首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 640 毫秒
1.
本文将随机振动的虚拟激励法与拱坝-地基动力相互作用FE-BE-IBE时域模型结合,发展了一个可以考虑多维随机地震动作用下的拱坝动力响应计算模型,并用Monte Garlo方法对模型进行了验证,计算结果表明,地震动分量的相关性对结构的动力响应存在一定影响,合理考虑地震动各方向分量的相关性可以更好地计算实际地震作用下的拱坝动力响应。  相似文献   

2.
大跨度空间网格结构多维多点随机地震反应分析   总被引:4,自引:0,他引:4  
本文建立了三维正交地震动多点激励下大跨度空间网格结构的随机地震反应分析方法,依据现行抗震设计规范的有关规定,确定了平稳随机地震动功率谱密度的模型参数。数值仿真分析了一柱距80m的正方形平板网架分别在一维地震动或三维地震动的一致激励、行波激励和考虑部分相干效应的随机激励下的地震反应。结果表明:考虑地震动的空间效应会很大程度地改变结构杆件的内力,其中控制杆件的内力增幅达到30%;地震动的行波效应对结构杆件内力的影响比随机地震动的部分相干效应的影响更大;三维地震作用比一维地震作用下结构杆件的内力大。由此得出结论,对于大跨度空间网格结构,必须进行多维多点地震激励下的随机地震反应分析。  相似文献   

3.
随机地震动场多点激励下大跨度桥梁地震反应分析方法   总被引:11,自引:3,他引:11  
地震输入问题一直是工程结构抗震研究关注的焦点。对大跨度桥梁结构,考虑随机地震动场的多点激励而进行地震反应分析较为合理。本文结合大跨度桥梁抗震设计,系统地介绍了随机地震动场的模型以及随机地震动场多点激励下大跨度桥梁地震反应分析的方法。  相似文献   

4.
高压断路器隔震体系抗震可靠度分析   总被引:1,自引:0,他引:1  
给出了基于随机地震动模型的高压断路器抗震可靠性分析方法。通过建立高压断路器及其隔震体系的有限元计算模型,分析了在断路器底部瓷套管根部加设叠层橡胶垫后的动力性能,分析中利用随机地震动模型,充分考虑地震动的随机作用,给出了四类场地土条件下结构的地震响应均值和标准差;利用一次二阶矩理论计算得到高压断路器的可靠度,给出了各场地土条件下的震害率曲线。结果表明不同场地土条件下隔震垫的减震效果有所差异。  相似文献   

5.
在平稳地震动过程的Clough-Penzien功率谱基础上,采用林家浩非均匀调制函数建立全非平稳地震动过程的演变功率谱。根据我国现行的《建筑抗震设计规范》进行全非平稳地震动演变功率谱的参数识别研究。应用非平稳随机过程模拟的谱表示-随机函数方法,生成建筑结构抗震设计所用地震动的代表性样本集合。通过代表性样本集合的二阶统计值及地震反应谱与目标值的拟合比较,验证本文方法的有效性。最后结合概率密度演化方法,进行以层间位移角为控制准则的结构随机地震反应分析与抗震可靠度计算。  相似文献   

6.
以随机振动理论为基础,以苏通长江公路大桥为背景,对超大跨度斜拉桥在随机地震荷载作用下的动力可靠度展开研究。根据结构随机振动分析得到的响应统计量,采用结构可靠度分析的JC法(一次二阶矩法)和首次超越破坏理论,分析苏通大桥主梁关键截面上正应力的动力可靠度,并评价结构的抗震性能,分析结果证明该结构可靠性满足桥梁抗震需求。计算结果可为大跨度斜拉桥抗震可靠性分析提供参考。  相似文献   

7.
本文综述了结构多维地震作用研究的发展概况。在I中,主要综述了多维地震动输入的有关问题,分别从多维地震动转动分量的研究和多维地震动随机模型及相关性的研究方面进行了讨论。在Ⅱ中,主要综述了结构在多维地震作用下的反应分析方法,包括多维抗震分析的反应谱方法、多维抗震分析的时程法、和多维抗震分析的随机方法,最后讨论了结构多维地震作用研究中存在的问题,对今后的研究方向提出了展望。  相似文献   

8.
多点输入随机地震动拱坝-地基体系反应分析   总被引:9,自引:0,他引:9  
采用等效地基集总参数方法,推导了拱坝-地基体系的简化多点随机输入分析模型,对拱坝-地基动力相互作用体系在多点随机输入地震波作用下的随机响应到进行了分析,并对地基柔度及地震动空间相干性损失对拱坝随机响应的影响进行了讨论。  相似文献   

9.
针对高烈度区混凝土拱坝的抗震性能评价及震后风险应急评估问题,从震后受损坝体的安全性能的角度开展了研究。通过非线性数值分析方法针对不同强度地震动作用下受损坝体的水压力超载安全性能进行了分析,讨论了震后受损坝体在水压力超载下的位移变化规律,并提出了坝面损伤面积比及坝体损伤体积比两个新的指标,用于分析拱坝震后的坝体安全性。计算结果表明,拱坝体型和受力形式使坝体具有优良的抗震性能,能够经受强震的作用,损伤坝体在震后可以保证承受水压力安全,所提出的坝体损伤累积面积比和损伤累积体积比指标不仅可以反映拱坝抗震性能的演化规律,而且可以反映震后损伤坝体的承载安全,与传统的拱坝抗震性能评价指标相比,更适合作为拱坝安全性能的评价指标。  相似文献   

10.
建立以计算结构失效概率为目的的抗震动力可靠性分析方法对梁桥抗震分析水平的提高具有重要意义。基于结构动力可靠度理论,以Kanai-Tajimi模型为地震动激励,同时考虑地震波传播过程中时间迟滞所导致结构受到的多点非一致激励以及强震所导致的结构滞变特性(即弹塑性),并考虑桥梁设计基准期内地震发生的随机性,分析得到了梁桥在其设计基准期内不同地震烈度下的抗震可靠度。实例表明,所提分析方法与分析过程是合理可行的,为钢筋混凝土梁桥结构的抗震可靠性分析提供了参考。  相似文献   

11.
Concrete dams suffering from alkali-aggregate reaction (AAR) exhibit swelling and deterioration of concrete or even cracking over a long period. The deterioration of concrete may significantly affect the dynamic behavior of the structures, and it is necessary to estimate seismic safety of the deteriorated dams subjected to strong earthquakes. A unified approach is presented in this paper for long-term behavior and seismic response analysis of AAR-affected concrete dams by combining AAR kinetics, effects of creep and plastic-damage model in the finite element method. The proposed method is applied to a gravity dam and an arch dam. The long-term behavior of the AAR-affected dams is first predicted in terms of anisotropic swelling, spatially non-uniform deterioration of concrete, and cracking initiation and propagation with the development of AAR. The seismic response of the deteriorated dams is subsequently analyzed based on the state of the structures at the end of the long-term analysis. The AAR-induced expansion displacements obtained from the proposed method are in good agreement with the measured ones in the long-term operation. The simulated cracking patterns in the dams caused by the continuing AAR are also similar to the field observation. The results from the seismic analysis show that AAR-induced deterioration of concrete and cracking may lead to more severe damage cracking in the dams during earthquake. The dynamic displacements are also increased compared with the dams that are not suffering from AAR. The seismic safety of the AAR-affected concrete dams is significantly reduced because of the AAR-induced deterioration of concrete and cracking.  相似文献   

12.
In the present paper, effects of non-uniform excitation due to spatially variation of seismic waves under the reservoir bottom on linear and nonlinear responses of arch dams are studied. Foundation is assumed to be massed and infinite elements are utilized to model semi-infinite medium via the far-end boundary of the foundation FE model. A continuum crack propagation model based on the smeared crack approach in 3D space is introduced. Reservoir's water is assumed compressible and the coupled system is solved using the staggered method. As a case study, Amir-Kabir double curvature arch dam in Iran is selected to investigate seismic behavior of the system. Two cases are analyzed in which wave travelling velocities are taken as 650 m/s and infinity. According to the results, non-uniform excitation leads to reduction in seismic response of the system and, in addition, frequency content of the response is different completely in comparison with the system under the uniform excitation.  相似文献   

13.
拱坝横缝影响及有效抗震措施的研究   总被引:6,自引:0,他引:6  
大量研究结果和某些拱坝的地震震害表明,横缝对拱坝的地震响应有很大的影响。通过采用非光滑方程组方法以及考虑碰撞时刻动量、动能守恒来模拟横缝所引起的动接触问题,同时为了提高计算效率,采用隐-显式积分方法对坝-基系统的动力平衡方程进行求解。针对在拱坝中上部配筋这一抗震措施,也作了探讨。通过对小湾拱坝的分析,为高拱坝工程抗震措施的选择提供技术依据。  相似文献   

14.
A procedure for three-dimensional (3-D) coupling of finite elements (FEs), boundary elements (BEs) and infinite boundary elements (IBEs) is presented for the numerical modelling of seismic interaction between arch dams and rock canyons. First, a system of coupling 3-D boundary and infinite boundary elements is developed for simulation of infinite and irregular canyons and for determination, in the frequency domain, of impedance functions on the dam-canyon interface. Secondly, the impedance functions for all degrees-of-freedom are transformed approximately into frequency independent discrete parameters by a curve fitting technique. Finally, these discrete parameters are combined with the dam structure which is discretized by finite elements, thus allowing the response of the arch dam-canyon system to be evaluated. The proposed procedure is efficient because it permits the seismic analysis of arch dam-canyon interaction by the substructure technique in the time domain. To demonstrate both the validity and efficiency of the present procedure, the response of an arch dam-canyon system is obtained under unit impulse acting on the dam-canyon interface as the free field input. Very good agreement is noted when comparing the frequency response determined from the time domain with that from the frequency domain under harmonic excitation applied on the interface of the dam-canyon.  相似文献   

15.
Different procedures are compared for the three-dimensional seismic cracking analysis of gravity and arch dams during strong earthquakes. The fracture procedures include the extended finite element method with cohesive constitutive relations, crack band finite element method with plastic-damage relations, and the finite element Drucker−Prager elasto-plastic model. These procedures are used to analyze the nonlinear dynamic response of Koyna dam to the 1967 Koyna earthquake and the seismic cracking of the Dagangshan arch dam subjected to design earthquake. The cracking process and profiles of the two dams using the three different procedures are compared. The applicability and the suitability of the three procedures for seismic cracking analysis of gravity and arch dams are discussed.  相似文献   

16.
In this paper a general methodology for the analysis of large concrete dams subjected to seismic excitation is outlined. It is valid both for gravity dams (2D representation) and arch dams (3D representation). The method allows for non-linear material behaviour of the dam, ‘transparent fictitious boundaries’ for dealing properly with in-coming and out-going seismic waves, and an efficient procedure to deal with dam-soil-fluid interaction. The mechanical behaviour of concrete is modelled using an isotropic damage model which allows for tension and compression damage, and exhibits stiffness recovery upon load reversals. Emphasis is placed in the treatment of fluid-structure interaction, regarding both formulation and efficiency aspects. A gravity dam and an arch dam are analysed subjected to artificially generated earthquakes of different intensities, and the results are used to study the degree of (un)safety of the dams.  相似文献   

17.
有缝拱坝-地基系统非线性地震波动反应分析方法   总被引:12,自引:3,他引:9  
拱坝坝体中缝界面在地震作用下的开、合模拟对拱坝地震反应有重要影响。目前在拱坝地震反应分析中应用的一些模型,如Fenves模型、Dowling的三参数模型,存在对缝界面的接触状态模拟精度不高的问题,这对于准确评价工程上关心的缝界面最大张开率是不足的。此外,坝基中存在的断层、节理、裂隙待软弱夹层的非线性力学特性和无限地基能量辐射作用对拱坝地震反应也有重要影响。在拱坝地震反应分析中同时考虑这三种影响因素  相似文献   

18.
本文以某异型钢管混凝土拱桥为研究对象,通过ANSYS建立了结构的空间有限元模型,计算和分析了该桥的动力特性。同时,通过MATLAB程序生成拟合规范反应谱的人工地震波,并运用时程分析法计算了该桥在一维和多维输入下的地震反应,分析了该桥的地震反应规律,为钢管混凝土拱桥的抗震性能分析提供了一定的依据。  相似文献   

19.
The arch dam–foundation rock dynamic interaction and the nonlinear opening and closing effects of contact joints on arch dam are important to the seismic response analysis of arch dams. Up to date, there is not yet a reasonable and rigorous procedure including the two factors in seismic response analysis. The methods for the analysis of arch dam–foundation rock dynamic interaction in frequency domain are not suitable to the problem with nonlinear behaviors, in this paper, so an analysis method in time domain is proposed by combining the explicit finite element method and the transmitting boundary, and the dynamic relaxation technique is adopted to obtain the initial static response for dynamic analysis. Moreover, the influence of arch dam–foundation dynamic interaction with energy dispersion on seismic response of designed Xiaowan arch dam in China is studied by comparing the results of the proposed method and the conventional method with the massless foundation, and the local material nonlinear and nonhomogeneous behaviors of foundation rock are also considered. The reservoir water effect is assumed as Westergaard added mass model in calculation. The influence of the closing–opening effects of contact joints of arch dam on the seismic response will be studied in another paper.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号