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1.
现有的基础隔震理论大多沿用刚性地基假定,忽略土-结构相互作用。由于地基土的柔性和无限性,土-结构相互作用会对基础隔震体系的隔震机理产生直接影响。因此,考虑土-结构动力相互作用对隔震结构体系隔震效果影响的研究十分必要。本文把地基土视为匀质、各向同性的黏弹性半空间,用等效双线型恢复力模型模拟铅芯橡胶支座的非线性,建立基础隔震体系单质点力学模型和运动方程。通过ANSYS软件进行数值模拟,用D-P材料考虑土的材料非线性,用接触单元模拟土与结构的接触非线性,分析土-结构动力相互作用对铅芯橡胶支座隔震效果的影响。  相似文献   

2.
本文研究土与结构相互作用(SSI)对多层及中高层基础隔震建筑地震需求及隔震效率的影响规律,隔震层采用LRB铅芯橡胶与LNR普通橡胶隔震支座组合,就我国现行《建筑抗震设计规范》(GB50011-2010)中软土场地设置隔震层问题做探讨。提出土与基础隔震结构相互作用的简化计算模型,对不同场地及隔震设计目标下的多层及中高层基础隔震结构进行时程分析。研究表明:软土场地基础隔震建筑隔震层的有效隔震效率相对于硬土场地有所下降,必须通过设置具有一定规格的LRB支座来满足隔震目标。本文给出了铅芯橡胶支座极限变形需求随建筑层高及隔震目标变化的规律。  相似文献   

3.
《震灾防御技术》2022,17(4):632-642
近年来,土-桩-隔震结构非线性动力相互作用成为结构抗震领域热点研究问题之一。首先,在回顾现有土-桩-隔震结构非线性动力相互作用研究的基础上,分析国内外学者针对土-桩-隔震结构动力相互作用采用的主要分析方法,包括理论分析法、整体时程分析法、模型试验法及能量分析法;然后,系统地总结了目前考虑土-结构相互作用的隔震结构动力反应相关研究成果;最后,分析了现有研究存在的不足及亟待解决的问题,并给出相关研究建议。  相似文献   

4.
目前中小跨径装配式组合梁桥的支座形式多采用普通板式支座,其抗震效果不够理想。为了很好的满足桥梁结构抗震设计要求,同时又具有良好的经济性,本文在已有减隔震体系的基础上,提出一种新型减隔震体系,即钢阻尼滑板支座体系,该体系具有经济性和减隔震性能良好的优点。并对一实际工程的中小跨径桥梁进行了理论验证,结果表明钢阻尼滑板支座体系减隔震效果良好,可以较好的满足桥梁结构抗震设计要求,具有广阔的运用价值。  相似文献   

5.
为开发北京地铁八王坟车辆段大平台上部空间,层间隔震技术被采用。通过非线性时程分析和模拟地震动振动台试验,研究了此层间隔震结构体系的抗震性能。研究结果表明采用隔震技术后,结构体系抗震性能得到很大提高,其地震响应满足规范要求。  相似文献   

6.
位于高烈度区且靠近断层的高层建筑结构,其相关抗震设计需要考虑较大的水平和竖向地震荷载,使得传统、单一的隔震方案难以满足规范的要求。鉴于此,针对西昌市靠近断层的某筒体结构提出了一种叠层橡胶支座加黏滞阻尼器的组合隔震设计方案,即在隔震层布置黏滞阻尼器以控制结构在罕遇地震作用下的位移。与此同时,为了满足结构的功能使用要求,将外部框架以及内部核心筒(除去电梯井)在零标高处进行隔震设计,而电梯井则下沉至基础底部加以隔震。通过弹塑性时程分析,研究结果表明:相比非隔震结构,采取组合隔震设计的框筒结构在设防地震作用下,其X、Y向的最大层间剪力分别减小72.37%和79.63%,水平向减震系数为0.35,满足抗震措施降低一度的要求;在罕遇地震作用下,其X、Y向的最大层间位移角分别减少81.06%和76.38%,隔震橡胶支座的拉压应力均在规范允许范围内,且铅芯橡胶支座与黏滞阻尼器均进入耗能阶段,滞回曲线较为饱满,进而验证了该组合隔震设计的合理性。  相似文献   

7.
为考虑土与结构相互作用(SSI)对15×104m3大型立式储罐基础隔震效应的影响,采用弹簧-阻尼系统模拟地基土和隔震层,罐壁及底板采用壳单元,流体采用势流体单元,利用ADINA建立15×104m3储罐有限元模型,在峰值加速度0.2g El Centro波地震激励下,应用Newmark数值积分方法进行地震响应分析,结果表明:考虑SSI效应时,非隔震储罐的地震响应有所减小,而基础隔震时地震响应有放大效应。储罐抗震减震设计时,中软地基土上储罐从结构设计安全角度来说需要考虑土与结构的相互作用。  相似文献   

8.
铅芯橡胶支座隔震钢框架结构体系振动台模型试验研究   总被引:1,自引:1,他引:1  
设计并完成了铅芯橡胶支座隔震钢框架结构体系的振动台模型试验,研究刚性地基上隔震结构体系的动力特性和隔震效果,为进一步开展考虑土-结构相互作用的隔震结构体系振动台模型试验提供数据对比。试验结果表明:刚性地基上隔震结构体系具有良好的隔震性能,隔震效果显著,输入地震动的频谱特性和加速度峰值对隔震结构的隔震效率影响较大。  相似文献   

9.
在高烈度区将隔震技术引入高层剪力墙结构中,其目的是在小震烈度下减小上部结构的地震作用力,从而使上部结构层间位移差能够满足抗震规范和设计的要求。在隔震结构体系简化分析模型的基础上,提出了高层剪力墙结构隔震体系的简化计算分析模型。同时用通用有限元分析程序和隔震技术方法分别计算剪力墙结构隔震体系实例的地震反应效应并作对比分析,计算结果表明:所建立的剪力墙结构隔震体系简化分析模型是可靠实用的,可用于高层剪力墙结构隔震体系的理论定性分析和初步设计中的参数拟定,推动隔震体系在高层剪力墙结构中的应用和发展。  相似文献   

10.
考虑SSI效应的立式储罐水平基础隔震研究   总被引:2,自引:0,他引:2  
立式储罐在地震作用下破坏严重,损失较大.为了降低立式储罐在水平地震激励下的地震响应,考虑土与结构相互作用对储罐地震响应的影响,将立式储罐基础隔震体系简化为3质点5自由度力学模型.依据Hamilton原理建立立式储罐基础隔震体系的控制方程,给出了立式储罐基底剪力、倾覆弯矩、晃动波高和应力的理论表达.选取150000m3储罐,采用wilson-θ法对其进行了地震动响应分析.结果表明:储罐基础隔震体系能够降低储罐的地震响应;为获得理想的地震响应,场地、隔震周期和阻尼比存在优化取值区间;储罐抗震与减震设计要视设计安全需要来决定是否考虑土与结构的相互作用.  相似文献   

11.
The seismic response of light secondary systems in a building is dependent on the response of the primary structural system to the seismic ground motion with the result that very high accelerations can be induced in such secondary systems. This response can be reduced through the use of aseismic base isolation which is a design strategy whereby the entire building can be decoupled from the damaging horizontal components of seismic ground motion by the use of some form of isolation system. The paper presents a theoretical analysis of the response of light equipment in isolated structures and a parallel experimental programme both of which show that the use of base isolation can not only attenuate the response of the primary structural system but also reduce the response of secondary systems. Thus, the design of equipment and piping in a base-isolated building is very much simpler than that for a conventionally founded structure: inelastic response and equipment-structure interaction need not be considered and multiple support response analysis is rendered unnecessary. Although an isolation system with linear elastic bearings can reduce the acceleration of the structure, it may be accompanied by large relative displacements between the structure and the ground. A system using lead-rubber hysteretic bearings, having a force-displacement relation which is approximately a bilinear loop, can reduce these displacements. A parallel experimental programme was carried out to investigate the response of light equipment in structures isolated using lead-rubber bearings. The experimental results show that these bearings can dissipate energy and limit the displacement and acceleration of the structure but are less effective in reducing the accelerations in the internal equipment. The results of both the analysis and the tests show that base isolation is a very effective method for the seismic protection of light equipment items in buildings.  相似文献   

12.
为研究核电站结构-设备相互作用的地震反应,针对某高温气冷堆核电站反应堆进行结构与设备相互作用的地震反应分析研究,通过对考虑与不考虑结构-设备相互作用的模型进行对比,开展模态分析、设计基准地震动下和超设计基准地震动下的动力特性分析以及楼层反应谱分析,结果表明:考虑剪力墙主体结构与设备的相互作用后,结构的地震反应减小,层间剪力最大减小60%,水平向楼层反应谱峰值减小为不考虑相互作用时的40%,提高了结构与设备的安全性,并为设备抗震设计提供依据。但竖向楼层反应谱在结构竖向周期附近有放大作用,建议在设备抗震设计时予以注意。  相似文献   

13.
伴随着我国城市建设的快速发展,变电站地面景观建筑防震设计有着举足轻重的作用,为了满足不同建筑功能的抗震要求,提出基于变电站地面建筑防震设计方法。将剪力墙与框架结构有效的结合起来,通过分析框架剪力墙建筑结构的优缺点,给出变电站地面建筑防震设计原理和防震控制指标,根据各项指标分析框架剪力墙在防震设计中的要点,以达到变电站地面景观建筑的刚度要求,实现防震设计。实验结果表明,所提出基于变电站地面建筑防震设计方法可有效提高整个结构的抗震能力,并且能够有效降低成本开销。  相似文献   

14.
根据工业结构-设备体系动力相互作用特点,本文提出了利用主,子结构边界耦合矩阵变换的一般建模方法。通过本文作者完成的六种不同类型的结构-设备复合模型体系在我维地震动作用下振动台试验,总结了工业结构-设备动力相互作用的一般规律和特点。  相似文献   

15.
不对称大底板多塔楼隔震结构的地震响应分析   总被引:1,自引:0,他引:1  
党育  杜永峰 《地震学刊》2012,(4):452-458
针对不对称大底板多塔楼隔震结构体系,通过建立地震响应的动力分析简化模型,推导出不对称大底板多塔楼隔震结构体系地震作用下的运动方程。对一实际的不对称大底板多塔楼隔震结构进行地震响应仿真分析,探讨塔楼质量偏心率和塔楼质量比对结构周期比、位移比和层剪力比的影响。结果显示,不对称大底板多塔楼隔震结构扭转角主要由隔震层产生;与不隔震结构相比,不对称大底板多塔楼隔震体系的扭转角减小,可取得较好的减震效果;塔楼与底板的位置分布和质量分布会影响体系的扭转效应和减震效果,应尽量使塔楼的质心与底板质心重合,塔楼质量分布均匀,以减小结构的扭转效应,提高减震效果。  相似文献   

16.
Vibration isolation is well recognized as an effective mitigation strategy for acceleration‐sensitive equipment subjected to earthquake. In the present paper, an equipment isolation system with nonlinear hysteretic behaviour is proposed and a methodology for the optimal design is developed. An integrable constitutive model, derived from the mathematical Duhem hysteresis operator, is adopted for the isolation system. The optimization procedure is defined through a dual‐criteria approach that involves a transmissibility criterion combined with an energy performance criterion: the former consists in limiting the absolute acceleration of the isolated equipment below an allowable threshold value; the latter, in maximizing the ratio between the energy dissipation due to hysteresis and the input energy to reduce the isolator displacements. The seismic effectiveness of the nonlinear hysteretic isolation system is numerically investigated under natural accelerograms with different frequency content and increasing levels of excitation. Both ground‐mounted and floor‐mounted equipment items are considered in the analyses; in the second case, the dynamic interaction between the equipment and its supporting structure is taken into account in the design of the isolation system, and its effects on the isolation performance and the structural response are discussed. Comparisons in terms of effectiveness and robustness with a linear isolation system with viscoelastic behaviour are eventually provided. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

17.
Shear building representations of seismically isolated buildings   总被引:2,自引:0,他引:2  
Seismic isolation, with its capability of reducing floor accelerations and interstory drifts simultaneously, is recognized as an earthquake resistant design method that protects contents of a building along with the building itself. In research studies, superstructures of seismically isolated buildings are commonly modeled as idealized shear buildings. Shear building representation corresponds to an idealized structure where the beams are infinitely stiff in flexure and axially inextensible; columns are axially inextensible; and rigid floors are supported on these columns. Although it is more convenient to model and analyze a shear building, such an idealization may influence the seismic responses of seismically isolated buildings. This study presents a comparison of the seismic performances of seismically isolated buildings with superstructures modeled as shear buildings to those with full three dimensional superstructures. Both linear and nonlinear base isolation systems with different isolation periods and superstructures with different number of stories are considered.  相似文献   

18.
Recently, several new optimum loading patterns have been proposed by researchers for fixed‐base systems while their adequacy for soil–structure systems has not been evaluated yet. Through intensive dynamic analyses of multistory shear‐building models with soil–structure interaction subjected to a group of 21 artificial earthquakes adjusted to soft soil design spectrum, the adequacy of these optimum patterns is investigated. It is concluded that using these patterns the structures generally achieve near optimum performance in some range of periods. However, their efficiency reduces as soil flexibility increases especially when soil–structure interaction effects are significant. In the present paper, using the uniform distribution of damage over the height of structures, as the criterion, an optimization algorithm for seismic design of elastic soil–structure systems is developed. The effects of fundamental period, number of stories, earthquake excitation, soil flexibility, building aspect ratio, damping ratio and damping model on optimum distribution pattern are investigated. On the basis of 30,240 optimum load patterns derived from numerical simulations and nonlinear statistical regression analyses, a new lateral load pattern for elastic soil–structure systems is proposed. It is a function of the fundamental period of the structure, soil flexibility and structural slenderness ratio. It is shown that the seismic performance of such a structure is superior to those designed by code‐compliant or recently proposed patterns by researchers for fixed‐base structures. Using the proposed load pattern in this study, the designed structures experience up to 40% less structural weight as compared with the code‐compliant or optimum patterns developed based on fixed‐base structures. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

19.
An analytical and closed-form frequency response of equipment mounted on multistorey buildings subjected to horizontal ground motion is proposed. In this study, the dynamics of the equipment and the building is expressed as a state-flow graph model, in which the interaction effect between the equipment and the building is considered. Based on the graph model, the analytical results for the frequency response of the acceleration of the equipment and the internal force in the support are derived. One of the advantages of this method is that the closed-form solutions of the frequency response expressed by polynomial form will be easily examined by analytical and numerical computations without complex operation. Moreover, the dynamic of the primary and secondary systems and their dynamic interaction are expressed separately in the derived formula. Thus most of the items in the formula need not be computed repeatedly for different supports of the equipment in design. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

20.
本文建立了用ER/MR智能阻尼器耦联的带裙房高层建筑结构地震反应半主动控制的设计计算方法,文中,在导出ER/MR智能阻尼器力学模型的基础上,建立了ER/MR智能阻尼器耦联的带裙房层建筑结构地震反应的基本方程,并根据瞬时最优主动控制的原则,提出了ER/MR智能阻尼器耦联的带裙房高层建筑地震反应半主动控制的基于最优主动控制位移的“开关-耗能”半主动控制策略,应用本文方法对主楼20层,裙房5层的计算结构;受控地震反应的模拟计算结构表明,耦联主楼和裙房的半主动的ER/MR智能阻尼器可有效地抑制带裙房高层建筑结构地震反应的鞭梢效应,并可均匀地减小结构各层的震反应,是一种简单,方便和有效的智能控制装置。  相似文献   

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