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首页> 外文期刊>The Structural Design of Tall and Special Buildings >Analysis of outrigger-braced reinforced concrete supertall buildings: Core-supported and tube-in-tube lateral systems
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Analysis of outrigger-braced reinforced concrete supertall buildings: Core-supported and tube-in-tube lateral systems

机译:舷外支撑钢筋混凝土超级砌体分析:芯支撑和管管侧系统

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摘要

This study is primarily focused on the approximate analysis of reinforced concrete outriggers which are commonly used in the design and construction of supertall buildings subject to distributed horizontal loads. Existing global analysis formulae that provide preliminary results for lateral deflections and moments are reviewed for two lateral load resisting systems, namely, core-supported-with-outrigger (CSOR) system and less frequent tube-in-tube-with-outrigger (TTOR) system. These formulae are only applicable for CSOR and neglect the reverse rotation of the outrigger actually suffered due to the propping action from the outer columns and give rather high predictions of the deflections compared with advanced numerical finite element (FE) models. An improved model is proposed which overcomes this issue and provides more consistent results to FE predictions. The same can also be extended to TTOR. Several case studies are investigated to verify the accuracy of the proposed methodologies. The global analysis is followed by the local analysis of reinforced concrete outrigger beams using strut-and-tie modelling and non-linear FE analysis to obtain optimized reinforcement layouts (reduction of quantities of reinforcement). The results highlight the different challenges in detailing such structural members which are heavily loaded (high congestion of reinforcement), and the behaviour at failure can be brittle.
机译:该研究主要集中在钢筋混凝土过分缩合器的近似分析,这些钢筋混凝土过分缩合器通常用于超空型建筑物的设计和施工,这是分布式水平载荷的设计和构造。现有的全局分析公式,用于对横向偏转和时刻提供初步结果的初步结果,用于两个横向载荷抵抗系统,即核心支持的舷外谐波(CSOR)系统和较少频繁的管内管 - 带外触发(TTOR)系统。这些公式仅适用于CSOR并且忽略了由于从外塔的支撑作用而实际遭受的突出的反向旋转,并与高级数值有限元(FE)模型相比,对偏转的相当高的预测。提出了一种改进的模型,克服了这个问题,并提供了更加一致的结果到FE预测。同样也可以扩展到TTOR。调查了几种案例研究以验证所提出的方法的准确性。随后,通过支柱和领带建模和非线性Fe分析对钢筋混凝土渗出梁的局部分析进行局部分析,以获得优化的加固布局(减少加固量)。结果突出了详细说明这种结构构件的不同挑战(加固的高充血),并且失效时的行为可能是脆弱的。

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