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爆破切口形状对细高建筑物倒塌效果的影响 被引量:17
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作者 李起山 邵晓宁 胡昆伦 《爆破》 CSCD 1998年第3期66-68,82,共4页
分析了爆破拆除细高建筑物时产生偏斜、前冲和后坐的原因,提出采用梯形和倒梯形爆破切口以准确控制倒塌方向、前冲和后坐。
关键词 拆除爆破 细高建筑物 切口形状 偏斜 倒塌效果
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Slenderness Ratio Influence on the Structural Behavior of Residential Concrete Tall Buildings
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作者 Tarek A. Awida 《Journal of Civil Engineering and Architecture》 2011年第6期527-534,共8页
The main concern of this paper is to study the influence of the building slenderness ratio on the structural behavior of the residential concrete tall buildings aiming to deepen structure and architect designers under... The main concern of this paper is to study the influence of the building slenderness ratio on the structural behavior of the residential concrete tall buildings aiming to deepen structure and architect designers understanding for such type of buildings. The study is emphasized only on Kuwait city design conditions for wind and seismic loadings. The paper presents an actual case study for adding two thirty stories residential towers with two different slenderness ratios to an existing residential complex. Wind loading is considered using both code values and wind tunnel results. Three dimensional finite element techniques through ETABS software are used in conducting analysis for structures presented here. A serviceability study is performed to ensure that buildings have sufficient stability to limit lateral drift and peak acceleration within the acceptable range of occupancy comfort. In addition, an ultimate strength study is carried out to verify that all the structural elements are designed to withstand factored gravity and lateral loads in a safe manner according to the international building codes. Analysis results are presented and discussed. A brief idea about foundation design of the new towers and its connection to the existing foundation is presented. Finally conclusions are summarized as guidelines for the structural professions of concrete residential tall buildings. 展开更多
关键词 Slenderness ratio residential tall buildings finite element reinforced concrete analysis and design.
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