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Progressive Collapse Analysis of SRC Frame-RC Core Tube Hybrid Structure

机译:SRC框架-RC芯管混合结构的渐进倒塌分析

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Steel reinforced concrete (SRC) frame-reinforced concrete (RC) core tube hybrid structures are widely used in high-rise buildings. Focusing on the progressive collapse behavior of this structural system, this paper presents an experiment and analysis on a 1/5 scaled, 10-story SRC frame-RC core tube structural model. The finite element (FE) model developed for the purpose of progressive collapse analysis was validated by comparing the test results and simulation results. The alternate load path method (APM) was applied in conducting nonlinear static and dynamic analyses, in which key components including columns and shear walls were removed. The stress state of the beams adjacent to the removed component, the structural behavior including inter-story drift ratio and shear distribution between frame and tube were investigated. The demand capacity ratio (DCR) was applied to evaluate the progressive collapse resistance under loss of key components scenarios. The results indicate that the frame and the tube cooperate in a certain way to resist progressive collapse. The core tube plays a role as the first line of defense against progressive collapse, and the frame plays a role as the second line of defense against progressive collapse. It is also found that the shear distribution is related to the location of the component removed, especially the corner column and shear walls.
机译:钢骨混凝土(SRC)框架-钢筋混凝土(RC)芯管混合结构广泛用于高层建筑。着眼于该结构系统的渐进倒塌行为,本文对1/5比例的10层SRC框架-RC核心筒结构模型进行了实验和分析。通过比较测试结果和模拟结果,验证了为进行渐进式倒塌分析而开发的有限元(FE)模型。交替荷载路径法(APM)被用于进行非线性静态和动态分析,其中包括柱和剪力墙在内的关键部件被移除。研究了邻近于被移除构件的梁的应力状态,结构行为,包括层间位移比和框架与管之间的剪切分布。需求容量比率(DCR)用于评估关键部件损失情况下的渐进式抗倒塌能力。结果表明,框架和管子以某种方式配合以抵抗渐进的塌陷。核心管充当防止渐进性崩溃的第一道防线,而框架充当防止渐进性崩溃的第二道防线。还发现剪力分布与被移走部件的位置有关,尤其是角柱和剪力墙。

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