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Skyscraper Design and Behaviour of Steel Structures and Connections Complexities from Constructability Perspectives

机译:从可施工性的角度看钢结构和连接复杂性的摩天大楼设计与行为

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The use of high grade steel and concrete in high-rise buildings has increased significantly in the past 20 years mainly owing to improvement in all the materials, technologies and associated methods related to prepare, supply and pour the concrete. Cementations materials, admixtures, aggregates, pumping techniques, transportations and elevation methods…etc. all these enchased possibilities are illustrated by taking 150 story high rise structural model; analyzed and designed by using the software ETABS-2013, to withstand the gravity loads and also the lateral loads considering Wind 100 mph, Exposure-Seismic Zone-I, soil profile type SD, Occupancy category 1.0 and Ductility factor, R=5.5. The type of ultra-high strength concrete cylindrical strength has been considered as 107 MPa @ 28 days to bear the high load and straining action at lower portion of the core wall, Steel sections and plates are confirming to ASTM-A992-Gr:70 Ksi are considered for Built-up column sections and floor beams. In addition Shear Studs conforming to ASTM-A106-Gr:1020 with composite metal deck have also been considered to be have as rigid diaphragm to act as monolithic unit against the heavy lateral loads.This paper clearly would show that the Design and constructability considerations, serviceability requirements and international codes compliances such as ACI-318, ASCE-7, IBC-2011, UBC-1997, further it would prove that the combination of R.C. concrete and steel composite sections could be the best solution for such tall skyscrapers to meet the client interest and expectations.
机译:在过去的20年中,高层建筑中高等级钢和混凝土的使用已显着增加,这主要是由于与混凝土的制备,供应和浇筑有关的所有材料,技术和相关方法的改进。胶结材料,掺合料,集料,泵送技术,运输和高程方法等。通过采用150层的高层结构模型来说明所有这些迷人的可能性;通过使用软件ETABS-2013进行分析和设计,以承受重力载荷和侧向载荷,其中包括100 mph时风,暴露-地震防区I,土壤剖面类型SD,占用类别1.0和延性系数R = 5.5。超高强度混凝土圆柱强度的类型已被认为是107 MPa @ 28天,以承受岩心壁下部的高载荷和应变作用,钢型材和钢板均符合ASTM-A992-Gr:70 Ksi的要求考虑用于组合式柱截面和楼板梁。此外,还考虑了符合ASTM-A106-Gr:1020且具有复合金属甲板的抗剪栓钉作为刚性膜片,可作为整体单元抵抗沉重的侧向载荷。本文清楚地表明了设计和可施工性方面的考虑,适用性要求和国际规范合规性(例如ACI-318,ASCE-7,IBC-2011,UBC-1997),这进一步证明了RC的组合混凝土和钢质复合材料型材可能是满足如此高的摩天大楼满足客户兴趣和期望的最佳解决方案。

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