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路桥过渡段沉降差异性分析与防治 被引量:2
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作者 陈艺伟 《河南建材》 2018年第4期76-78,共3页
改革开放以来,公路建设项目伴随着国民经济快速发展也日益增多。同时人民生活水平的提高,也对公路建设的安全性、舒适性及可靠性提出了更高的要求。桥头跳车是公路建设中的一大通病,为减少或避免桥头跳车这一现象,文章通过对沉降差异性... 改革开放以来,公路建设项目伴随着国民经济快速发展也日益增多。同时人民生活水平的提高,也对公路建设的安全性、舒适性及可靠性提出了更高的要求。桥头跳车是公路建设中的一大通病,为减少或避免桥头跳车这一现象,文章通过对沉降差异性进行关联分析,准确找出具体原因,提出一些可行的解决方案。 展开更多
关键词 沉降差异分析 桥头跳车
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郑州银基冰雪酒店大跨高位桁架转换超限结构抗震设计 被引量:4
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作者 张龑华 张根俞 +1 位作者 张恺 朱炳寅 《建筑结构》 CSCD 北大核心 2022年第2期79-86,109,共9页
郑州银基冰雪酒店为7度抗震设防的标准设防类建筑,是具有6类不规则项的大跨高位转换超限结构。酒店大堂上方为最大跨度11m+20m+11m的三跨连续转换结构,上托7层标准客房共计10根框架柱。通过对梁式转换、斜柱转换和桁架转换的方案比选,... 郑州银基冰雪酒店为7度抗震设防的标准设防类建筑,是具有6类不规则项的大跨高位转换超限结构。酒店大堂上方为最大跨度11m+20m+11m的三跨连续转换结构,上托7层标准客房共计10根框架柱。通过对梁式转换、斜柱转换和桁架转换的方案比选,选择了钢桁架以实现结构转换。通过不同形式的反应谱和时程分析考察了结构基本的变形和承载能力,同时补充了转换层型钢混凝土梁轴向应力分析、重力荷载下不考虑上部和下部结构共同工作的转换结构承载力分析、转换桁架防连续倒塌分析、中部转换区域独立模型抗震分析、差异沉降对转换桁架的影响分析和转换层楼板抗震分析等多项专项分析,保证了转换结构的安全。 展开更多
关键词 转换桁架 高位转换 抗震性能化设计 防连续倒塌 差异沉降分析
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Differential uplift and settlement between inner column and diaphragm wall in top-down excavation 被引量:5
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作者 王丽 郑刚 欧若楠 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3578-3590,共13页
Top structure and basement will confront the risk of being damaged on account of large stress and strain fields incurred by differential uplift and settlement between inner column and diaphragm wall in top-down method... Top structure and basement will confront the risk of being damaged on account of large stress and strain fields incurred by differential uplift and settlement between inner column and diaphragm wall in top-down method. Top-down excavation of the Metro Line 10 in Shanghai was modeled with finite element analysis software ABAQUS and parameters of subsoil were obtained by inverse analysis. Based on the finite element model and parameters, changes in the following factors were made to find more effective methods to restrain differential uplift and settlement: length of diaphragm wall, thickness of jet-grouting reinforcement layer, ways of subsoil reinforcement, sequence of pit excavation, connection between slabs and diaphragm wall or column and width of pit. Several significant results are acquired. The longer the diaphragm wall is, the greater the differential uplift between column and diaphragm wall is. Rigidity of roof slab is in general not strong enough to keep diaphragm wall and column undergoing the same uplift during excavation; Uplift at head of column and differential uplift between column and diaphragm wall decrease when subsoil from-16.6 to-43 m in pit is reinforced through jet-grouting. But, as excavation proceeds to a lower level, benefit from soil reinforcement diminishes. During the process applying vertical load, the larger the depth of diaphragm wall is, the smaller the settlement is at head of column and diaphragm wall, and the greater the differential settlement is between column and diaphragm wall. When friction connection is implemented between column, diaphragm wall and floor slabs, uplifts at head of column and diaphragm wall are larger than those of the case when tie connection is implemented, and so does differential uplift between column and diaphragm wall. The maximum deflection of diaphragm wall decreases by 58% on account of soil reinforcement in pit. The maximum deflection of diaphragm wall decreases by 61.2% when friction connection is implemented instead of tie connection. 展开更多
关键词 top-down method differential uplift differential settlement jump-layer excavation diaphragm wall with outriggers
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桥头跳车的病害预防
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作者 王桂英 《科技信息》 2011年第18期I0294-I0294,共1页
本文分析了引起桥头台堤间沉降差异的主要原因,提出了预防桥头跳车的主要技术措施和组织措施。
关键词 桥头跳车 沉降差异原因分析预防措施
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