70%剪力比下六层和十层钢筋混凝土建筑的改进局部承载力设计(M-PCD)性能

P. Pudjisuryadi, F. Wijaya, R. Tanuwijaya, B. C. Prasetyo, B. Lumantarna
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引用次数: 2

摘要

抗震建筑的一种设计方案是部分承载力设计(PCD)方法。与常用的容量设计方法不同,PCD允许一种安全失效机制,称为部分侧滑机制。在这种机制中,所有梁和一些柱都被允许经历塑性损伤,而一些选定的柱被设计为保持弹性(称为弹性柱)。提出了一种新的方法来预测设计每个结构构件所需的强度,称为修正PCD(M-PCD)。在本研究中,使用M-PCD设计了六层和十层钢筋混凝土建筑,并对其抗震性能进行了研究。弹性柱抵抗的基底剪切力被设置为总基底剪切力的大约70%。采用非线性静力程序(NSP)和非线性动力程序(NDP)对结构进行分析。结果表明,该结构符合预期的局部侧移机制,建筑物的漂移是可以接受的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of Six- and Ten-story Reinforced Concrete Buildings Designed by using Modified Partial Capacity Design (M-PCD) Method with 70% Shear Force Ratio
One design alternative of earthquake resistant building is Partial Capacity Design (PCD) method. Unlike the commonly used capacity design method, PCD allows a safe failure mechanism which is called partial sidesway mechanism. In this mechanism, all beams and some columns are allowed to experience plastic damages while some selected columns are designed to remain elastic (called elastic columns). A new approach to predict the required strengths needed to design each structural member, called modified-PCD (M-PCD) is proposed. In this research six- and ten-story reinforced concrete buildings were designed using M-PCD, and their seismic performances are investigated. The base shear force resisted by the elastic columns was set to approximately 70% of the total base shear. Both nonlinear static procedure (NSP) and nonlinear dynamic procedure (NDP) are used to analyze the structures. The results show that the expected partial side sway mechanism is observed, and the drifts of the buildings are acceptable.
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