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Vertical coherency function model of spatial ground motion 被引量:6
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作者 Ye Jihong Pan Jinlong Liu Xianming 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2011年第3期403-415,共13页
Many studies have focused on horizontal ground motion, resulting in many coherency functions for horizontal ground motion while neglecting related problems arising from vertical ground motion. However, seismic events ... Many studies have focused on horizontal ground motion, resulting in many coherency functions for horizontal ground motion while neglecting related problems arising from vertical ground motion. However, seismic events have demonstrated that the vertical components of ground motion sometimes govern the ultimate failure of structures. In this paper, a vertical coherency function model of spatial ground motion is proposed based on the Hao model and SMART 1 array records, and the validity of the model is demonstrated. The vertical coherency function model of spatial ground motion is also compared with the horizontal coherency function model, indicating that neither model exhibits isotropic characteristics. The value of the vertical coherency function has little correlation with that of the horizontal coherency function. However, the coherence of the vertical ground motion between a pair of stations decreases with their projection distance and the frequency of the ground motion. When the projection distance in the wave direction is greater than 800 meters, the coherency between the two points can be neglected. 展开更多
关键词 spatial ground motion vertical coherency model coherence law of vertical ground motion coherence law of horizontal ground motion
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Running safety assessment of a train traversing a three-tower cable-stayed bridge under spatially varying ground motion 被引量:9
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作者 Wei Gong Zhihui Zhu +3 位作者 Yu Liu Ruitao Liu Yongjiu Tang Lizhong Jiang 《Railway Engineering Science》 2020年第2期184-198,共15页
To explore the influence of spatially varying ground motion on the dynamic behavior of a train passing through a three-tower cable-stayed bridge,a 3D train–track–bridge coupled model is established for accurately si... To explore the influence of spatially varying ground motion on the dynamic behavior of a train passing through a three-tower cable-stayed bridge,a 3D train–track–bridge coupled model is established for accurately simulating the train–bridge interaction under earthquake excitation,which is made up of a vehicle model built by multi-body dynamics,a track–bridge finite element model,and a 3D rolling wheel–rail contact model.A conditional simulation method,which takes into consideration the wave passage effect,incoherence effect,and site-response effect,is adopted to simulate the spatially varying ground motion under different soil conditions.The multi-time-step method previously proposed by the authors is also adopted to improve computational efficiency.The dynamic responses of the train running on a three-tower cablestayed bridge are calculated with differing earthquake excitations and train speeds.The results indicate that(1)the earthquake excitation significantly increases the responses of the train–bridge system,but at a design speed,all the running safety indices meet the code requirements;(2)the incoherence and site-response effects should also be considered in the seismic analysis for long-span bridges though there is no fixed pattern for determining their influences;(3)different train speeds that vary the vibration characteristics of the train–bridge system affect the vibration frequencies of the car body and bridge. 展开更多
关键词 EARTHQUAKE spatially varying ground motion Long-span bridges Nonlinear wheel-rail contact Running safety
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Response of a transmission tower-line system at a canyon site to spatially varying ground motions
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作者 Hong-nan LI Feng-long BAI +1 位作者 Li TIAN Hong HAO 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第2期103-120,共18页
Collapses of transmission towers were often observed in previous large earthquakes such as the Chi-Chi earthquake in Taiwan and Wenchuan earthquake in Sichuan,China. These collapses were partially caused by the pullin... Collapses of transmission towers were often observed in previous large earthquakes such as the Chi-Chi earthquake in Taiwan and Wenchuan earthquake in Sichuan,China. These collapses were partially caused by the pulling forces from the transmission lines generated from out-of-phase responses of the adjacent towers owing to spatially varying earthquake ground motions. In this paper,a 3D finite element model of the transmission tower-line system is established considering the geometric nonlinearity of transmission lines. The nonlinear responses of the structural system at a canyon site are analyzed subjected to spatially varying ground motions. The spatial variations of ground motion associated with the wave passage,coherency loss,and local site effects are given. The spatially varying ground motions are simulated stochastically based on an empirical coherency loss function and a filtered Tajimi-Kanai power spectral density function. The site effect is considered by a transfer function derived from 1D wave propagation theory. Compared with structural responses calculated using the uniform ground motion and delayed excitations,numerical results indicate that seismic responses of transmission towers and power lines are amplified when considering spatially varying ground motions including site effects. Each factor of ground motion spatial variations has a significant effect on the seismic response of the structure,especially for the local site effect. Therefore,neglecting the earthquake ground motion spatial variations may lead to a substantial underestimation of the response of transmission tower-line system during strong earthquakes. Each effect of ground motion spatial variations should be incorporated in seismic analysis of the structural system. 展开更多
关键词 Transmission tower-line system Canyon site spatially varying ground motions Coherency loss Local site effect
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Approximation approach to the SRM based on root decomposition in the simulation of spatially varying ground motions 被引量:3
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作者 Wu Yongxin Gao Yufeng +2 位作者 Li Dayong Xu Changjie Ali H Mahfouz 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2013年第3期363-372,共10页
The spectral representation method (SRM) is widely used to simulate spatially varying ground motions. This study focuses on the approximation approach to the SRM based on root decomposition, which can improve the ef... The spectral representation method (SRM) is widely used to simulate spatially varying ground motions. This study focuses on the approximation approach to the SRM based on root decomposition, which can improve the efficiency of the simulation. The accuracy of the approximation approach may be affected by three factors: matrix for decomposition, distribution of frequency interpolation nodes and elements for interpolation. The influence of these factors on the accuracy of this approach is examined and the following conclusions are drawn. The SRM based on the root decomposition of the lagged coherency matrix exhibits greater accuracy than the SRM based on the root decomposition of the cross spectral matrix. The equal energy distribution of frequency interpolation nodes proposed in this study is more effective than the counter pith with an equal spacing. Elements for interpolation do not have much of an effect on the accuracy, so interpolation of the elements of the decomposed matrix is recommended because it is less complicated from a computational efficiency perspective. 展开更多
关键词 ground motions simulation spectral representation method spatially varying APPROXIMATION root decomposition
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The limit properties of spatial coherence of seismic ground motion
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作者 王君杰 陈玮 《Acta Seismologica Sinica(English Edition)》 CSCD 1997年第2期95-100,共6页
The limit properties of spatial coherence of seismic ground motion are studied based on the differential relation between rotation and translation in elastic theory, the results show that the empirical mathematical mo... The limit properties of spatial coherence of seismic ground motion are studied based on the differential relation between rotation and translation in elastic theory, the results show that the empirical mathematical model of spatial coherence must satisfy some functional characteristics. It is also indicated that the key problem to estimate rotational power spectrum densities is to obtain precisely the two order derivative of spatial coherence. 展开更多
关键词 earthquake ground motion spatial variation COHERENCE ROTATION limit property
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Simulation of multi-support depth-varying earthquake ground motions within heterogeneous onshore and offshore sites 被引量:8
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作者 Li Chao Li Hongnan +2 位作者 Hao Hong Bi Kaiming Tian Li 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期475-490,共16页
This paper presents a novel approach to model and simulate the multi-support depth-varying seismic motions(MDSMs) within heterogeneous offshore and onshore sites.Based on 1 D wave propagation theory,the three-dimens... This paper presents a novel approach to model and simulate the multi-support depth-varying seismic motions(MDSMs) within heterogeneous offshore and onshore sites.Based on 1 D wave propagation theory,the three-dimensional ground motion transfer functions on the surface or within an offshore or onshore site are derived by considering the effects of seawater and porous soils on the propagation of seismic P waves.Moreover,the depth-varying and spatial variation properties of seismic ground motions are considered in the ground motion simulation.Using the obtained transfer functions at any locations within a site,the offshore or onshore depth-varying seismic motions are stochastically simulated based on the spectral representation method(SRM).The traditional approaches for simulating spatially varying ground motions are improved and extended to generate MDSMs within multiple offshore and onshore sites.The simulation results show that the PSD functions and coherency losses of the generated MDSMs are compatible with respective target values,which fully validates the effectiveness of the proposed simulation method.The synthesized MDSMs can provide strong support for the precise seismic response prediction and performance-based design of both offshore and onshore large-span engineering structures. 展开更多
关键词 seismic motion simulation onshore and offshore sites ground motion spatial variation depth-varying motions transfer function
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A coherency function model of ground motion at base rock corresponding to strike-slip fault 被引量:4
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作者 丁海平 刘启方 +1 位作者 金星 袁一凡 《Acta Seismologica Sinica(English Edition)》 CSCD 2004年第1期64-69,共6页
At present, the method to study spatial variation of ground motions is statistic analysis based on dense array re-cords such as SMART-1 array, etc. For lacking of information of ground motions, there is no coherency f... At present, the method to study spatial variation of ground motions is statistic analysis based on dense array re-cords such as SMART-1 array, etc. For lacking of information of ground motions, there is no coherency function model of base rock and different style site. Spatial variation of ground motions in elastic media is analyzed by deterministic method in this paper. Taking elastic half-space model with dislocation source of fault, near-field ground motions are simulated. This model takes strike-slip fault and earth media into account. A coherency func-tion is proposed for base rock site. 展开更多
关键词 elastic media spatial variation of ground motion coherency function strip-fault stochastic vibration
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Effects of near-fault ground motions on the nonlinear behaviour of reinforced concrete framed buildings
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作者 Mirko Mazza 《Earthquake Science》 CSCD 2015年第4期285-302,共18页
The design provisions of current seismic codes are generally not very accurate for assessing effects of near-fault ground motions on reinforced concrete (r.c.) spatial frames, because only far-fault ground motions a... The design provisions of current seismic codes are generally not very accurate for assessing effects of near-fault ground motions on reinforced concrete (r.c.) spatial frames, because only far-fault ground motions are considered in the seismic codes. Strong near-fault earth- quakes are characterized by long-duration (horizontal) pulses and high values of the ratio ~PGA of the peak value of the vertical acceleration, PGAv, to the analogous value of the horizontal acceleration, PGAH, which can become critical for girders and columns. In this work, six- and twelve-storey r.c. spatial frames are designed according to the provisions of the Italian seismic code, considering the horizontal seismic loads acting (besides the gravity loads) alone or in combination with the vertical ones. The non- linear seismic analysis of the test structures is performed using a step-by-step procedure based on a two-parameter implicit integration scheme and an initial stress-like itera- tive procedure. A lumped plasticity model based on the Haar-K^n~m principle is adopted to model the inelastic behaviour of the frame members. For the numerical investigation, five near-fault ground motions with high values of the acceleration ratio C^p6A are considered. Moreover, following recent seismological studies, which allow the extraction of the largest (horizontal) pulse from a near-fault ground motion, five pulse-type (horizontal) ground motions are selected by comparing the original ground motion with the residual motion after the pulse has been extracted. The results of the nonlinear dynamic analysis carried out on the test structures highlighted thathorizontal and vertical components of near-fault ground motions may require additional consideration in the seis- mic codes. 展开更多
关键词 Near-fault ground motions Nonlineardynamic analysis r.c. spatial frames
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A modified method for simulating non-stationary multi-point earthquake ground motion
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作者 Li Minggao,Li Xin and Zhou Jing State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology,Dalian 116024,China 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2010年第2期201-211,共11页
A spectral-representation-based algorithm is proposed to simulate non-stationary and stochastic processes with evolutionary power,according to a prescribed non-stationary cross-spectral density matrix. Non-stationary ... A spectral-representation-based algorithm is proposed to simulate non-stationary and stochastic processes with evolutionary power,according to a prescribed non-stationary cross-spectral density matrix. Non-stationary multi-point seismic ground motions at different locations on the ground surface are generated for use in engineering applications. First,a modified iterative procedure is used to generate uniformly modulated non-stationary ground motion time histories which are compatible with the prescribed power spectrum. Then,ground motion time histories are modeled as a non-stationary stochastic process with amplitude and frequency modulation. The characteristic frequency and damping ratio of the Clough-Penzien acceleration spectrum are considered as a function of time in order to study the frequency time variation. Finally,two numerical examples are presented to validate the efficiency of the proposed method,and the results show that this method can be effectively applied to the dynamic seismic analysis of long and large scale structures. 展开更多
关键词 multi-support excitation spatial correlation power spectrum-compatibility NON-STATIONARY ground motion simulation
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基于双向门控循环单元的平板网架基底地震激励识别方法研究
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作者 聂桂波 严云山 +2 位作者 杨钦山 杜轲 王东旭 《施工技术(中英文)》 2025年第9期43-47,共5页
针对大跨空间结构在重大工程中的关键作用及健康监测需求,建立基于双向门控循环单元的深度学习框架,利用结构健康监测系统单点加速度响应数据反演基底地震激励。通过ABAQUS软件构建平板网架结构有限元模型,采用数据归一化与地震动调幅... 针对大跨空间结构在重大工程中的关键作用及健康监测需求,建立基于双向门控循环单元的深度学习框架,利用结构健康监测系统单点加速度响应数据反演基底地震激励。通过ABAQUS软件构建平板网架结构有限元模型,采用数据归一化与地震动调幅处理形成不同峰值加速度水平的标准化地震动时程数据,结合数值模拟获取对应的结构动力响应数据,形成包含训练集、验证集和测试集的地震激励与结构响应数据集。对比分析循环神经网络、长短期记忆网络、门控循环单元模型性能,结合Dropout正则化与Adam优化器提升模型泛化能力。研究结果表明,单测点输入下双向门控循环单元模型测试集决定系数为0.967,较循环神经网络、长短期记忆网络分别提升14.8%,2.2%;双向门控循环单元模型可在地震动峰值加速度为0.25~1g时实现常规监测数据到地震激励的映射。 展开更多
关键词 空间结构 网架 地震动 深度学习 反演 识别
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2023年甘肃积石山M_(S)6.2地震密集观测记录的区域性差异分析
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作者 侯瑞彬 潘逸尘 +2 位作者 董云瑶 付宇廷 刘蒙蒙 《世界地震工程》 北大核心 2025年第2期12-20,共9页
受区域构造环境及工程地质条件等因素的影响,地震动强度通常呈现出显著的区域性差异,构建考虑区域差异的地震动衰减关系是提高地震动预测精度并降低预测结果变异性的有效方法。本文利用2023年12月18日积石山M_(S)6.2地震中我国地震烈度... 受区域构造环境及工程地质条件等因素的影响,地震动强度通常呈现出显著的区域性差异,构建考虑区域差异的地震动衰减关系是提高地震动预测精度并降低预测结果变异性的有效方法。本文利用2023年12月18日积石山M_(S)6.2地震中我国地震烈度快速报告和地震预警系统台网观测到的838组密集强震记录,初步研究了此次地震在地震动衰减、场地效应和空间相关性方面的区域性差异,建立了考虑区域性差异的地震动衰减关系及空间相关的半变异函数模型。结果表明:在包含陇中盆地在内的黄土地区,中短周期地震动的衰减更慢,而在青藏高原地区衰减更快,陇南和甘南等地区的地震动强度整体更小;黄土场地的放大效应强于非黄土场地的放大效应;定西和武威地区的地震动强度整体更大且空间相关性更强,地震动参数的相关系数随距离的增大呈指数衰减,但在西宁和临夏等地区,地震动参数的空间相关性较弱。所得结果可为该地震区区域性地震动衰减关系的构建提供参考。 展开更多
关键词 积石山地震 地震动衰减 场地效应 空间相关性 区域性差异
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西藏定日6.8级地震地面运动特征空间分布分析
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作者 王晓磊 李佳具 +4 位作者 刘佳慧 赵紫旭 王浠铭 包旭 阎卫东 《地震工程学报》 北大核心 2025年第5期1175-1188,共14页
北京时间2025年1月7日9时5分,西藏自治区日喀则市定日县发生6.8级强烈地震,造成大量人员伤亡和财产损失。针对中国地震局工程力学研究所强震动观测中心提供的35组地震动记录,首先对原始数据进行基线校正与滤波处理,绘制水平和竖向加速... 北京时间2025年1月7日9时5分,西藏自治区日喀则市定日县发生6.8级强烈地震,造成大量人员伤亡和财产损失。针对中国地震局工程力学研究所强震动观测中心提供的35组地震动记录,首先对原始数据进行基线校正与滤波处理,绘制水平和竖向加速度反应谱;随后开展峰值加速度(PGA)和周期0.2 s谱加速度[S_(a)(0.2 s)]空间分布,累积绝对速度(CAV)和Arias强度(I_(A))等广义强度参数分布,以及显著持时(D S)分布的系统分析,最终完成三向地震动脉冲特征识别。研究结果表明:(1)本次地震事件对自振周期0.2~0.7 s的建筑结构破坏效应显著,其中拉孜县台站XZ.D0007记录的南北向加速度反应谱峰值超出8度极罕遇地震设计谱限值;(2)CAV和I_(A)参数在水平向和竖向呈现相似空间分布特征;(3)定结县台站XZ.D0004和拉孜县台站XZ.D0007处的CAV值超过相关规定阈值,拉孜县台站XZ.D0007处的I_(A)值超过相关规定阈值;(4)地震动呈现典型上/下盘效应,上盘区域S_(a)(0.2 s)与PGA较高而持时较短,下盘区域呈现相反特征;(5)基于Baker脉冲辨识准则,确认本次地震动均不是脉冲地震动。研究结果将为揭示地震动的强度分布特征提供科学依据,为西藏地区日后工程结构的抗震设防提供参考。 展开更多
关键词 定日6.8级地震 地震动 空间分布 反应谱 强度参数
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地震动相干函数模型的研究进展
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作者 段宇航 曾庆龙 +2 位作者 魏凯 赵华光 黄春威 《低温建筑技术》 2025年第1期41-45,共5页
为讨论地震动相干函数模型的研究现状,文中将现有考虑不同影响因素的相干函数模型进行分类梳理,并基于3次不同的地震记录,对比不同相干函数模型对地震动空间相关性的模拟效果,发现不同模型在不同场地条件下描述地震动空间变化特性的效... 为讨论地震动相干函数模型的研究现状,文中将现有考虑不同影响因素的相干函数模型进行分类梳理,并基于3次不同的地震记录,对比不同相干函数模型对地震动空间相关性的模拟效果,发现不同模型在不同场地条件下描述地震动空间变化特性的效果差异较大,为后续相干函数模型的研究提供参考,也为结构抗震分析时,选用合适的相干函数模型来描述地震动的空间变化特性提供建议。 展开更多
关键词 相干函数模型 地震动空间相关性 结构抗震分析
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考虑强余震的钢筋混凝土桥梁易损性分析方法研究
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作者 李悦 曹竞 +2 位作者 张常勇 李冲 黄帅 《世界地震工程》 北大核心 2025年第4期64-73,共10页
在发生连续地震时,强余震对桥梁结构造成严重危害。在地震易损性分析中,为考虑强余震的影响,提出基于空间拟合的结构易损性分析方法,以一座三跨连续梁桥为对象,采用分段式的二元一次函数构建概率地震需求模型,对比分析了以地震动峰值加... 在发生连续地震时,强余震对桥梁结构造成严重危害。在地震易损性分析中,为考虑强余震的影响,提出基于空间拟合的结构易损性分析方法,以一座三跨连续梁桥为对象,采用分段式的二元一次函数构建概率地震需求模型,对比分析了以地震动峰值加速度、峰值速度和谱加速度为地震强度指标时,概率地震需求模型的拟合效果和可靠性,并分别对基于空间和单面拟合的主余震桥梁结构易损性进行分析。结果表明:基于空间拟合的主余震结构易损性分析结果体现了强余震对桥梁的损害,能有效避免低估桥梁在强余震作用下的超越概率。利用空间拟合方法获取的概率地震需求模型能更准确地解释地震需求和结构损伤的关系;选取谱加速度作为地震强度参数时,主余震作用下模型的拟合效果最好。主余震作用中的强震主导了桥梁极限状态超越概率的增长速度,基于空间拟合的易损性分析中余震强度的增长对超越概率的影响更大,这有利于对桥梁抗震性能的保守估计。该桥梁易损性评估方法可为公路梁桥设计提供参考。 展开更多
关键词 主余震 连续梁桥 地震动强度参数 易损性曲面 空间拟合
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On time-step in structural seismic response analysis under ground displacement/acceleration 被引量:3
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作者 TianYuji~+ and Yang Qingshan~(++) School of Civil Engineering,Beijing Jiaotong University,Beijing 100044,China +Associate Professor ++Professor 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2009年第3期341-347,共7页
There are two models in use today to analyze structural responses when subjected to earthquake ground motions, the Displacement Input Model (DIM) and the Acceleration Input Model (AIM). The time steps used in dire... There are two models in use today to analyze structural responses when subjected to earthquake ground motions, the Displacement Input Model (DIM) and the Acceleration Input Model (AIM). The time steps used in direct integration methods for these models are analyzed to examine the suitability of DIM. Numerical results are presented and show that the time-step for DIM is about the same as for AIM, and achieves the same accuracy. This is contrary to previous research that reported that there are several sources of numerical errors associated with the direct application of earthquake displacement loading, and a very small time step is required to define the displacement record and to integrate the dynamic equilibrium equation. It is shown in this paper that DIM is as accurate and suitable as, if not more than, AIM for analyzing the response of a structure to uniformly distributed and spatially varying ground motions. 展开更多
关键词 integration time step multi-supported structure displacement input model acceleration input model spatially varying ground motions
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融合时频空间特征的土石坝地震易损性分析改进MLP模型研究 被引量:5
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作者 王晓玲 李清梦 +3 位作者 刘宗显 余佳 余红玲 王昊东 《水利学报》 EI CSCD 北大核心 2024年第1期13-23,共11页
针对现有地震易损性分析中采用的峰值加速度、峰值速度等地震动指标未能充分反映地震动复杂的时频空间特征,且现有基于对数空间线性函数关系假设的地震需求模型难以揭示地震动指标与地震响应间复杂非线性关系的问题,提出一种融合时频空... 针对现有地震易损性分析中采用的峰值加速度、峰值速度等地震动指标未能充分反映地震动复杂的时频空间特征,且现有基于对数空间线性函数关系假设的地震需求模型难以揭示地震动指标与地震响应间复杂非线性关系的问题,提出一种融合时频空间特征的土石坝地震易损性改进多层感知机(Multi Layer Perceptron,MLP)模型。该模型利用胶囊网络(Capsule Network,CapsNet)能够充分捕捉和表征目标特征空间位置分布的优势,从地震动小波时频图中提取反映地震动时频空间分布的深层特征,并以特征拼接的方式与既有特征进行融合,构建地震动融合指标;进一步地,采用树形Parzen优化算法(Tree structured Parzen Estimator,TPE)对MLP的神经元数量、学习率等超参数进行优化,提出基于TPE-MLP的土石坝地震需求模型,以反映地震动融合指标与地震响应间的复杂非线性关系,进而实现土石坝地震易损性的可靠分析。案例分析表明,相比于既有地震动指标,基于地震动时频空间特征融合指标的土石坝地震需求模型的MAE降低了40.5%,表明了所提模型的可靠性和优越性。 展开更多
关键词 土石坝 地震易损性 地震动时频空间特征 地震需求模型 胶囊网络 多层感知机 小波变换
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跨断层工程输入地震动模拟及地震响应
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作者 胡进军 盛兆琦 +1 位作者 谢礼立 邹育麟 《地震工程与工程振动》 CSCD 北大核心 2024年第1期1-13,共13页
为解决跨断层结构输入地震动的问题,揭示其地震响应规律,基于断层物理模型并引入等效脉冲函数,构建考虑地震动空间变化特征的转换矩阵,提出一种高、低频叠加的混合模拟方法,实现断层两侧输入地震动的模拟。首先,依据建立的桥址场地断层... 为解决跨断层结构输入地震动的问题,揭示其地震响应规律,基于断层物理模型并引入等效脉冲函数,构建考虑地震动空间变化特征的转换矩阵,提出一种高、低频叠加的混合模拟方法,实现断层两侧输入地震动的模拟。首先,依据建立的桥址场地断层模型,采用随机有限断层方法生成目标点位的高频地震动;再由走滑断层两侧地震动的脉冲效应和永久位移的特征,采用不同的等效脉冲模型分别模拟断层平行向和法向的低频脉冲分量,两者在截止频率处采用Butterworth滤波器进行高通和低通滤波,依据场地模型以及走滑断层两侧地震动的空间相干性,建立转换矩阵以模拟其空间变异性,最终将匹配滤波后的高、低频分量在时域叠加得到断层两侧的输入地震动。从时程、频谱以及结构响应三方面验证了模拟结果的合理性。以实际的跨断层悬索桥为研究对象,基于OpenSees建立全桥的三维有限元模型,采用模拟的断层两侧地震动进行动力时程分析。研究结果表明:桥梁跨断层的角度和位置,以及永久位移幅值对跨断层桥梁地震响应有显著影响,较大的残余内力和残余位移是造成跨断层桥梁破坏的重要原因。 展开更多
关键词 跨断层工程 断层地震动 地震动模拟 脉冲模型 地震动空间变化
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考虑地震动空间变化的区域公路网连通可靠性研究
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作者 高颖 韩松旭 曹泽林 《防灾减灾工程学报》 CSCD 北大核心 2024年第5期1051-1061,共11页
区域公路网是社会交通大动脉和地震灾害救援生命线,连通可靠性反映了地震灾害发生后公路网的通行能力,地震动受震源位置及震中距的影响而具有显著的空间变化,对公路网的震后破坏状态具有重要影响。以邯郸地区公路网为研究对象,通过设定... 区域公路网是社会交通大动脉和地震灾害救援生命线,连通可靠性反映了地震灾害发生后公路网的通行能力,地震动受震源位置及震中距的影响而具有显著的空间变化,对公路网的震后破坏状态具有重要影响。以邯郸地区公路网为研究对象,通过设定震源位置与震级,研究地震动空间变化影响下的区域公路网连通可靠性。首先,设定邯郸市1830年磁县大地震及一个虚拟地震为地震情景,分别设置震级为M6.0、6.5、7.0和7.5,基于地震动衰减关系表达地震动空间变化,得到公路单元对应的PGA。然后,结合地震易损性模型分析公路单元震后通行概率。最后,针对区域公路网空间范围大的典型特征,优化城市道路所用的最大可能状态算法,对邯郸地区公路网进行连通可靠性评估。结果表明,区域尺度下公路网络单元和节点数量多、空间展布复杂,其抗震连通可靠性与既有公路分布、区域城市位置等因素密切相关,地震动空间变化显著影响公路单元的震后破坏状态和通行概率,研究成果可为区域尺度公路网地震灾害评估及抗震韧性研究提供参考。 展开更多
关键词 区域公路网 连通可靠性 地震动空间变化 震后通行概率
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空间效应下超长型钢混凝土结构地震响应研究 被引量:1
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作者 邓敬旻 赵起超 +1 位作者 林焯铭 彭修宁 《振动与冲击》 EI CSCD 北大核心 2024年第17期163-176,共14页
超长结构空间效应下的地震响应分析是当前抗震研究的热点之一,空间效应对尺寸较小的建筑影响不大,但对平面投影尺度很大的结构地震响应的影响不可忽略。在传统三角级数法合成人工一维地震的基础上采用了三维相干函数矩阵,通过选取合适... 超长结构空间效应下的地震响应分析是当前抗震研究的热点之一,空间效应对尺寸较小的建筑影响不大,但对平面投影尺度很大的结构地震响应的影响不可忽略。在传统三角级数法合成人工一维地震的基础上采用了三维相干函数矩阵,通过选取合适的模型及相应参数合成考虑空间效应的人工三向地震动。采用了4条自然波及2条人工波对超长型钢混凝土结构进行抗震计算。结果表明:超长结构不适宜仅采用振型分解反应谱法进行地震计算,还需采用地震时程分析法补充计算;与一致激励相比,行波效应会促使构件内力响应两极分化,既能减小整体内力响应,又能增大部分峰值内力,其效果不仅与视波速有关还与激励方向有关,低视波速和长边激励时行波效应加强;与单向激励相比,双向激励下的行波效应影响更复杂,既能改变构件内力响应和主、次动力响应的变化趋势,也能改变不利构件的分布位置;相干效应与行波效应叠加时,会进一步改变构件动力和内力响应。高视波速下相干效应为主导,底层构件内力响应增大。低视波速下行波效应为主导,地震响应呈现两极分化;不利构件的分布不仅与建筑的开洞、设缝及楼层刚度变化等因素有关,还与地震激励方向有关,不利构件沿激励方向有规律地延伸分布。 展开更多
关键词 超长结构 地震动空间效应 人工三向地震动 行波效应 相干效应
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基于谱元法的近场地震动空间相干性分析
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作者 袁安琪 丁海平 《苏州科技大学学报(工程技术版)》 CAS 2024年第2期1-7,共7页
由于专门用于地震动空间相关性研究的台阵强震记录偏少,基于强震记录统计回归的经验模型发展受限,采用谱元程序SPECFEM2D合成了不同震源机制引起的近场强地震动。通过对地震动场模拟结果进行地震动空间相关性分析,着重比较了不同的震中... 由于专门用于地震动空间相关性研究的台阵强震记录偏少,基于强震记录统计回归的经验模型发展受限,采用谱元程序SPECFEM2D合成了不同震源机制引起的近场强地震动。通过对地震动场模拟结果进行地震动空间相关性分析,着重比较了不同的震中距对地震动空间相关性的影响,给出了不同震中距对应的相干函数,并得到如下结论:基岩地震动的相干性随震中距的增加而降低;震中距小于或等于15 km时的相干系数大于倾滑断层结果,震中距大于15 km时的相干系数小于倾滑断层结果,但均大于走滑断层结果;基于地震动模拟结果得到的相干性高于基于实测记录的统计结果。 展开更多
关键词 地震动模拟 谱元法 震源机制 地震动相干性 震中距
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