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首页> 外文期刊>Journal of structural engineering >Performance-Based Capacity Design of Steel Plate Shear Walls. Ⅰ: Development Principles
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Performance-Based Capacity Design of Steel Plate Shear Walls. Ⅰ: Development Principles

机译:基于性能的钢板剪力墙设计。 Ⅰ:发展原则

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摘要

This is Part Ⅰ of two companion papers on performance-based capacity design of steel plate shear walls. Most previous research has been conducted with the primary aim of maximizing ductility and robustness under severe cyclic loading, without any explicit consideration of the costs of achieving this behavior. This has resulted in onerous capacity design rules in current codes and standards for achieving highly ductile systems, and has effectively discouraged their use in low and moderate seismic regions. These companion papers aim to provide a holistic and sound basis for capacity design to any of three explicit performance levels. In this paper, Part Ⅰ, two target yield mechanisms associated with the two extreme performance levels (ductile and limited-ductility) are identified and justified, and the capacity design principles applicable to these performance levels are discussed. The limited-ductility mechanism departs from conventional treatment and is established based on finite element simulations and experimental observations. Two complementary new concepts for designing moderately ductile walls are also proposed and verified. Because design is an iterative process, modeling efficiencies for use with the performance-based approach are suggested and validated. Inconsistencies between current capacity design methods for evaluating the demands imposed by the infill plates on the boundary elements and the true infill plate behavior are identified and discussed.
机译:这是有关钢板剪力墙基于性能的容量设计的两篇配套论文的第一部分。以前进行的大多数研究的主要目的是在严重的周期性载荷下最大化延展性和坚固性,而没有明确考虑实现此行为的成本。这导致了现行规范和标准中繁琐的容量设计规则,以实现高度延展的系统,并有效地阻止了它们在中低地震区的使用。这些随附的论文旨在为三个显式性能水平中的任何一个提供全面而合理的容量设计基础。在本文的第一部分中,确定并证明了与两个极端性能水平(韧性和有限延性)相关的两个目标屈服机理,并讨论了适用于这些性能水平的容量设计原则。有限延展性机理不同于常规处理,是基于有限元模拟和实验观察建立的。还提出并验证了用于设计中等延性壁的两个互补新概念。由于设计是一个反复的过程,因此建议并验证了与基于性能的方法一起使用的建模效率。确定并讨论了用于评估填充板对边界元素的要求的当前容量设计方法与真实填充板行为之间的不一致。

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