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设计基准期、设计工作寿命及重要性系数间的关系 被引量:5
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作者 袁贤讯 潘芹 《建筑结构》 CSCD 北大核心 2005年第10期17-20,共4页
设计基准期和设计工作寿命是结构可靠度设计中的两个基本概念。引入可靠度分析的寿命模型分析了设计工作寿命的概率可靠性意义,剖析了结构重要性的内在涵义,并指出设计基准期应该更准确地理解为统计基准期,设计工作寿命决定统计基准期,... 设计基准期和设计工作寿命是结构可靠度设计中的两个基本概念。引入可靠度分析的寿命模型分析了设计工作寿命的概率可靠性意义,剖析了结构重要性的内在涵义,并指出设计基准期应该更准确地理解为统计基准期,设计工作寿命决定统计基准期,结构的重要性系数应当综合反映不同重要性结构间的寿命差异和失效率差异。同时建议,为了建立基于性能的结构设计方法,在其他工程结构可靠度设计统一标准中也应尽快地引入设计工作寿命这一时间概念。 展开更多
关键词 设计基准期 设计工作寿命 重要性系数 可靠度设计 基于性能的结构设计 工作寿命 结构设计方法 概率可靠性 可靠度分析 模型分析
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超高层建筑核心筒超前施工结构性能分析与设计 被引量:7
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作者 朱川海 方朔 +1 位作者 赵昕 丁鲲 《建筑结构》 CSCD 北大核心 2013年第S1期985-990,共6页
近年来钢-混凝土混合结构体系在我国超高层建筑中得到广泛应用。框架-核心筒体系的施工流程需要核心筒超前外框架施工。考虑到施工期间结构体系、材料特性和荷载作用的时变性,需要引入施工阶段基于性能的结构设计(PBSD)方法分析与控制... 近年来钢-混凝土混合结构体系在我国超高层建筑中得到广泛应用。框架-核心筒体系的施工流程需要核心筒超前外框架施工。考虑到施工期间结构体系、材料特性和荷载作用的时变性,需要引入施工阶段基于性能的结构设计(PBSD)方法分析与控制处于不同施工阶段的结构状态,解决超高层建筑施工过程分析与控制的问题。本文提出了核心筒超前外框架施工层数的合理分析方法,并在建立的500m基准超高层建筑模型上进行了验证。研究结果表明,基于性能目标对施工阶段核心筒超前施工进行分析是可行有效的,核心筒超前施工是施工阶段需要控制和评估的重要参数。 展开更多
关键词 超高层建筑 基于性能的结构设计 框架-核心筒结构 超前施工
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有关房屋抗震价值工程的探讨
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作者 庄和星 《福建建筑》 2009年第8期24-26,共3页
汶川地震的发生,使建筑抗震设防问题再一次成为敏感的话题。本文通过对价值工程和抗震性能的探讨,提出几种提高房屋抗震价值的方法,可为结构设计提供参考。
关键词 抗震性能 价值工程 汶川地震 基于性能的结构设计
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Use of Crescent Shaped Braces for Controlled Seismic Design of Ductile Structures
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作者 Tomaso Trombetti Giada Gasparini Stefano Silvestri Ilaria Ricci 《Journal of Civil Engineering and Architecture》 2011年第10期890-902,共13页
It is known that the seismic response of a structural system is highly influenced, in addition to the earthquake input, by the dynamic characteristics of the system itself. This paper presents an approach for the iden... It is known that the seismic response of a structural system is highly influenced, in addition to the earthquake input, by the dynamic characteristics of the system itself. This paper presents an approach for the identification of the characteristics of the structural system resisting to horizontal loads which enables to satisfy given seismic performance objectives. This is achieved by considering a total conceptual separation between the structural systems resisting to vertical and horizontal loads. The proposed approach is first briefly developed in general within a Performance-Based Seismic Design (PBSD) framework and then fully applied to the case study of a five-storey steel building structure. It is composed of three basic steps: (1) identification of the fundamental characteristics which should be possessed by the horizontal resisting system to satisfy a multiplicity of performance objectives, (2) development of a peculiar horizontal resisting system composed of "crescent shaped braces" which are specifically calibrated to satisfy given performance objectives, (3) verification, by means of appropriate time-history analyses, of the seismic performances achieved. In detail, the horizontal resisting system is calibrated to satisfy a multiplicity of performance objectives through the identification of an "objectives curve", in the Force-Displacement diagram, of the mechanical characteristics of the structure. The calibration is obtained by methods/tools borrowed either from Direct Displacement-Based Design (DDBD) or Force-Based Design (FBD), depending on the specific performance objective to be imposed. The applicative example has been carried out with reference to three performance objectives and has led to the identification of a horizontal resisting system composed of special bracing elements capable of realizing a sort of properly-calibrated seismic isolation called crescent-shaped braces. The results obtained through non-linear dynamic analyses have shown that the proposed approach leads to the congruity between the imposed and the achieved seismic performances. 展开更多
关键词 Horizontal-resisting element horizontal-resisting system STIFFNESS strength DUCTILITY crescent-shaped braces performance objectives.
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An improved ground motion intensity measure for super high-rise buildings 被引量:10
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作者 LU Xiao YE LiePing +2 位作者 LU XinZheng LI MengKe MA XiaoWei 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第6期1525-1533,共9页
Ground motion intensity measure (IM) is an important part in performance-based seismic design. A reasonable and efficient IM can make the prediction of the structural seismic responses more accurate. Therefore, a more... Ground motion intensity measure (IM) is an important part in performance-based seismic design. A reasonable and efficient IM can make the prediction of the structural seismic responses more accurate. Therefore, a more reasonable IM for super high-rise buildings is proposed in this paper. This IM takes into account the significant characteristic that higher-order vibration modes play important roles in the seismic response of super high-rise buildings, as well as the advantages of some existing IMs. The key parameter of the proposed IM is calibrated using a series of time-history analyses. The collapse simulations of two super high-rise buildings are used to discuss the suitability of the proposed IM and some other existing IMs. The results indicate that the proposed IM yields a smaller coefficient of variation for the critical collapse status than other existing IMs and performs well in reflecting the contribution of higher-order vibration modes to the structural response. Hence, the proposed IM is more applicable to seismic design for super high-rise buildings than other IMs. 展开更多
关键词 ground motion intensity measure super high-rise building time-history analysis collapse analysis
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