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1.
层状饱水软土地基三维非轴对称动力响应分析方法   总被引:1,自引:0,他引:1  
将饱水软土地基视为两相介质、考虑水的渗流和土骨架9变形的耦合作用,用Fourier展开和Hankel积分变换分析三维非称对称饱和弹性土层波动方程,用刚度矩阵方法,建立了层状饱和软土地基三维非轴对称动力响应的解析分析方法。以数值算例对比分析了单相土介质与两相饱和土介质三维非轴对称稳态动力响应,结果表明:在饱水软土地基动力响应分析中应该考虑土体中孔隙流体的影响。  相似文献   

2.
考虑非线性的建筑物地基地震液化简化分析方法   总被引:2,自引:0,他引:2  
本文在建筑物地基地震液化总应力简化判别方法的基础上,考虑地基土壤的剪切非线性及饱和砂土Martin非线性孔压增长模型,提出了估计建筑物地基孔压增长的简化分析方法,这一方法可用来判别地基的初始液化问题。  相似文献   

3.
均匀土-桩基-结构相互作用体系的计算分析   总被引:14,自引:4,他引:14  
本文以结构-地基动力相互作用振动台模型试验为基础,结合通用有限元软件ANSYS,对均匀土-桩基-结构动力相互作用体系进行了三维有限元分析。计算中土体采用等效线性模型,利用面-面接触单元考虑土体与结构交界面的状态非线性,计算与试验得出的规律基本一致。桩基与土体间发生了脱开再闭合和滑移现象。桩身应变幅值分布呈桩顶大、桩尖小的倒三角分布,角桩的应变幅值较大,边排中桩和中桩的应变幅值较小。桩土接触压力幅值呈桩顶小、桩尖大的三角形分布。在沿振动方向的三排桩中,边排桩的滑移比中排桩的滑移量大。通过计算分析与试验的对照研究,验证了采用的计算模型与分析方法的合理性,为结构-地基相互作用的进一步研究奠定了基础。  相似文献   

4.
以结构-地基相互作用和结构可靠性分析理论为基础,研究了贮仓-地基相互作用系统的可靠性分析方法,建立了贮仓与地基相互作用系统的动力可靠性分析理论。  相似文献   

5.
核岛场地动力特性对核电站结构的地震响应有重要影响。输入波动场构成了结构-地基动力相互作用分析的完整的地震动输入条件,核岛近区域的复杂场地改变了输入波动场的动力特性。本文从工程抗震角度,以现有大型通用有限元软件ANSYS为基础,进行二次开发,建立全三维(3D)地基模型,并引入人工透射边界条件,模拟地基的辐射效应。采用传递函数的分析方法,输入位移脉冲函数,输出关注位置的位移响应。本文探讨了核电场地近区域存在水平软弱层、夹杂体以及开挖场地的输入波动场的动力特性。结果显示水平软弱层具有明显的放大低频、过滤高频的作用;夹杂体的位置和开挖深度对输入波动场的动力特性也有不同程度的改变。本文方法可为核电厂工程结构的抗震设计提供一定的技术依据。  相似文献   

6.
某核电厂为满足建设、运营及特殊情况下的应急需求,拟建应急通道桥,其抗震安全十分重要。本文介绍了考虑桥-桩-地基的三维整体精细化模型的有限元动力时程分析方法,计算桥梁在SL-1(运行安全地震动)和SL-2(极限安全地震动)地震作用下地基典型断面、T梁以及墩柱的动力响应。结果表明该方法能直接处理土的非线性问题以及方便的考虑地基辐射阻尼作用,同时可以精细模拟T梁和盖梁间的支座接触。三维计算采用自主开发的GEODYNA高性能软件平台,计算效率较高。该方法可为核电厂桥梁抗震设计提供参考。  相似文献   

7.
本文提出了虚拟时间概念,克服了太沙基等人理论与方法的局限性,提出了砂井软土地基大变形非线性固结分析方法。  相似文献   

8.
通过对层状地层中端承桩的分析,建立了合理的几何,数学及力学模型。考虑层状地基SH与SV波波动及非线性辐射阻尼影响,应用Dirac广义函数及Winkler地基理论计入各种动力,抗力,地震力及内力等,建立地基波动方程,桩振动方程,地基与桩耦合振动方程。给出了柯西型函数的自由振动解。利用非经典理论正交条件和卷积定理给出了强迫振动地震反应解析解,算例结果充分表明了动力特性及振动规律非常正确,充分体现了本文  相似文献   

9.
基于ABAQUS的粘弹性边界单元及在重力坝抗震分析中的应用   总被引:2,自引:0,他引:2  
考虑了2种不同的地震输入模型,即无质量地基模型和考虑辐射阻尼的粘弹性边界模型。以大型非线性有限元程序ABAQUS为平台,采用FORTRAN语言开发了用户单元子程序VSB_UEL.for,将粘弹性边界有效地嵌入到ABAQUS中。在尽量避免求解自由场的前提下,将离散的地震荷载转化为等效结点荷载,编写的计算程序可以方便地将等效荷载施加到人工边界结点上,并通过数值算例验证了粘弹性边界单元及波动输入程序的正确性,其求解效率和计算精度均令人满意,最后将该程序应用到在建的某水电站厂房坝段的抗震分析中。结果表明,与传统的固定边界无质量地基相比,考虑了粘弹性人工边界后,坝体的动力响应峰值减小了20%~40%;在进行结构动力响应分析时,考虑无限域地基的辐射阻尼影响是很有必要的。文中的用户子程序及波动输入程序很容易扩展至三维,为同类工程的抗震分析提供了简洁、合理的计算模式。  相似文献   

10.
地下结构抗震理论分析与试验研究的发展展望   总被引:5,自引:0,他引:5  
目前我国在地下结构抗震分析与破坏灾变机理研究中尚存在诸多问题需要解决,在分析总结我国地下结构抗震理论与试验研究的基础上,重点阐述了需要进一步深入研究的六个关键问题:地下结构振动模型试验研究技术,土体非线性动力本构模型,高轴压的地下结构承重构件地震破坏机理,非一致波动输入及非一致波动输入下地下结构的地震反应,饱和砂土液化大变形理论及本构模型,大型三维非线性土-结构动力相互作用分析模型。这些问题的研究和解决对于完善地下结构抗震理论分析方法与试验研究技术,获得大型地下结构在地震作用下的反应规律与破坏灾变机理具有重要的科学意义和工程应用价值。  相似文献   

11.
A system of three ordinary non-linear first order differential equations is proposed for the computation of the geometrical spreading of the wave front of a seismic body wave in a three-dimensional medium. The variables of the system are the parameters which provide a second order approximation of the wave front.  相似文献   

12.
Summary A system of three ordinary non-linear first order differential equations is proposed for the computation of the geometrical spreading of the wave front of a seismic body wave in a three-dimensional medium. The variables of the system are the parameters which provide a second order approximation of the wave front.  相似文献   

13.
A three-dimensional non-linear, non-hydrostatic model in cross-sectional form is used to determine the factors influencing the relative importance of the linear, non-hydrostatic and non-linear contributions to the internal wave energy flux in sill regions due to tidal forcing. The importance of the free surface elevation term is also considered. Idealised topography representing the sill at the entrance to Loch Etive, the site of a recent measurement programme, is used. Calculations show that the non-linear terms in the energy flux become increasingly important as the sill Froude Number (F s) increases and the sill aspect ratio is increased. The vertical profile of the stratification, in particular its value close to the sill crest where internal waves are generated, has a significant influence on unsteady lee wave and mixed tidal–lee wave generation and the non-linear contribution to the energy flux. Calculations show that as F s increases, the energy flux due to the non-linear and non-hydrostatic terms increases more rapidly than the linear term. The importance of the non-linear terms in the energy flux also increases as the sill aspect ratio is increased. Increasing the buoyancy frequency reduces the contribution of the non-hydrostatic and non-linear terms to the total energy flux. Also, as the buoyancy frequency is increased, this reduces unsteady lee wave and mixed tidal–lee wave generation. In essence, these calculations show that the energy flux due to the non-hydrostatic and non-linear terms is appreciable in sill regions.  相似文献   

14.
提出了控制地震概念和用时间反转方法实现非均匀地壳中波的聚焦,从而实现动力触发地震的思路。采用了有限元动力学仿真技术,研究了在波的遍历模型、线性不均匀的介质、以至非线性介质中的时间反转,探讨了在潜在震源区域人工聚能的可能性。结果表明这种聚能是可行的,在考虑介质非线性的条件下,波能量至少可以近似地聚焦。  相似文献   

15.
The verification of a two-dimensional non-linear analysis based on a hybrid constitutive model, which consists of the Ramberg-Osgood model extended to two-dimensional problems and a dilatancy model, is discussed through a comparison of the shaking-table test results for a one-storey structure standing on a dry sandy deposit with those for the same on a saturated sandy deposit. Since the relationships G vs. γ and h vs. γ for shear strains of 10?5?10?3 can be obtained accurately by an inversion analysis of the resonance curve of the sandy deposit the proposed non-linear method can represent well the observed non-linear response of the dry or the saturated sandy deposit including the structure. This method, however, should be applied carefully to assess the response of a soil-structure system when the three-dimensional interaction affects significantly the response of the model. An equivalent linear analysis using a sway-rocking model is applied to simulate the non-linear ground motion including the three-dimensional interaction, and it is found that the sway-rocking model can also represent well the non-linear response of the system.  相似文献   

16.
Examples of non-linear wave propagation in an elasto-plastic building are presented for excitation by pulses of strong ground motion characteristic of the near-field shaking near earthquake faults. Conditions that lead to the occurrence of permanent deformations in the building are investigated, and the amplitudes and wavelengths of incident pulses that lead to non-linear response are shown. Because the building can fail during the first passage of the incident wave pulse up and down the building (during a period that is shorter than the first natural period of the building), it is concluded that for the analysis and the design of structures in the near-field of earthquake shaking the wave propagation method of analysis must be used in place of the response spectrum method, which is based on the vibrational solution of the same governing equations.  相似文献   

17.
A non-linear interaction analysis with a (generalized) non-linear structure and a linear unbounded soil is analysed in the time domain, based either on the sub-structure method, which involves global convolution integrals, or on the direct method with local boundary conditions. Alternatively, the hybrid frequency–time-domain method of analysis, which is an iterative scheme, could be used. Approximate local boundary conditions to model the wave propagation towards infinity on the artificial boundary used in the direct method of non-linear soil–structure-interaction analysis to be performed in the time domain are examined. A semi-infinite rod supported elastically, which exhibits the same properties as certain unbounded soils such as dispersion and a cut-off frequency, is used for the investigation. For a transient excitation, the superposition boundary with frequent averaging, the well-known viscous damper and the extrapolation algorithm lead to good accuracy. Moving the artificial boundary further away from the structure (or more precisely, increasing the ratio of the distance of the artificial boundary to the wave length) improves the accuracy.  相似文献   

18.
Mathematical models and three-dimensional non-linear dynamic analysis procedures are described for determining the seismic response of long, curved (or straight), multiple-span, reinforced concrete highway bridges. Under the action of strong earthquakes, the columns (or piers) of such structures may experience large cyclic inelastic deformations of a coupled form. Also, cyclic slippage of the Coulomb type can take place in the expansion joints of the deck causing multiple impacts and separations to occur. These separations may be sufficiently large to cause tensile yielding of the longitudinal expansion joint restrainer bars (or cables) and, if not controlled, can permit deck spans to fall off their supports resulting in partial or total collapse of the structure. In this paper, a three-dimensional elasto-plastic mathematical model suitable for representing the coupled inelastic flexural behaviour of reinforced concrete columns under cyclic deformations is presented along with a non-linear mathematical model for simulating the non-linear discontinuous behaviour of expansion joints. The procedures used for non-linear seismic response analysis are described and a numerical example is given to illustrate the method.  相似文献   

19.
运用三维非线性动态有限元方法(Non-linear Dynamic FEM)仿真模拟研究了菱形模型的动态应力作用,分析了1976年唐山7.8级地震.结果表明:(1)唐山地震前增强的中强地震产生的冲击力形成的应力波反射后发生半波损失, 成为动态的拉伸应力,通过减小内摩擦而引起岩石产生裂纹、局部破裂并发生串通,一方面触发地震,另一方面为孕育唐山地震积累能量,表现为正反馈过程.(2)唐山地震产生的冲击力加卸载存在时间差,造成加卸载冲击波相位不同,结果产生的动应力和围压叠加致使围压波动和下降,导致抗剪切强度降低,使初始破裂分别向北东、西南方向传播.(3)冲击力的卸载,相对于产生拉伸性的应力波,反射后发生半波损失,成为动态的压缩应力,致使围压增大并导致破裂停止;而动态应力在传播过程中衰减.因此,余震的发生是一个负反馈过程.  相似文献   

20.
本文基于Metropolis接收原则改进快速模拟退火算法同时进行地下介质层速度和层厚度的联合反演.通过数值模拟验证,该方法在调整好起始温度、温度下降方案等参数的情况下,通过非线性反演可以得到接近理论模型的结果.通过对沿86.E经线南北跨越印度板块、青藏高原和塔里木盆地的垂直剖面的纯频散进行反演,得到S波速度结构,由此识别其Moho 面深度和岩石圈底界面等层面位置.  相似文献   

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