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1.
复阻尼地震反应谱的计算方法及其它   总被引:13,自引:2,他引:11  
本文阐述了为什么要研究复阻尼地震反应谱问题,并给出了复阻尼地震反应谱计算的精确方法.实例计算结果表明,复阻尼反应港与常用的粘性阻尼反应谱之间存在着相当大的差异.文中还简述了复阻尼系统运动方程的建立方法。  相似文献   

2.
计算地震动长周期反应谱的转换模型和方法   总被引:1,自引:0,他引:1  
为减小长周期反应谱的计算误差,本文提出一个计算长周期反应谱的转换模型和与之相应的精确计算方法。该模型以地震动的速度和位移为输入荷载,有利于对荷载信号中的长周期噪声进行有效的控制,能够有效提升长周期地震动反应谱的计算精度和可靠性。  相似文献   

3.
本文推导了基于位移激励计算单自由度体系拟速度谱公式,通过构造的脉冲位移时程对公式精度进行了验证;之后利用小波变换去除强震记录噪声而保留地震动永久位移,再基于去趋势项方法和滤波方法去除永久位移后,计算拟速度谱。算例结果表明:短周期段内,不保留永久位移的位移激励拟速度谱值与保留永久位移的位移激励拟速度谱值相差很小;中长周期段内,不保留永久位移的位移激励拟速度谱值总体上小于保留永久位移的位移激励拟速度谱值,且不保留永久位移时,滤波方法引起的拟速度谱降幅大于去趋势项方法所引起的拟速度谱降幅。因此,基于位移激励计算中长周期结构的地震反应时,应保留地震动永久位移,或基于去趋势项方法去除永久位移。   相似文献   

4.
不同阻尼体系地震能量输入及阻尼能量耗散计算分析   总被引:1,自引:0,他引:1  
本文给出了复阻尼体系地震能量输入及阻尼能量耗散计算公式。利用天津、E1Centro、迁安记录及Mexico地震Cale记录计算了复阻尼及粘性阻尼体系的地震能量输入及阻尼能量耗散,并绘制了相应的时程曲线。计算所用阻尼比取0.1及0.05,周期分别取0.3s,0.5s,1s,1.5s及5s。通过计算我们观察到,除迁安记录外,在其它几个地震作用下,对固有周期小于1s的短周期结构,复阻尼体系能量输入及阻尼能量耗散时程曲线值高于相应的粘性阻尼体系(对迁安记录固有周期需小于0.5s)。对中周期结构,两组曲线相近,对于长周期结构,复阻尼体系的能量时程曲线值低于相应的粘性阻尼体系值。对于每个地震记录,有一个临界值,体系的固有周期小于此值时,不同阻尼模型的能量输入、阻尼能量耗散时程曲线值无大差异,当周期大于此值时,不同阻尼模型的能量输入及阻尼能量耗散时程曲线差异较大。复阻尼体系对周期的敏感程度远大于粘性阻尼体系。当周期不变,阻尼比增大时,在峰值点之后,复阻尼体系能量时程曲线基本无大的变化,粘性阻尼体系能量时程曲线有抬高趋势。  相似文献   

5.
基于日本KiK-Net、K-Net地震台网和太平洋地震工程中心(PEER)的14 713条地震动记录,比较了俯冲带地区浅壳上地幔地震、板内地震和板间地震的水平向地震动加速度反应谱阻尼修正系数(DMF)和位移反应谱阻尼修正系数(DMF)的差异,并进行了5%置信水平下的假设检验,探究了俯冲带地区不同地震类型对DMF的影响。结果显示:在大多数谱周期,不同地震类型的DMF存在统计意义上的显著差异;在低阻尼比中短周期时,加速度谱DMF和位移谱DMF基本相同;在高阻尼比长周期时,不同地震类型的加速度谱DMF差异大于位移谱DMF差异。研究表明:俯冲带地震水平向地震动DMF需要考虑不同地震类型的影响。  相似文献   

6.
复阻尼模型具有每周期耗散能量与外激励频率无关的优点,但自由振动解中存在发散项。基于复阻尼模型的等效滞变阻尼模型不仅保留了相应的优点,且克服了时域发散的缺陷。本文在模态叠加法的基础上,提出了基于滞变阻尼模型的反应谱CQC法,并利用时域精确解验证了所提方法的正确性。在此基础上,以反应谱和相关系数为分析对象,对比了基于滞变阻尼模型的反应谱CQC法和基于黏性阻尼模型的反应谱CQC法。算例分析表明:小阻尼比情况下,两种方法的计算结果近似相等;大阻尼比情况下,两种方法计算所得的反应谱值和相关系数皆差异较大;大阻尼比结构需依据结构材料的阻尼特性,选择合适的反应谱CQC法。  相似文献   

7.
两结构高效阻尼控制系统随机动力反应分析   总被引:1,自引:0,他引:1  
对由高效阻尼装置(HEDMS)连接的两单自由度相邻结构在过滤白噪声激励下的相对位移响应进行了随机分析。在对阻尼装置滞变位移等价线性化的基础上,采用虚拟激励法计算结构响应的谱密度和互谱密度,研究了该阻尼装置各参数对位移响应方差的影响以及该装置的适用范围。  相似文献   

8.
时域分析中采用粘滞阻尼反映小应变条件下土的阻尼特性,瑞雷阻尼则是常用的黏滞阻尼形式。本文基于有限差分方法,构建一组数值计算模型,以实际地震记录作为输入,以不同的土层条件作为分析对象,采用加速度、位移和反应谱指标评价了瑞雷阻尼形式对土层地震反应的影响,并将不同阻尼形式下的计算结果与响嘡台阵真实记录进行了对比分析。计算结果表明:阻尼形式对加速度反应和反应谱的影响显著,对位移反应影响有限,但位移幅值沿土层高度的变化规律较复杂;不同阻尼形式时反应谱短周期段的谱值差别明显,而对反应谱长周期段谱值影响有限;高频地震动激励,深软土层中不同阻尼形式的计算结果离散性大;在确定阻尼形式时要综和考虑土层特征和地震动频谱特性,只考虑土层卓越频率的阻尼形式会低估土层地震反应。对于长周期地震动输入,本文建议目标频率取土层第3阶频率,对于高频地震动,目标频率可取为反应谱峰值对应频率。  相似文献   

9.
基础隔震结构反应谱拟谱与真谱差异研究   总被引:1,自引:0,他引:1  
基于反应谱理论的隔震结构简化计算需要寻求并建立适合长周期和大阻尼比情况下的反应谱.文中指出规范反应谱及其拟相对位移反应谱在长周期部分存在的问题,对规范反应谱是否可用于隔震结构简化计算进行了分析,然后通过建立隔震结构反应谱,比较了隔震结构反应谱拟谱与真谱差异,分析了造成这些差异的原因,最后以算例具体分析规范反应谱理论的"由地震作用求地震作用效应"方法在隔震结构中的适用性.  相似文献   

10.
一种时域复阻尼本构方程   总被引:3,自引:2,他引:1  
为了将复阻尼理论应用于时步积分计算,本文根据文献[1]提供的建立时域复阻尼本构的思路,首先讨论了通过组合标准线性体构成与复阻尼理论在具有工程意义的频段内等效的时域本构方程的方法,即通过适当选取本构参数使滞回阻尼比和弹性模量与复阻尼理论相应值基本保持一致。然后,用一维波动数值模拟实例,对比了本文建议的本构方程、频域复阻尼理论及粘性阻尼本构对计算结果的影响,论证了本文建议的本构方程应用于地震工程的可行  相似文献   

11.
考虑场地类别的阻尼比修正系数研究   总被引:1,自引:0,他引:1  
阻尼比修正系数B用于调整临界阻尼比不同于0.05时的反应谱值,它对减震结构、隔振结构以及弹塑性体系的简化设计与分析具有重要意义。本文按照我国现行抗震规范规定的场地分类方法,分别应用四类场地共计136条地震记录,对阻尼比为0.05、0.1、0.2、0.3、0.4、0.5的弹性单自由度结构体系的相对位移反应谱、相对速度反应谱、绝对加速度反应谱进行计算分析,从定性到定量系统研究了地震作用下场地分类、阻尼比以及结构周期对相对位移反应谱阻尼比修正系数眈、相对速度反应谱阻尼比修正系数Bv和绝对加速度反应谱阻尼比修正系数口。的影响规律,结果表明:随着阻尼比的增大,场地分类对阻尼比修正系数的影响程度逐渐增大,其中场地条件对Ba的影响更加显著,然而数据分析表明,场地条件对阻尼比修正系数最小值的影响很小。在IV场地上,阻尼对长周期结构的减震效果明显优于其它三类场地。最后通过非线性回归分析,建立了与场地类别、结构周期以及阻尼比相关的阻尼比修正系数Ba、Bd、Bv的计算公式。这部分的结果可以应用于减震结构基于.胜能的抗震设计方法中。  相似文献   

12.
Damping modification factors (DMF) are used in modern seismic codes to adjust elastic response spectral values corresponding to 5% of viscous damping to other higher or lower damping levels. This paper presents a simple and effective procedure to estimate DMF for single‐degree‐of‐freedom systems. Empirical expressions are proposed for displacement, velocity and acceleration response spectra, where four types of soil conditions, from hard rock to soft soil are considered. This study also examines, for the first time, the influence of artificial earthquakes on DMF. Furthermore, natural near‐fault and far‐fault seismic ground motions are considered where it is testified that the fault distance has no impact on DMF. Finally, it confirms that, in contrast to the considerations of many seismic codes, DMF are strongly dependent on the period of structural vibration while there are significant problems of using the same modification factor to estimate maximum displacement, velocity and seismic forces. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

13.
This paper employs a velocity plus displacement(V+D)-based equivalent force control(EFC) method to solve the velocity/displacement difference equation in a real-time substructure test. This method uses type 2 feedback control loops to replace mathematical iteration to solve the nonlinear dynamic equation. A spectral radius analysis of the amplification matrix shows that the type 2 EFC-explicit, Newmark-β method has beneficial numerical characteristics for this method. Its stability limit of Ω = 2 remains unchanged regardless of the system damping because the velocity is achieved with very high accuracy during simulation. In contrast, the stability limits of the central difference method using direct velocity prediction and the EFC-average acceleration method with linear interpolation are shown to decrease with an increase in system damping. In fact, the EFC-average acceleration method is shown to change from unconditionally stable to conditionally stable. We also show that if an over-damped system with a damping ratio of 1.05 is considered, the stability limit is reduced to Ω =1.45. Finally, the results from an experiment with a single-degree-of-freedom structure installed with a magneto-rheological(MR) damper are presented. The results demonstrate that the proposed method is able to follow both displacement and velocity commands with moderate accuracy, resulting in improved test performance and accuracy for structures that are sensitive to both velocity and displacement inputs. Although the findings of the study are promising, additional test data and several further improvements will be required to draw general conclusions.  相似文献   

14.
基础平动与转动结构随机地震响应分析的复模态法   总被引:1,自引:0,他引:1  
本文对基础平动与转动结构随机地震响应问题进行了系统研究。首先建立了结构运动方程,然后针对体系运动方程为非经典阻尼的情况.用复模态法解耦获得了体系位移、速度和加速度随机地震响应的解析解,最后通过一个例子来说明考虑结构一地基相互作用的必要性。本文方法可推广到非平稳地震响应分析。  相似文献   

15.
CalculationoflongperiodresponsespectratoearthquakegroundmotionfromseismogramsofType513seismographsYANXIANGYU(俞言祥)SUYUNWAN...  相似文献   

16.
In the seismic analysis and design of structures, the true velocity and absolute acceleration are usually approximated by their corresponding pseudo-values. This approach is simple and works well for structures with small damping (say, less than 15%). When the damping of a structure is enhanced for the purpose of response reduction, it may result in large analysis and design errors. Based on theory of random vibration and the established mechanism of seismic response spectra analysis, a method is developed (1) to predict the relative velocity spectra with any damping ratio level directly from the 5% standard pseudo-acceleration spectrum; and (2) to estimate the peak absolute acceleration. The accuracy of both is validated by using two selected ensembles of ground motion records.  相似文献   

17.
High force‐to‐volume extrusion damping devices can offer significant energy dissipation directly in structural connections and significantly reduce seismic response. Realistic force levels up to 400 kN have been obtained experimentally validating this overall concept. This paper develops spectral‐based design equations for their application. Response spectra analysis for multiple, probabilistically scaled earthquake suites are used to delineate the response reductions due to added extrusion damping. Representative statistics and damping reduction factors are utilized to characterize the modified response in a form suitable for current performance‐based design methods. Multiple equation regression analysis is used to characterize reduction factors in the constant acceleration, constant velocity, and constant displacement regions of the response spectra. With peak device forces of 10% of structural weight, peak damping reduction factors in the constant displacement region of the spectra are approximately 6.5 ×, 4.0 ×, and 2.8 × for the low, medium, and high suites, respectively. At T = 1 s, these values are approximately 3.6 ×, 1.8 ×, and 1.4 ×, respectively. The maximum systematic bias introduced by using empirical equations to approximate damping reduction factors in design analyses is within the range of +10 to ?20%. The seismic demand spectrum approach is shown to be conservative across a majority of the spectrum, except for large added damping between T = 0.8 and 3.5 s, where it slightly underestimates the demand up to a maximum of approximately 10%. Overall, the analysis shows that these devices have significant potential to reduce seismic response and damage at validated prototype device force levels. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

18.
Lateral spreads are complex dynamic phenomena that are challenging to represent numerically. In this paper numerical models are developed and calibrated using the displacement, acceleration, and pore water pressure time histories recorded in a free-field lateral spreading centrifuge test. The calibrated numerical model then is used to predict another free-field lateral spreading centrifuge test using the same soil profile but different input acceleration time history. The computed response shows good agreement with the centrifuge test measurements. This paper demonstrates that even in a large strain problem, such as lateral spreading, small strain damping plays an important role in numerical simulation results; it also shows the need to have pressure dependent dilation parameters in the employed soil constitutive model implemented in order to simultaneously reproduce measurements of pore water pressure, acceleration and lateral displacement.  相似文献   

19.
ntroductionThestudyachievementsoncharacteristicsofresponsespectrumfromstronggroundmotionrecordshavebenwidelyappliedtoseismicd...  相似文献   

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