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高压输变电钢筋混凝土架构加固补强试验研究 被引量:2
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作者 陈明 王中亮 +3 位作者 李明富 张戊晨 赵旭亚 辛亚军 《水电能源科学》 北大核心 2018年第2期180-183,212,共5页
为了改善变电站混凝土架构破损情况,以河北南网6个供电公司老旧变电站混凝土架构为例,提出了一套系统的修复方案,通过抗压强度及抗折试验分析了修复后混凝土试件的破坏形态及典型荷载-位移曲线,并与其他材料修复的混凝土试件进行对比,... 为了改善变电站混凝土架构破损情况,以河北南网6个供电公司老旧变电站混凝土架构为例,提出了一套系统的修复方案,通过抗压强度及抗折试验分析了修复后混凝土试件的破坏形态及典型荷载-位移曲线,并与其他材料修复的混凝土试件进行对比,同时探讨了不同因素对极限承载力等主要参数的影响。结果表明,修复后试件的抗压、抗折极限承载力受界面隔离剂、修补材料的影响,且破损程度越大修复效果越明显。 展开更多
关键词 输配电工程 钢筋混凝土架构 加固补强 弯曲 极限承载力
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Performance-based seismic financial risk assessment of reinforced concrete frame structures 被引量:5
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作者 吴巧云 朱宏平 樊剑 《Journal of Central South University》 SCIE EI CAS 2012年第5期1425-1436,共12页
Engineering facilities subjected to natural hazards(such as winds and earthquakes) will result in risk when any designed system(i.e.capacity) will not be able to meet the performance required(i.e.demand).Risk might be... Engineering facilities subjected to natural hazards(such as winds and earthquakes) will result in risk when any designed system(i.e.capacity) will not be able to meet the performance required(i.e.demand).Risk might be expressed either as a likelihood of damage or potential financial loss.Engineers tend to make use of the former(i.e.damage).Nevertheless,other non-technical stakeholders cannot get useful information from damage.However,if financial risk is expressed on the basis of probable monetary loss,it will be easily understood by all.Therefore,it is necessary to develop methodologies which communicate the system capacity and demand to financial risk,Incremental dynamic analysis(IDA) was applied in a performance-based earthquake engineering context to do hazard analysis,structural analysis,damage analysis and loss analysis of a reinforced concrete(RC) frame structure.And the financial implications of risk were expressed by expected annual loss(EAL).The quantitative risk analysis proposed is applicable to any engineering facilities and any natural hazards.It is shown that the results from the IDA can be used to assess the overall financial risk exposure to earthquake hazard for a given constructed facility.The computational IDA-EAL method will enable engineers to take into account the long-term financial implications in addition to the construction cost.Consequently,it will help stakeholders make decisions. 展开更多
关键词 performance-based earthquake engineering (PBEE) incremental dynamic analysis (IDA) seismic risk analysis expected annual loss (EAL) seismic financial risk
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Performance-based passive control analysis of adjacent structures:Optimization of Maxwell dampers 被引量:2
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作者 吴巧云 代健州 朱宏平 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2180-2197,共18页
The performance-based passive control analysis of the Maxwell dampers between one 10-story and one 6-story adjacent RC frames is conducted in this work.Not only the optimal parameters but also the optimal arrangements... The performance-based passive control analysis of the Maxwell dampers between one 10-story and one 6-story adjacent RC frames is conducted in this work.Not only the optimal parameters but also the optimal arrangements of the Maxwell dampers are proposed based on the optimal target of making the total exceeding probability of the adjacent structures to be minimal.The applicability of the analytical expressions of the Maxwell damper damping parameters under different seismic performance targets are firstly examined and then the preferable damping parameters of the Maxwell dampers are proposed through the extensive parametric studies.Furthermore,the optimal arranging positions and optimal arranging numbers of the Maxwell dampers between the adjacent buildings are derived based on a large number of seismic fragility analyses,as well.The general arranging laws of the Maxwell dampers between the adjacent buildings are generated based on the discussion of the theoretical method through the simplified plane model.The optimal parameters and optimal arrangement of the Maxwell dampers presented make both the adjacent structures have preferable controlled effects under each seismic performance target which can satisfy the requirements of multi-performance seismic resistance of the modern seismic codes. 展开更多
关键词 adjacent structures passive control seismic fragility analysis optimal parameters optimal arrangement exceeding probability
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