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基于性能的地震工程研究的新进展及对结构非线性分析的要求 总被引:4,自引:0,他引:4
结合国际地震工程界提出的新一代基于性能的地震工程的框架方法,重点阐述了性能评估中涉及的主要问题。对性能评估使用的静力非线性分析、动力非线性分析方法进行了总结,在此基础上详细阐述了在基于概率的性能评估中有应用前景的增量动力分析方法的概念、相关问题及其应用,并简要介绍了基于增量动力分析思想提出的一些简化方法。最后提出了今后研究的建议,特别是结构非线性分析方面的研究重点。 相似文献
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IntroductionAt present, the proper design and construction of buildings for earthquake-resistance is the most effective measure to mitigate the earthquake damage. In a broad sense, the earthquake resistance design should include the following seven contents:1) Determining the seismic design criteria Determining the seismic design goals3) Determining the seismic design parameters (intensity or ground motion) and their numerical values4) Determining the category of importance for buildings and … 相似文献
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An Incremental Response Spectrum Analysis Procedure Based on Inelastic Spectral Displacements for Multi-Mode Seismic Performance Evaluation 总被引:1,自引:0,他引:1
M. Nuray Aydinoğlu 《Bulletin of Earthquake Engineering》2003,1(1):3-36
The so-called Nonlinear Static Procedure (NSP) based on pushover analysis has been developed in the last decade as a practical
engineering tool to estimate the inelastic response quantities in the framework of performance-based seismic evaluation of
structures. However NSP suffers from a major drawback in that it is restricted with a single-mode response and therefore the
procedure can be reliably applied only to the two-dimensional response of low-rise, regular buildings. Recognizing the continuously
intensifying use of the pushover-based NSP in the engineering practice, the present paper attempts to develop a new pushover
analysis procedure to cater for the multi-mode response in a practical and theoretically consistent manner. The proposed Incremental
Response Spectrum Analysis (IRSA) procedure is based on the approximate development of the so-called modal capacity diagrams,
which are defined as the backbone curves of the modal hysteresis loops. Modal capacity diagrams are used for the estimation
of instantaneous modal inelastic spectral displacements in a piecewise linear process called pushover-history analysis. It
is illustrated through an example analysis that the proposed IRSA procedure can estimate with a reasonable accuracy the peak
inelastic response quantities of interest, such as story drift ratios and plastic hinge rotations as well as the story shears
and overturning moments. A practical version of the procedure is also developed which is based on the code-specified smooth
response spectrum and the well-known equal displacement rule.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
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Inelastic displacement ratios (IDRs) of nonlinear soil–structure interaction (SSI) systems located at sites with cohesive soils are investigated in this study. To capture the effects of inelastic cyclic behavior of the supporting soil, the Beam on Nonlinear Winkler Foundation (BNWF) model is used. The superstructure is modeled using an inelastic single-degree-of-freedom (SDOF) system model. Nonlinear SSI systems representing various combinations of unconfined compressive strengths and shear wave velocities are considered in the analysis. A set of strong ground motions recorded at sites with soft to stiff soils is used for considering the record-to-record variability of IDRs. It is observed that IDRs for nonlinear SSI systems are sensitive to the strength and the stiffness properties of both the soil and the structure. For the case of SSI systems on the top of cohesive soils, the compressive strength of the soil has a significant impact on the IDRs, which cannot be captured by considering only the shear wave velocity of the soil. Based on the results of nonlinear time-history analysis, a new equation is proposed for estimating the mean and the dispersion of IDRs of SSI systems depending on the characteristic properties of the supporting soil, dimensions of the foundation, and properties of the superstructure. A probabilistic framework is presented for the performance-based seismic design of SSI systems located at sites with cohesive soils. 相似文献
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Since most current seismic capacity evaluations of reinforced concrete(RC) frame structures are implemented by either static pushover analysis(PA) or dynamic time history analysis,with diverse settings of the plastic hinges(PHs) on such main structural components as columns,beams and walls,the complex behavior of shear failure at beam-column joints(BCJs) during major earthquakes is commonly neglected.This study proposes new nonlinear PA procedures that consider shear failure at BCJs and seek to assess the actual damage to RC structures.Based on the specifications of FEMA-356,a simplified joint model composed of two nonlinear cross struts placed diagonally over the location of the plastic hinge is established,allowing a sophisticated PA to be performed.To verify the validity of this method,the analytical results for the capacity curves and the failure mechanism derived from three different full-size RC frames are compared with the experimental measurements.By considering shear failure at BCJs,the proposed nonlinear analytical procedures can be used to estimate the structural behavior of RC frames,including seismic capacity and the progressive failure sequence of joints,in a precise and effective manner. 相似文献
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The equivalent linearization method approximates the maximum displacement response of nonlinear structures through the corresponding equivalent linear system.By using the particle swarm optimization technique,a new statistical approach is developed to determine the key parameters of such an equivalent linear system over a 2D space of period and damping ratio.The new optimization criterion realizes the consideration of the structural safety margin in the equivalent linearization method when applied to the performance-based seismic design/evaluation of engineering structures.As an application,equations for equivalent system parameters of both bilinear hysteretic and stiffness degrading single-degree-offreedom systems are deduced with the assumption of a constant ductility ratio.Error analyses are also performed to validate the proposed approach. 相似文献
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盐岩地下储气库风险分级机制初探 总被引:6,自引:2,他引:4
能源储备是国家重大战略需求,目前国内已经开始大规模兴建盐岩能源地下储库群,由于国内的盐岩储库地层具有埋深浅、盐层薄、夹层多、品位低等特点,导致建库难度大、运行风险高,因此,开展盐岩地下油气储库风险分析研究具有重要的理论意义和工程应用价值。针对国内盐岩地下油气储库现状,在风险分析中引入功能设计理念,以体积收缩率作为储库运营期风险的单项分级指标,初步提出了地下油气储库运营风险分级机制的基本方法,以国内某盐岩地下储气库为例,通过流变计算获得不同储气内压变化条件下,储库风险随时间的变化规律,较好地验证了所提方法的合理性和有效性。 相似文献
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基于单地震动记录IDA方法的结构倒塌分析 总被引:5,自引:2,他引:3
增量动力分析(Incremental Dynamic Analysis, IDA)作为静力Pushover分析的动力拓展,可以全面、准确地分析结构的性能变化,尤其可以很好地分析结构倒塌这一动力失稳问题.本文基于单地震动记录的IDA方法,提出了"折半取中"原则,以确定结构倒塌极限状态点.以一榀五层三跨钢筋混凝土框架结构为例,分别考虑钢筋强化模型、理想弹塑性模型和软化模型,对其进行倒塌分析.结果表明:钢筋的屈服后强化特性对结构抗倒塌能力具有显著的影响. 相似文献