Analysis of RCC Framed 45 Storey Building Using Different Combination of Outriggers

Nikhil Mulik, Ankit Mali, Smruti Patankar, Trupti Gavit, Digvijay Ghotkule
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Abstract

In this modern age of civil engineering, the construction industry has embraced a notable inclination towards erecting towering structures, with skyscrapers emerging as integral components of urban development. This trend presents a multifaceted challenge, not only for architects but also for structural engineers, who must ensure these high-rise edifices possess a robust design foundation capable of withstanding diverse loads and their combinations. While both wind and seismic forces exert significant pressures on tall buildings, the former often takes precedence due to its higher magnitude and frequency. Consequently, the structural design of high-rise buildings necessitates careful consideration of gravity, wind, and seismic loads. This study delves into the behaviour of reinforced concrete (RC) framed high-rise buildings (comprising 45 stories) augmented with outrigger truss systems constructed from both concrete and steel bracings. By exploring various configurations of outrigger placement, the aim is to mitigate structural deflection and compare the efficacy against conventional RC systems, both with and without shear walls.
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使用不同支腿组合的 45 层 RCC 框架结构建筑分析
在现代土木工程时代,建筑业明显倾向于建造高耸的建筑,摩天大楼已成为城市发展不可或缺的组成部分。这一趋势不仅给建筑师,也给结构工程师带来了多方面的挑战,他们必须确保这些高层建筑拥有坚固的设计基础,能够承受各种荷载及其组合。虽然风力和地震力都会对高层建筑产生巨大的压力,但由于前者的强度和频率更高,因此往往优先于后者。因此,高层建筑的结构设计必须仔细考虑重力、风力和地震荷载。本研究深入探讨了钢筋混凝土(RC)框架高层建筑(共 45 层)的行为,该建筑采用了由混凝土和钢支撑构建的支腿桁架系统。通过探索支腿的各种配置,目的是减轻结构挠度,并与传统的 RC 系统(有剪力墙和无剪力墙)进行功效比较。
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