期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
上虞游泳馆屋盖钢结构设计及关键支座有限元分析 被引量:2
1
作者 钟亚军 彭国之 +2 位作者 王雪婷 焦俭 熊二刚 《钢结构》 2018年第4期52-57,共6页
上虞体育会展区游泳馆屋面钢结构工程采用了单曲倒三角空间桁架,主桁架一端近直角往下转折落于2层混凝土柱顶,竖向段近20 m形成落地桁架柱。柱底三管汇聚至楼面的支座处,导致支座顶板尺寸较大,形成有别于常规支座的异形抗震球型钢支座(... 上虞体育会展区游泳馆屋面钢结构工程采用了单曲倒三角空间桁架,主桁架一端近直角往下转折落于2层混凝土柱顶,竖向段近20 m形成落地桁架柱。柱底三管汇聚至楼面的支座处,导致支座顶板尺寸较大,形成有别于常规支座的异形抗震球型钢支座(固定铰)。主要介绍该结构设计的布置方案和受力特点,以及基于3D3S软件的结构静力分析以及抗震球型钢支座的设计分析、比较优化等,并重点对异形抗震球型钢支座进行了有限元分析。结果表明:当加载至设计荷载时,采用此类节点,可以满足设计要求。 展开更多
关键词 空间桁架 落地桁架 静力分析 异形抗震球型钢支座 有限元分析
下载PDF
Theoretical analysis on water-inrush mechanism of concealed collapse pillars in floor 被引量:12
2
作者 Tang Junhua Bai Haibo +1 位作者 Yao Banghua WU YU 《Mining Science and Technology》 EI CAS 2011年第1期57-60,共4页
In order to study the water-inrush mechanism of concealed collapse pillars from the mechanical view, a mechanical model for water-inrush of collapse pillars has been established based on thick plate theory of elastic ... In order to study the water-inrush mechanism of concealed collapse pillars from the mechanical view, a mechanical model for water-inrush of collapse pillars has been established based on thick plate theory of elastic mechanics in this paper.By solving this model the deformation of water-resistant rock strata under the action of water pressure and the expression of critical water pressure for collapse pillar waterinrush have been obtained The research results indicate that:the boundary conditions and strength of water-resistant strata play important roles in influencing water-inrush of collapse pillars.The critical water-inrush pressure is determined by both relative thickness and absolute thickness of water-resistant strata. 展开更多
关键词 Collapse pillar Water-inrush Critical water pressure Thick plate theory
下载PDF
The inner circulation mechanism in sinking column formation in North China coal field ——A case study in Fengfeng mining areas 被引量:5
3
作者 王经明 刘咸卫 +2 位作者 刘文生 关永强 王军现 《Journal of Coal Science & Engineering(China)》 2007年第1期32-36,共5页
Sinking columns are one of the most hazardous geological structures in north Chine typed coal fields. To understand the sinking column formation, to judge if the columns are hazardous or not, the inner circle mechanis... Sinking columns are one of the most hazardous geological structures in north Chine typed coal fields. To understand the sinking column formation, to judge if the columns are hazardous or not, the inner circle mechanism of groundwater in forming sinking columns in the relatively isolated areas was proposed according to the investigation on formation or distribution of sinking columns in some north China typed coal fields, such as Fengfeng, Xiangtai, Huaibei, Yangquan and so on. The heat generated by magma energized groundwater circulation and developed limestone karst in the relatively isolated areas. The CaCO3 solution accelerated by geothermal abnormality, the effect of high content of CO2 on dissolution and saturation of CaCO3 were discussed. Compared the forming conditions of the sinking columns developed in other coal mining areas in north China coal field, the paper deduced that the above factors collude karst development and sinking column formation, the columns in current geothermal areas are permeable and those in high coal rank areas or in paleo abnormally geothermal areas. The paper suggested that the sinking columns in the current abnormally geothermal areas were permeable, but those in the areas with high coal rank were not on contract. 展开更多
关键词 sinking columns inner circulation geothermy river system coal ranks
下载PDF
俄罗斯联邦大厦转换层钢结构施工技术
4
作者 王海涛 《建筑科技情报》 2008年第2期2-13,共12页
本文着重从转换层钢结构的预拼装、吊装、高强螺栓施工、测量等方面来阐述俄罗斯联邦大厦工程钢结构施工工艺,并通过图文来记述实际施工过程。
关键词 带状桁架外伸桁架传递桁架 上弦 下弦 斜腹杆 落地柱
原文传递
大型高强螺栓组群节点施工技术
5
作者 王海涛 《建筑科技情报》 2010年第4期32-35,37,共5页
钢结构工程的连接方式分为焊接、螺栓连接和铆接,铆接现阶段已很少采用。焊接需要专业人员进行操作且较费时间,而高强螺栓连接施工速度快且整体受力好。所以螺栓连接是钢结构工程发展的方向。本文着重从俄罗斯联邦大厦转换层钢结构的... 钢结构工程的连接方式分为焊接、螺栓连接和铆接,铆接现阶段已很少采用。焊接需要专业人员进行操作且较费时间,而高强螺栓连接施工速度快且整体受力好。所以螺栓连接是钢结构工程发展的方向。本文着重从俄罗斯联邦大厦转换层钢结构的大型高强螺栓纽群节点的施工来阐述钢结构大型组群节点的施工工艺,通过图文来记述实际施工过程。 展开更多
关键词 带状桁架 外伸桁架 传递桁架 上弦 下弦 斜腹杆 落地柱12.9级大六角高强螺栓
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部