共查询到19条相似文献,搜索用时 156 毫秒
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为研究AP1000核电厂基底隔震性能,设计了缩尺比为1/40的AP1000核电厂模型结构,进行了AP1000核电厂模型基底隔震振动台试验。试验中采用铅芯橡胶隔震支座进行隔震,并选取RG1.60人工波、El Centro波和Kobe波作为地震动输入。本文从加速度响应、楼层加速度反应谱、加速度峰值放大系数、减震率等方面对隔震与非隔震核电厂结构的地震响应特性进行了研究。试验结果表明:隔震能明显减小上部结构水平向加速度响应和加速度反应谱峰值,而在隔震频率处隔震模型加速度反应谱有所增加;隔震模型由于摇摆效应在隔震频率处的水平向楼层加速度反应谱随楼层高度的升高先减小后增大;在三向输入地震动作用下,隔震和非隔震AP1000模型各楼层在竖向基频附近的竖向加速度反应谱较竖向输入的地震动放大较为明显。 相似文献
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《地震工程与工程振动》2016,(6)
为了降低强震作用下立式储罐的地震响应,根据机械动力学原理设计了滚动隔震装置,同时,根据相似比理论设计了原型为1 000 m3储罐的1∶4缩尺滚动隔震储罐模型。选取3条位移波作为地震动输入,对滚动隔震储罐模型进行地震模拟振动台试验。试验结果表明:滚动隔震后结构体系的基本周期被拉大,避开了地震动的卓越频率;滚动隔震后沿罐壁高度方向加速度峰值降低明显,减震率最高可达75%;罐壁环向应力在储罐的底部和中上部最大,轴向应力在储罐的底部最大,隔震后均有较大降低,隔震效果明显;不同地震动的隔震效果不同,El Centro波的隔震效果最好,同种地震动作用下随着地震能量的加大,隔震效果降低;滚动隔震不能有效降低晃动波高。建议实际工程应采取控制晃动波高的措施。 相似文献
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相对于我国各行业抗震规范反应谱下降段呈现的多样性,欧美规范谱基于理想化反应谱模型,其长周期下降段的规定形式统一,且由第二特征周期TD确定.基于理想化反应谱模型,TD的确定与位移谱形态、"结构所需周期范围"等概念相关.基于我国区划图研究中大量采用NGA数据库的地震动记录及以地震动峰值加速度分区值表达地震强度的现状,以理想... 相似文献
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针对广西特殊的覆盖型岩溶区的场地地质条件,通过收集区内的393个地震工程地质钻孔,利用大量的剪切波速及土工测试资料,建立了土层地震动反应分析模型,采用一维波动的等效线性化方法,对Ⅱ1、Ⅱ2和Ⅱ3三个亚类分别计算得到了地表峰值加速度及相关反应谱,并拟合得到了规准化反应谱,定量分析了广西覆盖型岩溶区Ⅱ类场地地震动的效应。结果表明,三个亚类场地动力放大系数均较大,场地对反应谱平台值的放大作用与对峰值的放大作用并不一致;Ⅱ1、Ⅱ2和Ⅱ3峰值加速度放大倍数分别为1.17、1.31、1.26,而平台值的放大倍数分别为1.49、1.52、1.38;反应谱特征周期分别为0.26s、0.33s和0.39s,反应谱下降段受控于输入反应谱下降段;同时给出了场地反应谱平台值、特征周期和衰减系数的推荐值。上述结果可为确定广西覆盖型岩溶区设计地震动参数提供参考。 相似文献
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地震动记录的合理选取对预测结构响应有着重要的作用。本文通过对风雨操场建筑混合结构的抗震性能分析,提出了一种对水平及竖向地震动频谱特性均进行控制的改进选波方法。为了评价不同选波方法的可靠性和有效性,根据初选条件选取55组三向地震动记录,并以55组地震动的统计反应谱作为目标反应谱,以55组记录计算的结构响应均值作为"预测值",通过与单周期点和双频段选波方法的计算结果对比,分析表明:改进选波方法计算的结构基底剪力、柱顶位移、支座位移和网架竖向位移的相对误差和变异系数均小于前两种选波方法,其计算结果更加可靠有效。 相似文献
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村镇隔震砌体结构振动台试验方案设计研究 总被引:1,自引:1,他引:0
为使铅芯橡胶支座隔震技术应用于村镇砌体结构,将隔震层设置于地坪以上,本文给出了隔震构造的具体做法。选取典型村镇2层未设构造柱的砖砌体结构房屋为试验原型,按1:2缩尺,设计有隔震层和无隔震层的振动台对比试验。首先采用反应谱分析方法,对隔震和非隔震结构分别选取三条地震波,然后通过数值分析,研究隔震和非隔震结构在输入不同地震波时的地震反应规律,根据数值模拟的分析结果设计结构振动台试验中的传感器布置和加载方案。本文设计的砌体隔震振动台试验方案已试验成功,可为振动台试验设计和研究提供参考。 相似文献
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研究不同高径比橡胶基底隔震储罐的频率特征,探讨储罐隔震体系3种不同振动频率随支座隔震频率变化规律.分析在不同频谱特性地震波激励下,隔震体系各振型组分对地震响应(基底剪力、支座位移和晃动波高)的影响,以及响应峰值随支座隔震频率和阻尼比的变化特点.研究表明,基底剪力峰值与场地地震波频谱特性密切相关.支座隔震频率不能完全反映减震机理的实质,隔震振型频率是影响基底剪力的重要参数.在软弱场地上隔震储罐的减震效率低,有效隔震频率范围窄.晃动波高峰值是储罐自振特性和地震波频谱特性等多种因素导致的结果,隔震系统设计时需特别考虑晃动波高增大的影响. 相似文献
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针对西昌市某高层钢筋混凝土剪力墙结构进行了橡胶支座隔震设计和抗震性能分析。西昌市抗震设防烈度为9度,历史上曾发生过7.5级地震。该工程场址地质构造较复杂,东侧区域有一条隐伏断层,属则木河断裂带次生断层。则木河断裂带是川西主要发震断裂带之一,至今仍是一条活动较强烈的大断裂。按照《建筑抗震设计规范》(2016版)要求,取近场影响系数1.5,以提高结构的安全度;选取Ⅱ类场地5条天然地震波和2条人工模拟地震波,共计七条符合规范要求的地震波;基于SAP2000软件对结构进行了隔震设计,中震作用下结构层间剪力和倾覆弯矩减震系数最大值为0.24,比非隔震结构地震响应减小显著,罕遇地震下隔震支座的面压、水平位移能够满足规范要求。采用ABAQUS对结构进行了罕遇地震动力弹塑性时程分析,结果表明结构能够满足"大震不倒"的抗震设防目标。 相似文献
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Effect of isolation on fragility curves of highway bridges based on simplified approach 总被引:1,自引:0,他引:1
The trend of isolating highway bridges is on the rise after the recent large earthquakes in Japan, the United States, and other countries. Recent investigation shows that isolated systems perform well against seismic forces as the substructures of such systems experience less lateral forces due to energy dissipation of the isolation device. Hence, it is anticipated that there might be an effect on fragility curves of highway bridges due to isolation. In this study, 30 isolated bridge models were considered (and they were designed according to the seismic design code of highway bridges in Japan) to have a wider range of the variation of structural parameters, e.g. pier heights, weights, and over-strength ratio of structures. Then, fragility curves were developed by following a simplified procedure using 250 strong motion records, which were selected from 5 earthquake events that occurred in Japan, the USA, and Taiwan. It is observed that the level of damage probability for the isolated system is less than that of the non-isolated one for a lower level of pier height. However, having the same over-strength ratio of the structures, the level of damage probability for the isolated system is found to be higher for a higher level of pier height compared to the one of the non-isolated system. The proposed simple approach may conveniently be used in constructing fragility curves for a class of isolated bridge structures in Japan that have similar characteristics. 相似文献
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A mass reduction concept for seismic hazard mitigation is investigated herein. The proposed method is implemented through floating slabs, ie, slabs that have been seismically isolated from the skeleton of the structure. The investigation is based on time history analyses of MDOF models under scaled strong-motion seismic records complying with an EC8 spectrum. The purpose of these slabs is twofold; for selected short isolation periods, they act as a mass-damping system for the overall response of the structure, employing significantly more mass than traditional TMDs, while for longer isolation periods they provide seismic protection on their contents while effectively reducing the seismic mass of the structure. In the latter case, it is found that the response of the skeleton can be evaluated accurately from a corresponding reduced-mass model. The proposed design method does not necessarily aim at replacing existing seismic design approaches; it rather provides design versatility in the hands of the practicing engineers. 相似文献
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本文选取2021年5月22日青海玛多县发生的M7.4地震的大武地震台实测加速度及课题组用经验格林函数法模拟的野马滩大桥处的加速度,并将二者的绝对加速度反应谱与中国地震动参数区划图(GB18306—2015)给出的“双参调整”设计反应谱进行对比分析,得到地震波观测值和模拟值对当地抗震设防结构的影响程度应视结构形式而定.然后将两条地震波分别输入到某11层剪力墙结构,用PKPM的SATWE模块进行多遇地震、设防地震下的线弹性分析,并用PUSH模块进行罕遇地震下的静力弹塑性分析.该剪力墙结构在两地区不同地震波作用时,均达到了“小震不坏,中震可修,大震不倒”的设防目标,其抗震性能目标达到C级.结论可为房屋建筑的抗震设防及震后应急响应提供很重要的参考. 相似文献
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This paper presents a new way of selecting real input ground motions for seismic design and analysis of structures based on a comprehensive method for estimating the damage potential of ground motions, which takes into consideration of various ground motion parameters and structural seismic damage criteria in terms of strength, deformation, hysteretic energy and dual damage of Park & Ang damage index. The proposed comprehensive method fully involves the effects of the intensity, frequency content and duration of ground motions and the dynamic characteristics of structures. Then, the concept of the most unfavourable real seismic design ground motion is introduced. Based on the concept, the most unfavourable real seismic design ground motions for rock, stiff soil, medium soil and soft soil site conditions are selected in terms of three typical period ranges of structures. The selected real strong motion records are suitable for seismic analysis of important structures whose failure or collapse will be avoided at a higher level of confidence during the strong earthquake, as they can cause the greatest damage to structures and thereby result in the highest damage potential from an extended real ground motion database for a given site. In addition, this paper also presents the real input design ground motions with medium damage potential, which can be used for the seismic analysis of structures located at the area with low and moderate seismicity. The most unfavourable real seismic design ground motions are verified by analysing the seismic response of structures. It is concluded that the most unfavourable real seismic design ground motion approach can select the real ground motions that can result in the highest damage potential for a given structure and site condition, and the real ground motions can be mainly used for structures whose failure or collapse will be avoided at a higher level of confidence during the strong earthquake. Copyright © 2007 John Wiley & Sons, Ltd. 相似文献