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1.
基于性态的结构抗震设计中的强度折减系数是确定结构非弹性反应谱的重要依据。本文研究主余震序列型地震作用下单自由度体系考虑损伤的强度折减系数谱。首先收集主余震实测记录并按中国抗震规范要求进行场地类别划分,对余震峰值进行调幅后进行单自由度结构弹塑性动力时程分析,研究了结构周期、延性系数、损伤指数、余震作用等因素对强度折减系数需求的影响。结果表明余震对强度折减系数的影响显著,考虑累积损伤的强度折减系数(R_D)是基于位移延性的强度折减系数(R_μ)的0.6至0.9倍。最后,经过统计平均和回归分析,建立了平均强度折减系数谱的简化公式。  相似文献   

2.
考虑设计地震分组的强度折减系数的研究   总被引:3,自引:0,他引:3       下载免费PDF全文
翟长海  谢礼立 《地震学报》2006,28(3):284-294
强度折减系数既是基于强度的抗震设计中确定设计地震力的关键因素,又是基于性态的抗震设计理论中确定非弹性反应谱的主要依据. 本文结合我国抗震设计反应谱的形式和特点,应用823条国内外水平向地震动记录(充分利用了我国取得的强震记录),给出了一种考虑设计地震分组和场地类别的强度折减系数模型,研究了结构周期、延性、场地类别、设计地震分组、震级、震中距等因素对强度折减系数的影响. 结果表明:场地条件对强度折减系数的影响是不可忽略的,特别是对延性较大的短周期结构更应注意场地条件的影响;设计地震分组是影响强度折减系数的一个重要因素,在应用我国规范设计反应谱构造非弹性反应谱所用的强度折减系数必须考虑设计分组的影响;震级对强度折减系数的影响较小;如不考虑近场大脉冲地震动记录的影响,震中距对强度折减系数的影响是可以忽略的.   相似文献   

3.
剪切型结构的抗震强度折减系数研究   总被引:1,自引:0,他引:1  
为了研究剪切型结构抗震强度需求的变化规律,本文基于单自由度体系的非线性时程分析,研究了不同场地条件下延性折减系数与位移延性系数和结构自振周期的关系;采用修正等效单自由度体系位移延性折减系数的方法,研究了剪切型多自由度体系的延性折减系数;以基于中国建筑抗震规范设计的代表不同抗震能力要求的RC框架结构为分析对象,通过静力弹塑性分析,研究了RC框架结构的体系超强能力。分析结果表明场地类别、位移延性水准和结构振动周期对单自由度体系的延性折减系数有显著的影响;多自由度体系的抗震延性折减系数明显比其相应的等效单自由度体系的抗震延性折减系数小;RC框架结构的超强系数一般随结构楼层数的增加而减小,随抗震设防烈度的增大而减小,内框架的超强系数比边框架的超强系数大。  相似文献   

4.
《公路桥梁抗震设计细则》(JTG/TB02-01-2008)的颁布实施引起国内外学者的广泛兴趣与关注。在该规范(JTG/TB02-01-2008)和欧洲规范8(Eurocode8)_桥梁抗震设计中,对抗震设防目标、抗震设防分类、反应谱和地震作用进行比较和研究。研究表明,两者在抗震设防目标、抗震设防分类和反应谱方面具有相似性;在地震力折减方面有很大不同;最后指出采用不同地震力折减方式存在的不足,指出需要进一步研究的问题。  相似文献   

5.
弹塑性地震反应谱的长周期特性研究   总被引:3,自引:1,他引:3  
在基于性能抗震设计中弹塑性反应谱在计算结构地震位移反应方面越来越受到重视。利用统计分析方法研究了等强度的延性需求谱和等延性的强度折减系数谱的长周期(至5 s)区段的特性,关注的重点是等位移准则和场地条件影响。给出了若干具有工程价值的结论:一是周期介于1.5Tg(地震动特征周期)和2.5 s之间的结构可近似认为等位移准则成立且与场地条件关系不大,这样确定的强度折减系数当位移延性系数小于等于4时结果将是偏于安全的;二是结构周期大于2.5 s后以硬土场地等延性强度折减系数谱或等强度延性需求谱代替软土场地谱求解系统强度需求或延性需求,将会得到偏于安全的结果。  相似文献   

6.
为优化我国抗震设计规范基于土与结构相互作用效应的抗震设计方法,对中国大陆、台湾及美国和欧洲抗震设计规范中有关SSI条文进行了介绍,从规范条文应用范围、地震作用折减方法、修正参数、折减系数沿结构高度变化、侧向水平位移、基底剪力折减量等方面进行对比分析,总结出了我国大陆抗震设计规范考虑SSI效应与其他规范的不同及不足之处,明确了我国大陆抗震设计规范考虑SSI效应条文方面进一步修改的方向和相应的研究内容,对我国抗震设计规范关于SSI条文提出相应的修改建议。  相似文献   

7.
为了解决传统建筑墙体装饰抗震裂设计方法中存在稳定性较差、强度折减系数较低的问题,提出了一种基于振动法的建筑墙体装饰抗震裂综合设计方法。分析建筑墙体结构,构建面向数据提取的建筑墙体结构对象模型,根据建筑墙体装饰抗震裂设防的具体要求,以建筑底部框架抗震墙结构为基础,制定出墙体装饰抗震加固设计基本方法。结合具体施工方法,综合考虑了底部框架抗震墙结构的刚度、强度以及延性的影响,实现了建筑墙体装饰的抗震裂设计。实验结果显示,该方法的稳定性比传统方法提高2%,且在不同密度条件下,最大应力和强度折减系数均远大于对比方法,充分说明了加固后能够保证建筑墙体装饰具有较好的抗震裂能力。  相似文献   

8.
基于公路工程规范地震需求谱研究   总被引:1,自引:0,他引:1  
从解决桥梁结构的实际问题出发,根据桥梁结构的抗震能力及计力法的需要,由于强度折减系数R与延性系数μ的关系建立弹塑性反应谱的原理,建立了基于《公路工程抗震设计规范》(JTJ 004-89)给出的弹性反应谱的非弹性地震需求谱,为桥梁结构抗震性能评价的研究提供参考意见。  相似文献   

9.
近断层地震动作用下钢筋混凝土桥墩的抗震性能   总被引:9,自引:2,他引:9  
通过对满足规范延性要求的12根典型钢筋混凝土桥墩试件的线性和非线性地震反应分析,指出在近断层地震动作用下满足延性需求与延性能力比小于1.0的桥墩仍可能发生严重破坏和倒塌,若考虑桥墩的地震损伤性能,允许的延性需求与延性能力比不宜超过0.6-0.8。讨论了桥墩延性抗震设计中强度折减系数Rμ和设计基底剪力系数BSC取值问题。  相似文献   

10.
分析了中美欧抗震设计中的水平地震作用问题。首先,比较了中美欧抗震规范中建筑物重要性、强度折减系数的差异,介绍了中国规范的底部剪力法、美国规范的等效侧向荷载法以及欧洲规范的侧向荷载法。然后对一多层框架结构,分别作为办公楼和医院,计算了不同设防烈度下、不同延性等级下的水平地震作用,并进行了比较分析,获得了3种规范关于水平地震作用的一些差异。  相似文献   

11.
Introduction The strength reduction factor is defined as the lateral yielding strength required to avoid yielding in the system when subjected to a given ground motion, to the lateral yielding strength required to maintain the displacement ductility ratio demand equal to a pre-determined target duc-tility ratio under the same ground motion. The strength reduction factors are not only the key fac-tors in determining seismic action for force-based seismic design, but also one of the key parame-t…  相似文献   

12.
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   

13.
14.
The most important parameter used to determine force reduction factors in force-based design procedures adopted in the current seismic codes is the structural ductility. For a structure supported on a flexible foundation, the ductility factor could be affected by foundation compliances. The ductility factors given in the current codes are mostly assigned ignoring the effect of SSI and therefore the objective of this research is to assess the signifi cance of SSI phenomenon on ductility factors of stack-like structures. The deformed confi guration of stack-like structures is idealized as an assemblage of beam elements considering nonlinear moment-curvature relations, while a linear sway-rocking model was implemented to model the supporting soil. Using a set of artifi cial records, repeated linear and nonlinear analyses were performed by gradually increasing the intensity of acceleration to a level where the fi rst yielding of steel in linear and nonlinear analyses is observed and a level corresponding to the stack collapse in the nonlinear analysis. The difference between inelastic and elastic resistance in terms of displacement ductility factors has been quantifi ed. The results indicate that foundation flexibility can decrease the ductility of the system and neglecting this phenomenon may lead to erroneous conclusions in the prediction of the seismic performance of flexibly-supported R/C stack-like structures.  相似文献   

15.
A risk-targeted design spectral acceleration and the corresponding seismic design action for the force-based design of structures is introduced by means of two formulations. The first one called direct formulation utilizes the seismic hazard function at the site of the structure. Because the seismic action defined in the codes is often associated with a designated return period, an indirect formulation is also introduced. It incorporates a risk-targeted safety factor that can be used to define a risk-targeted reduction factor. It is shown that the proposed formulations give analogical results and provide an insight into the concept of the reduction of seismic forces for the force-based seismic design of structures if the objective is defined by a target collapse risk. The introduced closed-form solution for the risk-targeted reduction factor can be used to investigate how the target collapse risk, the seismic hazard parameters, the randomness of the seismic action, and the conventional parameters (ie, the overstrength factor and the deformation and energy dissipation capacity) affect the seismic design forces in the case of force-based design. However, collaborative research is needed in order to develop appropriate models of these parameters. In the second part of the paper, the proposed formulations are demonstrated by estimating the risk-targeted seismic design action for a six-storey reinforced concrete building. By verifying the collapse risk of the designed structure, it is demonstrated that the risk-targeted seismic action, in conjunction with a conventional force-based design, provided structure with acceptable performance when measured in terms of collapse risk.  相似文献   

16.
结构抗震设计中的强度折减系数研究   总被引:27,自引:12,他引:27  
借助于单自由度弹塑性动力时程分析程序,对延性结构的强度折减系数进行了研究,在统计平均和回归分析的基础上,建立了平均强度折系数的函数形式,本文所建立的平强度折减系数函数,从理论上明确了结构具有延性对弹性地震力的折减关系,研究成果可供结构抗震设计规范采纳应用。  相似文献   

17.
Uneven distribution of seismic demand in asymmetric-plan structures is a critical concern in earthquake-resistant design. Contemporary seismic design strategies that are based on linear elastic response, single load reduction factor, and uniform ductility demand throughout an asymmetric system generally lead to unsatisfactory performance in terms of realized ductilities and nonuniform damage distribution due to strong torsional coupling associated with asymmetric-plan systems. In many cases, actual nonlinear behavior of the structure displays significant deviation from what is estimated by a linear elastic, force-based seismic design approach. This study investigates the prediction of seismic demand distribution among structural members of a single-story, torsionally stiff asymmetric-plan system. The focus is on the effect of inherent unbalanced overstrength, resulting from current force-based design practices, on the seismic response of code-designed single-story asymmetric structures. The results obtained are utilized to compile unsymmetrical response spectra and uniform ductility spectra, which are proposed as assessment and preliminary design tools for estimating the seismic performance of multistory asymmetric structures. A simple design strategy is further suggested for improving the inelastic torsional performance of asymmetric systems. Providing additional strength to stiff edge members over their nominal design strength demands leads to a more balanced ductility distribution. Finally, seismic responses of several asymmetric case study structures designed with the aid of the proposed strategy are assessed for validating their improved performance.  相似文献   

18.
我国尚未制定海洋平台的抗震标准.本文首先介绍了美国RP2A-WSD规范的内容,并与我国相关规范进行对比分析,认为我国目前采用的海洋平台强度设计和变形设计水准过于保守.从海洋平台的结构特征出发,探讨了海洋平台的工程地震问题.在此基础上,根据我国海域地震活动特征、海洋平台的设计基准期和设防目标等因素,参照相关行业工程抗震设防标准的经验,提出我国海洋平台用于强度设计的正常使用极限地震重现期取200年、用于延性设计的变形极限地震重现期取1000年.最后通过一个工程实例,分析了海底泥面对设计地震动参数的影响,以及不同抗震标准下设计地震动参数的差别,认为本文提出的平台抗震设防水准是安全合理的,同时又兼顾到我国经济承受能力以及与现行标准的连贯性.  相似文献   

19.
耗能梁段作为偏心支撑结构的耗能元件,在大震作用下通过弹塑性变形吸收地震能量,保护主体结构处于弹性受力状态。现行规范基于强度的设计理论,为了保证耗能梁段进入塑性或破坏,梁柱构件需要进行放大内力设计,导致截面过大,而且基于强度的设计方法很难保证结构的整体破坏状态。目前,抗震设计越来越重视基于性能的设计思想,该方法能够评估结构的弹塑性反应。对于高强钢组合偏心支撑,其中耗能梁段和支撑采用Q345钢,框架梁柱采用Q460或者Q690高强度钢材,高强钢不仅带来良好的经济效益,而且能够推广高强钢在抗震设防区的应用。利用基于性能设计方法设计了4种不同形式的高强钢组合偏心支撑钢框架,包括K形、Y形、V形和D形,考虑4层、8层、12层和16层的影响。通过Pushover分析和非线性时程分析评估该结构的抗震性能,研究结果表明:4种形式的高强钢组合偏心支撑钢框架具有类似的抗震性能,在罕遇地震作用下,几乎所有耗能梁段均参与耗能,而且层间侧移与耗能梁段转角沿高度分布较为均匀。其中:D形偏心支撑具有最大的抗侧刚度,但延性较差,而Y形偏心支撑的抗侧刚度最弱,但延性最佳。  相似文献   

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