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大型开闭屋盖结构极端状况研究 被引量:7
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作者 陈以一 江晓峰 陈扬骥 《建筑结构学报》 EI CAS CSCD 北大核心 2007年第1期21-27,共7页
以南通市体育会展中心主体育场为工程背景,对开闭式结构进行非常规工况下的受力分析,考察结构是否会因意外事件引发连续性破坏。设定了活动屋盖非对称运行、单根牵引钢索破断、活动屋盖因机电控制设施失效发生整体下滑并引发冲击作用等... 以南通市体育会展中心主体育场为工程背景,对开闭式结构进行非常规工况下的受力分析,考察结构是否会因意外事件引发连续性破坏。设定了活动屋盖非对称运行、单根牵引钢索破断、活动屋盖因机电控制设施失效发生整体下滑并引发冲击作用等3种非常规工况。分析中采用了动力方法,考虑了几何大变形和冲击作用的影响。分析表明,活动屋盖非对称运行下结构仍具有较高的承载力,单根钢索的破断不致引起严重的结构内力重分布和大变形而引发连续性破坏,但活动屋盖的整体下滑冲击对结构极为不利。非常规工况作为非安全因素目前尚难以纳入基于可靠度理论的现行结构设计规范中,工况的设定应充分考虑结构的特殊性并进行相应的分析和评价。 展开更多
关键词 开闭式结构 极端状况 意外事件 连续性破坏 设计方法
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Climate state of the Three Gorges Region in the Yangtze River basin in 2022–2023
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作者 Tong Cui Xianyan Chen +3 位作者 Xukai Zou Linhai Sun Qiang Zhang Hongling Zeng 《Atmospheric and Oceanic Science Letters》 CSCD 2024年第5期61-66,共6页
Based on daily observation data of the Three Gorges Region(TGR)of the Yangtze River basin and global reanalysis data,the climate characteristics,climate events,and meteorological disasters of the TGR in 2022 and 2023 ... Based on daily observation data of the Three Gorges Region(TGR)of the Yangtze River basin and global reanalysis data,the climate characteristics,climate events,and meteorological disasters of the TGR in 2022 and 2023 were analyzed.For the TGR,the average annual temperature for 2022 and 2023 was 0.8℃ and 0.4℃ higher than normal,respectively,making them the two warmest years in the past decade.In 2022,the TGR experienced its warmest summer on record.The average air temperature was 2.4℃ higher than the average,and there were 24.8 days of above-average high temperature days during summer.Rainfall in the TGR varied significantly between 2022 and 2023.Annual rainfall was 18.4%below normal and drier than normal in most parts of the region.In contrast,the precipitation in 2023 was considerably higher than the long-term average,and above normal for almost the entire year.The average wind speed exhibited minimal variation between the two years.However,the number of foggy days and relative humidity increased in 2023 compared to 2022.In 2022–2023,the TGR mainly experienced meteorological disasters such as extreme high temperatures,regional heavy rain and flooding,overcast rain,and inverted spring chill.Analysis indicates that the abnormal western Pacific subtropical high and the abnormal persistence of the eastward-shifted South Asian high were the two important drivers of the durative enhancement of record-breaking high temperature in the summer of 2022. 展开更多
关键词 Three Gorges Region Climate state Extreme high temperature Torrential summer rainfall Climate analysis
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