相互作用 抗震性能 OPENSEES
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软土地基上桩-土-高层结构体系动力特性的振动台试验 被引量:2
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作者 杨金平 李培振 吴雯 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第4期578-587,共10页
为了研究软土地基上桩-土相互作用对高层结构动力特性的影响机理,设计了1:6比例的高层结构-桩-土动力相互作用体系,进行了软土地基上框架结构的模型振动台试验。试验采用层状剪切盒模拟土体的边界,锯末和砂土的混合物作为地基土、以12... 为了研究软土地基上桩-土相互作用对高层结构动力特性的影响机理,设计了1:6比例的高层结构-桩-土动力相互作用体系,进行了软土地基上框架结构的模型振动台试验。试验采用层状剪切盒模拟土体的边界,锯末和砂土的混合物作为地基土、以12层钢筋混凝土框架结构模拟上部结构,基础采用3×3群桩基础。通过对比考虑土-结构相互作用(SSI)框架模型和刚性地基框架模型的结构动力特性,总结出本试验中SSI效应对高层框架结构的动力特性影响规律:土体对地震动存在显著的过滤作用,放大土体基频附近的振动,且放大幅度随地震动的加强而减小;小震时土体对加速度峰值起放大作用,而在大震时起减小峰值的作用;考虑SSI效应后,结构的频率降低,阻尼比提高,结构的损伤出现得更晚,发展也更慢。在土体频率处,SSI体系的振型受土体影响显著;在远离土体频率处,SSI体系振型与刚性地基一致。 展开更多
关键词 -结构相互作用 动力特性 振动台试验 高层结构 软土地基
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