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1.
多层住宅砖房的地震易损性分析   总被引:5,自引:2,他引:5  
本文采用概率方法借助于拉丁超立方采样技术和非线性地震反应过程分析对多层住宅砖房的地震易损性进行分析。其分析样本是根据多层住宅砖房目前常用设计参数值的范围选定参数的代表值,并由这些代表值构成的;分析中考虑了地震荷载、结构反应和结构承载力的不确定性。易损性曲线分别对五个不同结构破坏程度的极限状态给出。  相似文献   

2.
本文首先在文献[5]给出的一组代表性多层住宅砖房的地震易损性曲线的基础上,对多层住宅 砖房的抗震可靠度进行研究,然后通过基于造价-期望地震损失的决策分析,求得所选8度地区的最优设防烈度,并给出了与最优设防烈度相应的多层住宅砖房的抗震可靠度指标。  相似文献   

3.
本文系统地总结了近几十年来结构地震易损性分析及地震破坏损失预测的发展 ,指出了建筑物地震易损性分析存在的一些重要问题 ,如缺乏震害经验的建筑物地震易损性估计、采用地震动参数进行建筑物地震易损性估计等问题。本文重点研究了理论计算的易损性估计方法 ,给出了对于不同地震动建筑物出现或超越不同状态的概率 ,将多层砖房的理论易损性估计结果同实际震害资料进行了对比 ,并对经正规设计但缺乏震害经验的高层建筑地震易损性进行了估计。另外 ,本文也着重研究了以地震动峰值加速度及反应谱作为地震动输入参数时的结构地震易损性分析方法…  相似文献   

4.
历次地震震害表明,底框砌体结构在遭遇大地震时破坏严重。本文比较了《GBJ11-89建筑抗震设计规范》和《GB50011-2001建筑抗震设计规范》中关于该类结构的抗震设计要求。参考某地一个实际底框砌体结构建筑设计资料,分别按上述两版本规范设计了2个具有代表性的底框砌体结构。采用层间剪切模型基于IDA方法对结构进行了地震易损性分析,对比分析结果表明:按两版本规范设计的底框砌体结构的破坏均出现在过渡层;在设防地震作用下,按《89规范》设计的结构达到中等破坏的概率最大,使用功能受到影响,按《01规范》设计的结构达到轻微破坏状态的概率最大,使用功能基本无影响;在罕遇地震作用下,按《01规范》设计的结构发生严重破坏和毁坏的概率比按《89规范》设计的结构明显降低,抗震能力明显提高。本文提供的结果可丰富底框砌体结构地震易损性数据,为区域地震风险评估、震害预测等研究提供更加精细的易损性模型。  相似文献   

5.
通过对多层砖房的普查和抽样调查取得的原始资料,用多层砖房震害预测方法和软件进行易损性分析,给出重要房屋单体震害预测结果和群体房屋的易损性矩阵.  相似文献   

6.
利用多层砌体房屋震害预测专家系统,对山东潍坊地区182栋多层砖房逐栋进行了单体房屋的震害预测,在此基础上,统计分析了该地区多层砖房的地震易损性特征,并进行了初步震害预测研究,给出了该类房屋的易损性矩阵,各破坏等级的损失参数矩阵和对应不同地震烈度的相对损失预测,为进一步开展震害预测和采取地对性的防震减灾对策提供了科学依据。  相似文献   

7.
为进一步评估隔震曲线梁桥在地震激励下的抗震性能,从地震易损性角度出发并兼顾考虑地震激励方向对其易损性的影响。利用APDL建立采用板式橡胶支座的隔震曲线梁桥有限元模型,从PEER中选取同一地震事件中的近断层地震动,按规范规定比例输入水平双向地震动进行非线性动力时程分析,结合地震响应与损伤指标计算得到各构件地震易损性曲线;考虑地震激励方向的变化,通过MATLAB编程绘制得到桥梁结构构件(桥墩与支座)以及整体系统的地震易损性曲面,分析探讨地震激励方向对隔震曲线梁桥易损性的影响。结果表明:不同极限状态下各桥墩切向损伤条件概率明显大于其径向,各支座的切向与径向易损性相差不大,但仍是各支座的切向易损性略大于径向易损性;桥梁各构件(桥墩与支座)切向易损性对地震激励方向均表现出很强依赖性,而径向易损性对其的依赖性相对较弱,且伴随损伤等级的提高,构件易损性对地震激励方向更加敏感;桥梁整体系统易损性对地震激励方向的变化不太敏感,且因各构件响应之间的相关性较高,其系统易损性更接近于易损性最大的构件——易损性下限;当进行隔震曲线梁桥抗震性能评估时,应考虑不同地震激励方向对其地震易损性的影响,从而使得易损性分析...  相似文献   

8.
常业军  吴明友 《山西地震》2001,(1):23-25,29
历次地震的震害表明,地震造成的经济损失和人员伤亡与建筑物的破坏程度有很大的关系,对建筑物的抗震性能进行分析具有十分重要的现实意义。根据“安徽省合肥市防震减灾信息系统”中合肥市中市区房屋的抗震资料,用结构易损性分析方法对各类房屋的抗震性能进行了分析,得出按Ⅶ度设防的建筑物遭遇Ⅶ度地震时,多层砌体房屋和底层框架砖房以轻微破坏和中等破坏为主,多层钢筋混凝土框架房屋基本完好为主的结论。  相似文献   

9.
随着城市建设的发展和人口密度的增大,地震对人类的危害变得越来越大,做好建筑物震害预测工作具有非常重要的现实意义,根据“合肥市防震减灾信息系统”中合肥市中市区底层框架砖房的抗震调查资料,用结构易损性分析方法对该类房屋的未来震害进行了预测分析。  相似文献   

10.
针对处于地震基本烈度为 度区的有些设计人员对多层砖房的抗震设防重视不够 ,超越规范的使用范围等问题 ,结合设计实践 ,对 度区多层砖房的有关抗震设防问题作了探讨 ,并对如何加强 度区的抗震设防问题提出了几点认识  相似文献   

11.
Irregular reinforced concrete (RC) buildings constitute a significant portion of the existing housing stock. A common type of irregularity is in the form of discontinuity in the vertical framing elements, which can exacerbate their seismic vulnerability. The design guidelines available in seismic design codes essentially cater to only regular buildings, and the safety of such buildings, even when the other guidelines of the codes are followed, is doubtful. This article evaluates the vulnerability of RC frame buildings with discontinuity in columns designed for modern seismic codes, in the form of seismic collapse capacity, collapse resistance against maximum earthquake demand level, and failure mechanism. The adequacy and limitations of the provisions of the seismic design codes are evaluated for such buildings. Analysis results show that the sequential analysis of buildings considering the construction staged effects, considerably affects the design and hence the collapse failure mechanism of even low- and mid-rise buildings. The results also underline the importance of strong column–weak beam design in the seismic performance of the floating column buildings. The vertical component of ground motion is also observed to be relatively more crucial in floating column buildings.  相似文献   

12.
Following several damaging earthquakes in China,research has been devoted to find the causes of the collapse of reinforced concrete(RC) building sand studying the vulnerability of existing buildings.The Chinese Code for Seismic Design of Buildings(CCSDB) has evolved over time,however,there is still reported earthquake induced damage of newly designed RC buildings.Thus,to investigate modern Chinese seismic design code,three low-,mid-and high-rise RC frames were designed according to the 2010 CCSDB and the corresponding vulnerability curves were derived by computing a probabilistic seismic demand model(PSDM).The PSDM was computed by carrying out nonlinear time history analysis using thirty ground motions obtained from the Pacific Earthquake Engineering Research Center.Finally,the PSDM was used to generate fragility curves for immediate occupancy,significant damage,and collapse prevention damage levels.Results of the vulnerability assessment indicate that the seismic demands on the three different frames designed according to the 2010 CCSDB meet the seismic requirements and are almost in the same safety level.  相似文献   

13.
设计1个20层SRC框架核心筒结构模型,考虑地震的随机性和结构材料的不确定性,采用拉丁超立方体抽取结构-地震动样本,之后对其进行增量动力分析(IDA),以第1周期谱加速度为强度指标,最大层间位移角为结构需求,定义4个性能水平,研究该结构的易损性。通过引入群体结构震害评估中易损性指数的概念,计算多遇、设防和罕遇地震下的易损性指数。结果表明:以易损性指数作为评价指标,该结构在多遇地震作用下,处于轻微破坏状态;在设防地震作用下,处于中等破坏状态;在罕遇地震作用下,结构处于严重破坏状态。可认为依据我国抗震规范设计的SRC框架核心筒结构能够满足"小震不坏"、"中震可修"和"大震不倒"的抗震设防目标。  相似文献   

14.
The collapse of wood buildings was one of the main contributors to the heavy death toll and economic losses during the 1995 Hyogo‐ken Nanbu (Kobe) earthquake in Japan. In California, half of the property loss from the 1994 Northridge earthquake was attributed to wood construction. Based on damage observed in recent earthquakes, the seismic vulnerability of existing wood buildings under maximum credible seismic events is uncertain. The main objective of this study is to quantify the seismic collapse fragilities and collapse mechanisms of a two‐story townhouse and three‐story woodframe apartment building through numerical analyses. Three construction quality variants (poor, typical and superior) were considered for each building in order to assess the effects of construction qualities on seismic collapse fragilities. The buildings were also re‐designed according to the 2006 edition of the International Building Code to quantify the seismic fragilities of modern woodframe construction. The results obtained suggest that the construction quality, excitation direction and wall finish materials can influence significantly the collapse fragilities of woodframe buildings. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

15.
余震的发生会造成结构的累积损伤,不同类型的主余震序列地震动对结构的影响有所差异。鉴于此,以主震卓越周期小于或接近余震卓越周期为基本原则,确定了最不利主余震序列地震动。选择4层RC框架结构为研究对象,在增量动力分析的基础上,定义了4个性能水平,以此来研究该结构的易损性。依据破坏状态概率和震害指数,得到7度多遇、7度设防和7度罕遇地震的易损性指数。研究结果表明:依据我国规范设计的RC框架结构的4个性能水平的量化指标限值依次为1/495、1/263、1/108和1/45,余震的出现会加剧结构的破坏状态。当以易损性指数作为评价指标时,可认为该结构能够满足小震不坏、中震可修和大震不倒的抗震设防目标。  相似文献   

16.
A comprehensive study is presented for empirical seismic vulnerability assessment of typical structural types, representative of the building stock of Southern Europe, based on a large set of damage statistics. The observational database was obtained from post-earthquake surveys carried out in the area struck by the September 7, 1999 Athens earthquake. After analysis of the collected observational data, a unified damage database has been created which comprises 180,945 damaged buildings from/after the near-field area of the earthquake. The damaged buildings are classified in specific structural types, according to the materials, seismic codes and construction techniques in Southern Europe. The seismic demand is described in terms of both the regional macroseismic intensity and the ratio αg/ao, where αg is the maximum peak ground acceleration (PGA) of the earthquake event and ao is the unique value PGA that characterizes each municipality shown on the Greek hazard map. The relative and cumulative frequencies of the different damage states for each structural type and each intensity level are computed in terms of damage ratio. Damage probability matrices (DPMs) and vulnerability curves are obtained for specific structural types. A comparison analysis is fulfilled between the produced and the existing vulnerability models.  相似文献   

17.
城市典型建筑的地震损失预测方法Ⅰ: 结构易损性分析   总被引:1,自引:1,他引:1  
地震作用下结构的易损性分析是地震灾害损失预测方法的重要组成部分。本文针对多层砌体房屋结构、排架结构和多层钢筋混凝土结构等3种城市典型建筑,首先给出了该类单体建筑的地震结构易损性分析方法,然后对群体建筑的地震易损性分析方法,以及群体建筑的易损性分类方法进行了探讨,为城市典型建筑的地震灾害损失预测和评估提供参考,并为宁波市抗震防灾规划的地震损失预测提供基础。  相似文献   

18.
李文俊    曲哲    孙海林  熊政辉   《世界地震工程》2021,(4):109-121
房屋建筑的地震易损性是地震损失评估和地震巨灾风险模型的基础。作为房屋建筑的重要组成部分,各类非结构构件的损失在现有的易损性模型中并未得到足够重视。本文以一栋典型钢筋混凝土框架结构教学楼为对象,通过将房屋建筑中的各类构件划分为具有不同地震损伤特性和损失后果的易损性组,考察建筑内的损失分布和非结构损失对房屋建筑地震易损性的影响。分析结果表明:由于许多非结构构件在中小地震作用下即可能发生较严重的破坏,房屋建筑在中小地震下的易损性主要受非结构损失控制;随着地震动强度等级的不断提高,结构损伤渐趋严重,结构损失对整体建筑易损性的影响不断增大;在结构进入震后不可修状态之前,建筑不同楼层的损失分布是评估建筑地震损失时不可忽略的因素。  相似文献   

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