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1.
目前的既有钢混结构地震损伤研究没有同时考虑不同抗震设计规范差异和耐久性两个因素对结构抗震性能的影响,且损伤指标较简单,在动力损伤分析中也存在局限。基于云模型的特点,提出了包括弹塑性耗能差率、刚度损伤指数、层间位移角和顶点位移角的多元结构损伤状态综合评估方法,能够同时考虑结构各损伤指数的随机性和模糊性。考虑不同版本抗震设计规范造成的结构性能差异和耐久性下降对结构性能的影响,设计3个典型五层钢混框架结构,进行增量动力分析,验证损伤评估方法的准确性。结果表明:随着抗震规范版本的更新,结构的损伤程度有适当减轻;同一结构的损伤程度因混凝土碳化作用先减轻后加重;采用弹塑性耗能差率表征既有结构的地震损伤效果优于刚度损伤指数;基于多指标云模型损伤评估方法获得的云模型综合隶属度和综合损伤值能够更加细化和精确地描述结构损伤状态。  相似文献   

2.
现阶段针对建筑复合节能墙体的抗震性能评估主要根据强震发生后墙体损毁程度实现,评估结果精确度低,因此构建强震环境下建筑复合节能墙体抗震性能评估模型,根据复合节能墙体构件的强度和刚度退化系数,描述强震环境下建筑复合节能墙体损伤情况;在此基础上,采用动态增量分析法(IDA)在不同强度地震动输入条件下,根据建筑复合节能墙体结构响应参数和地震动强度参数构建2种参数的关系曲线——IDA曲线,利用R-O单一函数曲线规则化IDA曲线,获取IDA概率分位曲线,并将50%概率分位曲线斜率用于描述墙体结构损伤的变化,该曲线斜率则为墙体结构损伤指数,依据该指数准确评估强震环境下建筑复合节能墙体抗震性能。实验结果表明,所构建模型可准确分析不同峰值地面加速度时建筑复合节能墙体结构的位移变化,且模型随地震等级不断提升,评估建筑复合节能墙体抗震性结果精度逐渐提高,是一种适合强震环境的建筑复合节能墙体抗震评估模型。  相似文献   

3.
建筑抗震性能评估是基于性能的抗震设计的关键流程之一,要求构件性能点与构件损伤相关联。然而现有文献中对于构件损伤性能点的定义各有不同,且由于试验数据量过少,缺少基于试验数据的验证。为了促进建筑抗震性能评估的有效开展,本文从国内现有文献中搜集了160个RC剪力墙构件拟静力试验数据,建立了RC剪力墙构件试验数据库,对构件试验数据进行分析,根据构件破坏现象划分了5个损伤状态。研究了高宽比、配箍特征值和水平分布钢筋配筋率等设计参数的影响。根据试验数据,修正了Park-Ang损伤指标,可以同时考虑构件循环加载中的变形和耗能,可用于判定RC剪力墙构件损伤状态。标定了对应于不同损伤状态的损伤指数区间,研究结果可用于基于构件的抗震性能评估及易损性分析。  相似文献   

4.
震后灾区工程结构进行的安全评估以确定其损伤程度,对救援行动及震后建筑加固都具有十分重要的意义。选用改进的Park-Ang损伤模型,以开源有限元程序Open SEES为平台,建立一栋6层框架结构的数值模型并进行非线性时程分析,通过计算和分析各构件的损伤指数,发现并确定结构的薄弱构件及薄弱层,可以为结构的抗震设计提供一定的指导。  相似文献   

5.
为准确评估锈蚀钢框架在地震作用下的损伤,对已有的地震损伤模型进行改进,并对框架柱的地震损伤特性进行分析。建立基于变形和能量组合的双参数损伤模型,对损伤模型中相应的参数给出具体定义和表达式,定义不同破坏等级的损伤指数范围。对3个具有不同锈蚀率的空间钢框架结构进行弹塑性时程分析,并对损伤模型的准确性进行验证。研究结果表明,该模型能够较好地描述锈蚀钢框架柱的地震损伤程度。研究结果可为该类结构构件的地震损伤评估以及基于损伤的抗震设计方法的建立提供理论依据。  相似文献   

6.
根据我国现行的建筑结构抗震规范,无论是新建建筑结构的抗震设计还是既有建筑结构的抗震评估与加固,均通过小震弹性承载力计算 抗震延性构造措施来达到"小震不坏、中震可修、大震不倒"的抗震设防目标(对于不规则且具有明显薄弱部位的建筑结构还需要进行罕遇地震作用下的弹塑性层间变形验算)。对于抗震延性构造措施不满足现行规范的既有建筑结构的评估、改建、扩建,如果仅通过小震弹性的承载力计算,显然无法达到"大震不倒"的目标。本文通过引入国际上先进的基于性能的结构抗震思想,以结构层间位移和结构构件变形作为性能目标,从定量上解决了既有钢筋混凝土建筑结构的抗震评估与加固问题。  相似文献   

7.
为研究FRP加固对装配式梁柱节点及整体框架结构抗震性能的影响,本文基于OpenSEES有限元程序,建立了某装配式梁柱节点的有限元计算模型,以相关试验为基础,比较验证了所建有限元模型的可靠性。同时选用合适的FRP约束混凝土本构关系来表征FRP对混凝土性能的提升作用,设计3种装配式梁柱节点FRP加固方案,并通过有限元数值模拟,分析比较了节点承载力、滞回曲线和位移延性的差异,考察了FRP包裹层数等因素对节点承载力的影响。随后对装配式框架结构设计了3种FRP加固方式,并选取3条地震波进行结构动力时程分析以考察结构抗震性能。结果表明:FRP环向包裹加固及纵向加固能分别有效提高节点的延性能力和承载能力;FRP加固的装配式框架结构具有更好的延性及耗能能力,能有效增强结构的整体抗震性能,为装配式结构FRP加固设计提供参考。  相似文献   

8.
阐述了预制钢筋混凝土剪力墙结构抗震性能研究的重要性和预制钢筋混凝土剪力墙结构抗震性能研究的最新进展。综述了国内外预制钢筋混凝土剪力墙结构设计规范以及设计方法的研究进展。指出常规预制装配式钢筋混凝土剪力墙结构的抗震性能较差,在地震作用下,主要靠结构构件连接处的损伤和结构构件损坏来消耗能量;无粘结后张拉预应力预制混凝土剪力墙结构,在地震作用下具有自恢复中心能力和良好的抗震能力,但该结构体系的耗能能力不足。认为在预制钢筋混凝土剪力墙结构中设置耗能减震元件,或将预制钢筋混凝土剪力墙结构设计成隔震结构,将有效提高预制钢筋混凝土剪力墙结构的抗震性能。该类预制装配式剪力墙结构的抗震性能有待于进一步研究。  相似文献   

9.
为了提高装配式钢构建筑梁柱的抗震性能,设计一种变截面交叉柔性力学模型进行截面抗震性的预应力评估。方法中采用极限承载力约束进行抗震性分析,引入抗弯刚度软化系数进行误差修正,求出钢构建筑梁柱的荷载作用力矩,通过应力评估和结构解耦性设计,实现钢构建筑梁柱的抗震性评估。构建以钢材强度、延性指标和钢框架地震易损特征为约束参量的抗震性能分析函数,建立装配式钢构建筑梁柱开裂初始预应力预测方法,实现装配式钢构建筑梁柱预应力的准确评估。试验结果表明,所提模型能够对装配式钢构建筑梁柱的应力应变关系、屈服强度以及极限承载力进行准确计算,提高配式钢构建筑梁柱的抗震性能。  相似文献   

10.
中强地震下建筑结构动力弹塑性损伤模型研究   总被引:1,自引:1,他引:0       下载免费PDF全文
抗震性能是建筑设计中的一项重要指标,需要对地震作用下的建筑结构动力弹塑性损伤情况进行分析。提出一种中强地震下建筑结构动力弹塑性损伤模型研究方法。从有效应力与Cauchy应力张量\,建筑材料损伤演化方程等方面对弹塑性损伤模型基本原理进行分析,以此为理论基础,分析建筑材料应变率与建筑结构损伤能释放率的相关关系,通过Bonora损伤模型获取失效建筑材料损伤指数,并计算整体建筑结构构件损伤指数,以建筑材料损伤指数和建筑结构构件损伤指数为依据,完成中强地震下的建筑结构动力弹塑性损伤模型构建。利用实例进行分析,地震加速度值为0.3g的情况下,该模型的建筑结构相对位移时程曲线与实际位移曲线拟合度较高,且具有较好的建筑结构动力弹塑性损伤模拟精度,表明该模型具有一定的可行性。  相似文献   

11.
As a result of rapid economic growth and urbanization in the past two decades,many tall buildings have been constructed in China Mainland,offering researchers and practitioners an excellent opportunity for research and practice in the field of structural engineering. This paper reviews progress by researchers throughout China Mainland on the seismic research of tall buildings,focusing on three major topics that impact the seismic performance of tall buildings. These are:(1) new types of steel-concrete composite structural members such as steel-concrete composite shear walls and columns,(2) earthquake resilient shear wall structures such as shear walls with replaceable structural components,self-centering shear walls and rocking walls,and(3) performance-based seismic design,including seismic performance index,performance level and design method. The paper concludes by presenting future research needs and directions in this field.  相似文献   

12.
Past earthquake experiences indicate that most buildings designed in accordance with modern seismic design codes could survive moderate‐to‐strong earthquakes; however, the financial loss due to repairing cost and the subsequent business interruption can be unacceptable. Designing building structures to meet desired performance targets has become a clear direction in future seismic design practice. As a matter of fact, the performance of buildings is affected by structural as well as non‐structural components, and involves numerous uncertainties. Therefore, appropriate probabilistic approach taking into account structural and non‐structural damages is required. This paper presents a fuzzy–random model for the performance reliability analysis of RC framed structures considering both structural and non‐structural damages. The limit state for each performance level is defined as an interval of inter‐storey drift ratios concerning, respectively, the non‐structural and structural damage with a membership function, while the relative importance of the two aspects is reflected through the use of an appropriate cost function. To illustrate the methodology, herein the non‐structural damage is represented by infill masonry walls. The probabilistic drift limits for RC components and masonry walls from the associated studies are employed to facilitate the demonstration of the proposed model in an example case study. The results are compared with those obtained using classical reliability model based on single‐threshold performance definition. The proposed model provides a good basis for incorporating different aspects into the performance assessment of a building system. Copyright © 2005 John Wiley & Sons, Ltd.  相似文献   

13.
饶力 《地震工程学报》2019,41(6):1493-1498
以往通过专家经验判断遗址公园建筑结构地震安全性时存在一定误差,可信性低,因此提出新的遗址公园建筑结构的地震安全性鉴定方法。构建材料本构模型,判断遗址公园建筑结构损伤情况;使用局部损伤指数评价模型,计算遗址公园建筑结构局部损伤指数;通过局部损伤指数获取遗址公园建筑整体结构损伤指数,以此为依据判断遗址公园建筑结构地震安全性。以古罗马遗址公园建筑结构为例,进行地震安全性分析。结果显示,当地震波幅值达到800 gal时,该遗址公园建筑结构地震安全性最差,损坏程度为高度损坏,且此方法的分析结果精度极高,可信性强。  相似文献   

14.
Performance-Based Seismic Design is now widely recognized as the pre-eminent seismic design and assessment methodology for building structures. In recognition of this, seismic codes may require that buildings achieve multiple performance objectives such as withstanding moderate, yet frequently occurring earthquakes with minimal structural and non-structural damage, while withstanding severe, but rare earthquakes without collapse and loss of life. These objectives are presumed to be satisfied by some codes if the force-based design procedures are followed. This paper investigates the efficacy of the Eurocode 8 force-based design provisions with respect to RC frame building design and expected seismic performance. Four, eight, and 16-storey moment frame buildings were designed and analyzed using the code modal response spectrum analysis provisions. Non-linear time-history analyses were subsequently performed to determine the simulated seismic response of the structures and to validate the Eurocode 8 force-based designs. The results indicate the design of flexural members in medium-to-long period structures is not significantly influenced by the choice of effective member stiffness; however, calculated interstorey drift demands are significantly affected. This finding was primarily attributed to the code’s enforcement of a minimum spectral ordinate on the design spectrum. Furthermore, design storey forces and interstorey drift demand estimates (and therefore damage), obtained by application of the code force-based design procedure varied substantially from those found through non-linear time-history analysis. Overall, the results suggest that though the Eurocode 8 may yield life-safe designs, the seismic performance of frame buildings of the same type and ductility class can be highly non-uniform.  相似文献   

15.
强震环境下带钢避难建筑抗震模型设计   总被引:4,自引:4,他引:0       下载免费PDF全文
避难建筑通常采用置换混凝土方法抗震,建筑对高强度地震的抗震性能差。因此提出高强度地震下带钢避难建筑抗震设计方法,采用复杂网络带钢避难建筑加固模型对加固前建筑的混泥土强度与荷载能力进行计算,增大框架柱截面,提升带钢避难建筑荷载。采用复合墙体受力加固模型提升建筑墙体抗震性。对加固后建筑模型的坍塌风险评估时,采用带钢避难建筑坍塌的全概率衡量加固后建筑在设计使用年限内的抗坍塌安全性。设计使用年限内加固后的带钢避难建筑的强震CRC超出概率是P(IMCRC),确保其在高强度地震下具有较高的抗震性能。实验结果说明,所提方法下的带钢避难建筑在遇到强震情况时具有较高的抗震性能。  相似文献   

16.
Seismic safety of low ductility structures used in Spain   总被引:1,自引:0,他引:1  
The most important aspects of the design, seismic damage evaluation and safety assessment of structures with low ductility like waffle slabs buildings or flat beams framed buildings are examined in this work. These reinforced concrete structural typologies are the most used in Spain for new buildings but many seismic codes do not recommend them in seismic areas. Their expected seismic performance and safety are evaluated herein by means of incremental non linear structural analysis (pushover analysis) and incremental dynamic analysis which provides capacity curves allowing evaluating their seismic behavior. The seismic hazard is described by means of the reduced 5% damped elastic response spectrum of the Spanish seismic design code. The most important results of the study are the fragility curves calculated for the mentioned building types, which allow obtaining the probability of different damage states of the structures as well as damage probability matrices. The results, which show high vulnerability of the studied low ductility building classes, are compared with those corresponding to ductile framed structures.  相似文献   

17.
基于时变地震损伤模型提出酸性大气环境作用下多龄期钢框架结构概率地震易损性分析的方法及步骤;考虑服役龄期对钢框架结构抗震性能的影响,分别建立时变概率地震需求模型、时变概率抗震能力模型及时变易损性模型;在概率地震需求分析及概率抗震能力分析的基础上,得到多龄期(20年、30年、40年、50年)钢框架结构的易损性模型及易损性曲线。  相似文献   

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