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A new methodology for energy-based seismic design of steel moment frames 被引量:3
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作者 Mebrahtom Gebrekirstos Mezgebo Eric M. Lui 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第1期131-152,共22页
A procedure is proposed whereby input and hysteretic energy spectra developed for single-degree-of-freedom (SDOF) systems are applied to multi-degree-of-freedom (MDOF) steel moment resisting frames. The proposed p... A procedure is proposed whereby input and hysteretic energy spectra developed for single-degree-of-freedom (SDOF) systems are applied to multi-degree-of-freedom (MDOF) steel moment resisting frames. The proposed procedure is verified using four frames, viz., frame with three-, five-, seven- and nine-stories, each of which is subjected to the fault- normal and fault-parallel components of three actual earthquakes. A very good estimate for the three- and five-story frames, and a reasonably acceptable estimate for the seven-, and nine-story frames, have been obtained. A method for distributing the hysteretic energy over the frame height is also proposed. This distribution scheme allows for the determination of the energy demand component of a proposed energy-based seismic design (EBSD) procedure for each story. To address the capacity component of EBSD, a story-wise optimization design procedure is developed by utilizing the energy dissipating capacity from plastic hinge formation/rotation for these moment frames. The proposed EBSD procedure is demonstrated in the design of a three-story one-bay steel moment frame. 展开更多
关键词 energy-based seismic design hysteretic energy distribution MDOF systems steel moment frames story-wise optimization design
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Seismic effectiveness evaluation and optimized design of tie up method for securing museum collections
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作者 Wang Meng Yan Yi +3 位作者 Yang Weiguo Liu Pei Ge Jiaqi Ma Botao 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2024年第3期741-763,共23页
To quantify the seismic effectiveness of the most commonly used fishing line tie up method for securing museum collections and optimize fixed strategies for exhibitions,shaking table tests of the seismic systems used ... To quantify the seismic effectiveness of the most commonly used fishing line tie up method for securing museum collections and optimize fixed strategies for exhibitions,shaking table tests of the seismic systems used for typical museum collection replicas have been carried out.The influence of body shape and fixed measure parameters on the seismic responses of replicas and the interaction behavior between replicas and fixed measures have been explored.Based on the results,seismic effectiveness evaluation indexes of the tie up method are proposed.Reasonable suggestions for fixed strategies are given,which provide a basis for the exhibition of delicate museum collections considering the principle of minimizing seismic responses and intervention.The analysis results show that a larger ratio of height of mass center to bottom diameter led to more intense rocking responses.Increasing the initial pretension of fishing lines was conducive to reducing the seismic responses and stress variation of the lines.Through comprehensive consideration of the interaction forces and effective securement,it is recommended to apply 20%of breaking stress as the initial pretension.For specific museum collections that cannot be effectively protected by the independent tie up method,an optimized strategy of a combination of fishing lines and fasteners is recommended. 展开更多
关键词 tie up method museum collections shaking table test seismic effectiveness optimized design
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Topology Optimal Design of Material Microstructures Using Strain Energy-based Method 被引量:24
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作者 Zhang Weihong Wang Fengwen Dai Gaoming Sun Shiping 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2007年第4期320-326,共7页
Sensitivity analysis and topology optimization of microstructures using strain energy-based method is presented. Compared with homogenization method, the strain energy-based method has advantages of higher computing e... Sensitivity analysis and topology optimization of microstructures using strain energy-based method is presented. Compared with homogenization method, the strain energy-based method has advantages of higher computing efficiency and simplified programming. Both the dual convex programming method and perimeter constraint scheme are used to optimize the 2D and 3D microstructures. Numerical results indicate that the strain energy-based method has the same effectiveness as that of homogenization method for orthotropic materials. 展开更多
关键词 strain energy-based method homogenization method microstructure design topology optimization
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An improved pseudo-static method for seismic resistant design of underground structures 被引量:4
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作者 刘如山 石宏彬 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2006年第2期189-193,共5页
This paper describes a commonly used pseudo-static method in seismic resistant design of the cross section of underground structures. Based on dynamic theory and the vibration characteristics of underground structures... This paper describes a commonly used pseudo-static method in seismic resistant design of the cross section of underground structures. Based on dynamic theory and the vibration characteristics of underground structures, the sources of errors when using this method are analyzed. The traditional seismic motion loading approach is replaced by a method in which a one-dimensional soil layer response stress is differentiated and then converted into seismic live loads. To validate the improved method, a comparison of analytical results is conducted for internal forces under earthquake shaking of a typical shallow embedded box-shaped subway station structure using four methods: the response displacement method, finite element response acceleration method, the finite element dynamic analysis method and the improved pseudo-static calculation method. It is shown that the improved finite element pseudo-static method proposed in this paper provides an effective tool for the seismic design of underground structures. The evaluation yields results close to those obtained by the finite element dynamic analysis method, and shows that the improved finite element pseudo-static method provides a higher degree of precision. 展开更多
关键词 underground structures seismic design finite element method pseudo-static method dynamic analysis method
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Seismic Design Strategy of High Pier Bridge
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作者 Jianmin He 《Journal of World Architecture》 2024年第2期1-6,共6页
China’s infrastructure construction has been continuously improving in recent years,especially its highway construction,which spans from north to south and connects east to west.Some special areas are also interconne... China’s infrastructure construction has been continuously improving in recent years,especially its highway construction,which spans from north to south and connects east to west.Some special areas are also interconnected through bridges,but constructing highway bridges through complex terrains or across valleys and mountain gullies presents significant challenges,requiring an increase in the height of bridge piers.These bridge piers generally reach tens or even hundreds of meters in height.Furthermore,the construction of these high-pier bridges is becoming increasingly widespread.Not only do they pose greater construction challenges,but they also have higher requirements for seismic resistance.This article primarily analyzes the characteristics of high-pier bridges and proposes seismic design schemes,calculation methods,and design strategies to enhance the construction quality of high-pier bridges. 展开更多
关键词 High-end bridge CHARACTERISTIC seismic design Calculation method
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The Ultimate Anti-Seismic Design Method
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作者 Ioannis N. Lymperis 《Open Journal of Civil Engineering》 2023年第4期771-801,共31页
The design mechanisms and methods of the invention are intended to minimize problems related to the safety of structures in the event of natural phenomena such as earthquakes, tornadoes, and strong winds. It is achiev... The design mechanisms and methods of the invention are intended to minimize problems related to the safety of structures in the event of natural phenomena such as earthquakes, tornadoes, and strong winds. It is achieved by controlling the deformations of the structure. Damage and deformation are closely related concepts since the control of deformations also controls the damage. The design method of applying artificial compression to the ends of all longitudinal reinforced concrete walls and, at the same time, connecting the ends of the walls to the ground using ground anchors placed at the depths of the boreholes, transfers the inertial stresses of the structure in the ground, which reacts as an external force in the structure’s response to seismic displacements. The wall with the artificial compression acquires dynamic, larger active cross-section and high axial and torsional stiffness, preventing all failures caused by inelastic deformation. By connecting the ends of all walls to the ground, we control the eigenfrequency of the structure and the ground during each seismic loading cycle, preventing inelastic displacements. At the same time, we ensure the strong bearing capacity of the foundation soil and the structure. By designing the walls correctly and placing them in proper locations, we prevent the torsional flexural buckling that occurs in asymmetrical floor plans, and metal and tall structures. Compression of the wall sections at the ends and their anchoring to the ground mitigates the transfer of deformations to the connection nodes, strengthens the wall section in terms of base shear force and shear stress of the sections, and increases the strength of the cross-sections to the tensile at the ends of the walls by introducing counteractive forces. The use of tendons within the ducts prevents longitudinal shear in the overlay concrete, while anchoring the walls to the foundation not only dissipates inertial forces to the ground but also prevents rotation of the walls, thus maintaining the structural integrity of the beams. The prestressing at the bilateral ends of the walls restores the structure to its original position even inelastic displacements by closing the opening of the developing cracks. 展开更多
关键词 ULTIMATE Control-System ANTI-seismic EARTHQUAKES CONSTRUCTION method design
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An alternative practical design method for structures with viscoelastic dampers 被引量:3
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作者 Joaquim Mimusse Tchamo Zhou Ying 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第3期459-473,共15页
Viscoelastic dampers(VEDs) are one of the most common passive control devices used in new and retrofit building projects which reduce the structure responses and dissipate seismic energy during an earthquake.Various... Viscoelastic dampers(VEDs) are one of the most common passive control devices used in new and retrofit building projects which reduce the structure responses and dissipate seismic energy during an earthquake.Various methods to design this kind of dampers have been proposed based on the desired level of additional damping,eigenvalue assignment,modal strain energy,linear quadratic regulator control theories,and other approaches.In the current engineering practice,the popular method is the one based on the modal strain energy that uses the inter-story lateral stiffness as one of the main variables for damper design.However,depending on the configuration of the structure,in some cases the resulting interstory lateral stiffness can be very large.Consequently,the dampers size would also be large producing much more damping than that effectively necessary,resulting in an increase of the overall cost of the supplemental damping system and causing excessive stress on the structural elements connected to the dampers.In this paper an alternative practical design method for structures with VEDs is proposed.This method uses the inter-story shear forces as one of the main variables to accomplish the damper design compared to what was done in previous studies.Nonlinear time-history analyses were conducted on a 7-story reinforced concrete(RC) structure to check the reliability and effectiveness of the proposed method.Comparisons on the seismic performance between the structure without dampers and that equipped with VEDs were carried out.It is concluded that the proposed method results in a very suitable size of dampers,which are able to improve the performance of the structure at all levels of earthquake ground motions and satisfying the drift requirement prescribed in the codes. 展开更多
关键词 viscoelastic dampers passive control seismic design method inter-story shear forces earthquake engineering
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Seismic analysis of cantilever earth retaining walls embedded in dry sand by simplified approaches and finite element method
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作者 FERRO Edgar OSS Andrea SIMEONI Lucia 《岩土力学》 EI CAS CSCD 北大核心 2022年第6期1617-1634,共18页
In engineering practice simplified methods are essential to the seismic design of embedded earth retaining walls,as fullydynamic numerical analyses are costly,time-consuming and require specific expertise.Recently dev... In engineering practice simplified methods are essential to the seismic design of embedded earth retaining walls,as fullydynamic numerical analyses are costly,time-consuming and require specific expertise.Recently developed pseudostatic methods provide earth stresses and internal forces,even in those cases in which the strength of the soil surrounding the structure is not entirely mobilised.Semiempirical correlations or Newmark sliding block method provide an estimate of earthquake-induced permanent displacements.However,the use of these methods is hindered by uncertainties in the evaluation of a few input parameters,affecting the reliability of the methods.This study uses 1 D site response analyses and 2 D fully-dynamic finite element analyses to show that simplified methods can provide a reasonable estimate of the maximum bending moment and permanent displacements for stiff cantilever walls embedded in uniform sand,providing that a few input parameters are evaluated through semiempirical correlations and a simple 1 D site response analysis. 展开更多
关键词 embedded retaining wall seismic design finite elements pseudostatic methods NEWMARK permanent displacement
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延性抗震设计理念的发展及应用研究综述
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作者 贾良玖 罗旭亮 +1 位作者 王立军 项平 《东南大学学报(自然科学版)》 北大核心 2025年第1期30-40,共11页
延性抗震设计旨在通过结构发生较大弹塑性变形来降低结构地震响应。这一抗震设计理念广泛应用于大多数国家抗震规范中,其核心思路是通过使用强度折减系数对设防地震反应谱进行折减,使结构通过非弹性变形耗散地震能量。强度折减系数主要... 延性抗震设计旨在通过结构发生较大弹塑性变形来降低结构地震响应。这一抗震设计理念广泛应用于大多数国家抗震规范中,其核心思路是通过使用强度折减系数对设防地震反应谱进行折减,使结构通过非弹性变形耗散地震能量。强度折减系数主要由延性折减系数和结构超强系数决定。同时,能力设计法是实现延性抗震的主要工具,该方法要求体系内的非延性构件在延性构件进入非线性阶段前后都保持弹性,以实现整个结构体系的延性设计。通过梳理延性抗震设计理念的研究历史,简要介绍了延性系数、结构周期、场地条件、阻尼比等因素对延性折减系数的影响,阐述了现有强度折减系数的组成和计算方法。最后,总结了中国、美国、欧洲、日本抗震规范中延性设计的应用情况。 展开更多
关键词 延性抗震设计 能力设计法 强度折减系数 延性折减系数 抗震设计规范
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外剪内框结构体系力学计算与抗震性能
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作者 张文津 肖绪文 +4 位作者 肖建庄 李水生 丁陶 吕凤悟 周泉 《东南大学学报(自然科学版)》 北大核心 2025年第1期1-8,共8页
为灵活设计商场、库房等大开间建筑的内部空间,提出了一种外剪内框结构体系,即在普通框架结构四周布置剪力墙,将其作为主要抗侧力构件,内部框架结构主要承担竖向荷载。推导了外剪内框结构体系的内力分析方法,提出了框架与剪力墙相对刚... 为灵活设计商场、库房等大开间建筑的内部空间,提出了一种外剪内框结构体系,即在普通框架结构四周布置剪力墙,将其作为主要抗侧力构件,内部框架结构主要承担竖向荷载。推导了外剪内框结构体系的内力分析方法,提出了框架与剪力墙相对刚度控制参数的计算公式与设计方法。基于某4层框架结构,设计了对应的外剪内框结构,评估了外剪内框结构体系的抗震性能与抗倒塌能力。结果表明,外剪内框结构体系内部框架柱截面面积相对较小,可以实现更大的建筑空间,框架-剪力墙相对刚度的设计方法可用于实际设计。材料用量相同时,外剪内框结构较框架结构抗震性能更好,其抗侧刚度提升30.3%,极限承载力提高7.3%,罕遇地震下基底剪力减小13.8%,顶点位移减小66.3%,最大层间位移角减小74.3%。 展开更多
关键词 外剪内框结构体系 剪力分担比 弹性计算方法 刚度设计 抗震性能
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螺栓连接装配式墙板结构连接节点本构模型及体系建模方法
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作者 熊峰 吴朝安 +2 位作者 冉明明 钟亚超 王宇豪 《工程科学与技术》 北大核心 2025年第1期145-156,共12页
螺栓连接装配式墙板结构体系具有建造快速、施工便捷、连接可靠、可拆卸和可修复等优势,适合低多层乡村住宅建筑,近年来工程应用逐渐增多。该体系预制墙板之间采用离散的干式螺栓连接,受力时接缝处产生滑移变形,与传统的现浇剪力墙结构... 螺栓连接装配式墙板结构体系具有建造快速、施工便捷、连接可靠、可拆卸和可修复等优势,适合低多层乡村住宅建筑,近年来工程应用逐渐增多。该体系预制墙板之间采用离散的干式螺栓连接,受力时接缝处产生滑移变形,与传统的现浇剪力墙结构或湿法连接的剪力墙结构存在本质区别,为了分析结构体系的整体性,建立适合该结构体系的“非等同现浇”的抗震设计方法具有重要意义。本文结合已进行的螺栓连接节点轴向拉伸试验和剪切试验,提出螺栓连接节点拉伸和剪切的本构模型。在此基础上,将单个螺栓连接节点简化为3个平动自由度(x、y、z)的非线性弹簧,模拟连接节点的力学行为,建立简化计算模型。借助螺栓连接预制墙板的拟静力试验结果验证了螺栓连接节点简化模型的有效性,显示可用于分析结构体系的抗震性能。基于节点简化模型,依托Midas Gen软件,提出了螺栓连接装配式墙板结构体系的建模方法。以实际工程为例,建立了该结构的设计模型,并进行在小震、中震作用下的弹性分析及大震作用下的弹塑性时程分析。结果表明:在各地震工况下,螺栓连接装配式墙板结构体系侧向位移较小,层间位移角分别小于弹性位移角限值的1/1200和弹塑性层间位移角限值的1/120,符合规范要求,螺栓连接节点承载力满足抗震需求,墙板角部混凝土没有被压溃,说明螺栓连接装配式墙板结构体系抗震性能优越。研究成果可为螺栓连接装配式墙板结构体系的工程建设提供设计依据,为该新型结构体系的推广奠定理论基础。 展开更多
关键词 装配式混凝土墙板结构 螺栓连接 本构模型 体系建模方法 抗震设计
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隔震技术在某不规则医疗建筑中的应用及分析
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作者 余彬彬 余波 陈欢 《山西建筑》 2025年第5期45-51,共7页
随着《建筑工程抗震管理条例》的正式实施,医疗类建筑采用隔震减震技术将越来越普遍。以某不规则医疗建筑的隔震设计为案例背景,采用GB/T 51408—2021建筑隔震设计标准整体分析方法进行隔震设计,介绍了整体分析方法的设计流程及设计要... 随着《建筑工程抗震管理条例》的正式实施,医疗类建筑采用隔震减震技术将越来越普遍。以某不规则医疗建筑的隔震设计为案例背景,采用GB/T 51408—2021建筑隔震设计标准整体分析方法进行隔震设计,介绍了整体分析方法的设计流程及设计要点。结合案例存在多项不规则的特点,阐述了隔震设计的性能目标设定、隔震支座布置、隔震设计流程等要点,通过计算分析表明,结构的各项指标均满足要求,并补充罕遇地震作用下的弹塑性时程分析,结果显示结构的支座参数等均能满足规范要求,罕遇地震下结构耗能主要以隔震支座耗能为主,上部结构构件损伤较小,可见结构具有较好的隔震效果,能够满足预期性能目标,可以为类似的存在多项不规则的隔震项目提供一定的参考。 展开更多
关键词 医疗建筑 多项不规则 隔震设计 整体分析方法
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钢结构厂房抗震性能评估及减震设计优化
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作者 张文明 牛家乐 《粘接》 2025年第3期173-176,共4页
地震作为一种严重的自然灾害,对钢结构厂房等重要工业设施的影响不可忽视。本研究以钢结构厂房为研究对象,通过模态分析、动力响应分析以及减震设计等方面的研究,评估了其在地震作用下的抗震性能,并提出了相应的优化方案。通过模态分析... 地震作为一种严重的自然灾害,对钢结构厂房等重要工业设施的影响不可忽视。本研究以钢结构厂房为研究对象,通过模态分析、动力响应分析以及减震设计等方面的研究,评估了其在地震作用下的抗震性能,并提出了相应的优化方案。通过模态分析发现,结构存在低频振动特性及易受地震荷载影响的问题;通过加速度响应分析揭示了不同区域的动力响应差异情况。此外,通过减震设计,采用了TMD设备来提升结构的抗震性能,并对TMD的设计参数和安装工况进行了优化。研究结果表明,通过对TMD的设计参数和安装工况进行优化,发现通过安装8台TMD设备,并且TMD质量比为3%时,可以显著提升厂房结构的抗震性能。综上所述,本研究为钢结构厂房抗震设计提供了重要的理论和实践指导。 展开更多
关键词 模态分析 抗震性能 减震设计 有限元方法
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Improved design of special boundary elements for T-shaped reinforced concrete walls 被引量:9
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作者 Ji Xiaodong Liu Dan Qian Jiaru 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2017年第1期83-95,共13页
This study examines the design provisions of the Chinese GB 50011-2010 code for seismic design of buildings for the special boundary elements of T-shaped reinforced concrete walls and proposes an improved design metho... This study examines the design provisions of the Chinese GB 50011-2010 code for seismic design of buildings for the special boundary elements of T-shaped reinforced concrete walls and proposes an improved design method. Comparison of the design provisions of the GB 50011-2010 code and those of the American code ACI 318-14 indicates a possible deficiency in the T-shaped wall design provisions in GB 50011-2010. A case study of a typical T-shaped wall designed in accordance with GB 50011-2010 also indicates the insufficient extent of the boundary element at the non-flange end and overly conservative design of the flange end boundary element. Improved designs for special boundary elements ofT-shaped walls are developed using a displacement-based method. The proposed design formulas produce a longer boundary element at the non-flange end and a shorter boundary element at the flange end, relative to those of the GB 50011-2010 provisions. Extensive numerical analysis indicates that T-shaped walls designed using the proposed formulas develop inelastic drift of 0.01 for both cases of the flange in compression and in tension. 展开更多
关键词 code comparison displacement-based method seismic design special boundary element T-shaped wall
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长持时地震动对建筑结构抗震影响的研究进展 被引量:2
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作者 王维 李爱群 王星星 《工程力学》 EI CSCD 北大核心 2024年第9期18-30,共13页
该文综述了长持时地震动作用下建筑结构抗震性能的研究进展。介绍了长持时地震动的定义和特性;梳理了长持时地震动作用下建筑结构数值模拟、试验研究和理论分析的研究进展;详细综述了长持时地震动作用下建筑结构的延性性能、耗能能力、... 该文综述了长持时地震动作用下建筑结构抗震性能的研究进展。介绍了长持时地震动的定义和特性;梳理了长持时地震动作用下建筑结构数值模拟、试验研究和理论分析的研究进展;详细综述了长持时地震动作用下建筑结构的延性性能、耗能能力、易损性和抗倒塌性能的研究进展。此外,介绍了考虑长持时地震作用影响的建筑结构抗震设计方法,梳理了国内外建筑结构抗震设计规范对长持时地震作用的考虑方法,并对长持时地震动作用下建筑结构抗震性能的研究进行了展望。建议关注长持时地震动作用下建筑结构的抗震性能,进一步研究长持时地震动的定义和特性,改进长持时地震动作用下建筑结构的数值模拟、理论分析和试验研究方法,深入探讨长持时地震动作用下各类建筑结构的地震响应、易损性和抗倒塌性能,为未来结构抗震设计及评估中考虑长持时地震作用的影响和规范修订提供参考。 展开更多
关键词 防灾减灾工程及防护工程 综述 长持时地震动 定义 建筑结构 抗震性能 设计方法
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基于时程分析法的中美隔震设计对比研究 被引量:1
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作者 张蜀泸 张志军 +1 位作者 李嘉琪 罗秀 《四川建筑科学研究》 2024年第2期16-24,共9页
介绍了中国《建筑隔震设计标准》(GB/T 51408—2021)(以下简称《隔标》)和美国Minimum design loads and associated criteria for buildings and other structures(ASCE 7-16)隔震设计的相关要求,并针对基于《建筑抗震设计规范》(GB 50... 介绍了中国《建筑隔震设计标准》(GB/T 51408—2021)(以下简称《隔标》)和美国Minimum design loads and associated criteria for buildings and other structures(ASCE 7-16)隔震设计的相关要求,并针对基于《建筑抗震设计规范》(GB 50011—2010)(2016年版)(以下简称《抗规》)设计的某9度区近场隔震结构,进行了两国规范的设计对比。按《抗规》设计的隔震结构,仍然能满足《隔标》的设计要求。ASCE 7-16对于隔震支座考虑了老化和环境、测试、制造等因素引起的性能参数变化,并按隔震支座的上限及下限属性进行了结构设计。基于相同地震概率水准(50年超越概率2%)的设计对比研究表明,ASCE 7-16的等效侧力法计算值高于《隔标》,按ASCE 7-16要求选择的地震波反应谱明显高于《隔标》,其时程分析结果也大于中国规范,对隔震支座的性能要求更高。 展开更多
关键词 隔震设计 上、下限属性 时程分析法 等效侧力法
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地震作用下车辆-公路桥梁耦合作用的能量机理
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作者 徐艳 林国才 崔存玉 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第5期88-94,共7页
由于地震作用下车辆和公路桥梁相互耦合作用的复杂性,目前对其相互作用机理的研究较少,导致各国现行公路桥梁抗震设计规范关于桥梁在地震作用时是否需要考虑活载作用仍然存在分歧.现有研究表明,车辆既可能对桥梁的地震响应产生有利影响... 由于地震作用下车辆和公路桥梁相互耦合作用的复杂性,目前对其相互作用机理的研究较少,导致各国现行公路桥梁抗震设计规范关于桥梁在地震作用时是否需要考虑活载作用仍然存在分歧.现有研究表明,车辆既可能对桥梁的地震响应产生有利影响,也可能产生不利的影响.本文在已有的研究基础上,对车桥耦合接触行为进行简化模拟,采用能量法对车辆-公路桥梁耦合作用机理进行分析.结果表明:车桥耦合作用对输入到桥梁水平方向能量的影响可以忽略不计,但会导致输入到桥梁竖向总能量的减小,因而使桥梁的竖向地震响应减小,而输入到车辆竖向的能量则主要来自桥面振动;此外,车辆质量越小,桥梁振动产生的对车辆水平方向的能量输入越大. 展开更多
关键词 车桥耦合 能量法 调谐质量阻尼器 桥梁抗震 接触单元
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基于能力谱的弯剪复合型金属阻尼器加固既有混凝土框架性能化抗震设计方法 被引量:1
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作者 郭磊 王静峰 +1 位作者 王涛 王翰斓 《工程力学》 EI CSCD 北大核心 2024年第7期78-87,共10页
随着近年来中国对建筑结构的抗震性能要求不断提高,既有混凝土框架难以满足多水准抗震性能标准的要求,采用金属阻尼器加固既有混凝土框架可显著提高其抗震性能,有利于满足现有抗震性能目标,然而目前对于相应的的性能化抗震设计方法研究... 随着近年来中国对建筑结构的抗震性能要求不断提高,既有混凝土框架难以满足多水准抗震性能标准的要求,采用金属阻尼器加固既有混凝土框架可显著提高其抗震性能,有利于满足现有抗震性能目标,然而目前对于相应的的性能化抗震设计方法研究尚不充分。该文提出了基于能力谱的金属阻尼器加固既有混凝土框架抗震性能化设计方法,为了实现不同烈度地震下的多性能水准目标,采用具有多阶屈服特征的弯剪复合型金属阻尼器。基于对既有混凝土框架的静力推覆分析,将框架的推覆曲线转化为等效的双折线能力谱,设定加固后结构在多遇、设防和罕遇地震下的层间位移角性能目标,确定结构能力谱曲线和需求谱曲线的交点。考虑金属阻尼器进入屈服阶段后的附加阻尼比,计算出结构在不同烈度地震下的等效阻尼比,根据性能点计算出金属阻尼器剪切和弯曲芯板的屈服承载力。基于上述设计方法对4层、6层和9层既有混凝土框架进行加固,通过OpenSees软件建立弹塑性分析模型,并通过试验结果验证了模型的准确性,通过时程分析结果表明了加固后的结构满足预定的性能目标,证明了提出的设计方法的可靠性和有效性。该文研究成果将为金属阻尼器加固既有混凝土框架的抗震设计提供理论依据。 展开更多
关键词 能力谱 弯剪复合型金属阻尼器 既有混凝土框架 抗震设计方法 加固设计
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边墩约束对塔梁墩固结体系斜拉桥横桥向减震影响研究 被引量:2
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作者 万沐聪 宋随弟 申庆灿 《桥梁建设》 EI CSCD 北大核心 2024年第4期106-111,共6页
为了解塔梁墩固结体系斜拉桥的横桥向地震响应并选取合理的抗震结构体系,以主跨305 m的湖南帅乡特大桥为背景,采用MIDAS Civil软件建立不同边墩约束方案(7种常规支座边墩约束方案、1种摩擦摆球型支座边墩约束方案)的桥梁三维有限元模型... 为了解塔梁墩固结体系斜拉桥的横桥向地震响应并选取合理的抗震结构体系,以主跨305 m的湖南帅乡特大桥为背景,采用MIDAS Civil软件建立不同边墩约束方案(7种常规支座边墩约束方案、1种摩擦摆球型支座边墩约束方案)的桥梁三维有限元模型,分析不同边墩约束条件对塔梁墩固结体系斜拉桥塔底横桥向弯矩及主梁梁端横桥向位移的影响。结果表明:相较于采用常规支座边墩约束方案,采用摩擦摆球型支座边墩约束方案不仅可以减小塔梁墩固结体系斜拉桥在地震作用下的塔底横桥向弯矩,还可以将主梁梁端横桥向位移控制在较小的数值内,显著提高了塔梁墩固结体系斜拉桥横桥向抗震性能;E2地震作用下,地震引起的结构响应普遍比静力计算结果小,主墩、桥塔及边墩均处于弹性状态,抗震不控制设计。湖南帅乡特大桥最终采用设置摩擦摆球型支座的边墩约束方案。 展开更多
关键词 斜拉桥 塔梁墩固结体系 边墩约束方案 摩擦摆球型支座 横桥向减震设计 有限元法
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模块式金属隔震支座设计方法与试验研究——以电流互感器为例
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作者 张毅 夏旭忆 +4 位作者 李海洋 尚庆学 李吉超 刘如山 王涛 《工程力学》 EI CSCD 北大核心 2024年第10期212-224,共13页
提出了模块式金属隔震支座的构造与解耦设计方法,通过电流互感器振动台试验验证了隔震装置和设计方法的可行性。研究结果表明:隔震支座具有良好的隔震效果,隔震设备顶部加速度响应为非隔震设备的7.32%~32.57%;隔震支座具有良好的自复位... 提出了模块式金属隔震支座的构造与解耦设计方法,通过电流互感器振动台试验验证了隔震装置和设计方法的可行性。研究结果表明:隔震支座具有良好的隔震效果,隔震设备顶部加速度响应为非隔震设备的7.32%~32.57%;隔震支座具有良好的自复位能力,实际残余位移在不同地震动类型、地震动强度下均小于设计值。隔震支座具有较强的抗倾覆能力,可满足支柱类电气设备层间隔震需求,竖向地震输入影响时隔震支座的性能有所削弱,变形增大。电气设备的隔震设计应充分考虑设备本体的抗震性能与支架的动力放大作用,慎重选择隔震设计目标,避免支座达到极限位移。 展开更多
关键词 模块式金属隔震支座 振动台试验 设计方法 抗倾覆 自复位
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