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A new performance based design approach for moment resisting frames

机译:一种新的基于性能的抗弯框架设计方法

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This paper proposes a simple, relatively new elastic–plastic design method for earthquake resisting frames that enables the engineer to directly control the essential aspects of the future behavior of certain structural forms, through basic statics and imposition of predetermined modes of behavior. The method is particularly applicable to the preliminary design of low to mid-rise buildings where the fundamental period of vibrations dominates the response of the system to seismic loading. The focus of this paper is directed towards simplified but accurate manual design rather than sophisticated structural analysis. The premise of the proposed solution is that the constituent elements of the system can be selected in such a way as to cause both the elastic as well as the plastic drift functions to follow linearly varying straight line profiles during all phases of loading. Frameworks designed by this method act not only as structures of uniform response (UR), i.e., uniform strength and stiffness, where the demand/capacity ratios of its members remain the same, both before and after formation of plastic hinges, but they also result in unique solutions, satisfying the prescribed yield criteria, the boundary support. as well as the of static equilibrium conditions.
机译:本文提出了一种简单,相对较新的抗震框架弹塑性设计方法,使工程师能够通过基本静力学和施加预定的行为模式来直接控制某些结构形式的未来行为的基本方面。该方法特别适用于低至中层建筑的初步设计,在这些建筑中,基本振动周期主导着系统对地震载荷的响应。本文的重点是简化但准确的手动设计,而不是复杂的结构分析。提出的解决方案的前提是,可以选择系统的组成元素,以使弹性和塑性漂移函数在加载的所有阶段都遵循线性变化的直线轮廓。通过这种方法设计的框架不仅充当均匀响应(UR)的结构,即,均匀的强度和刚度,其中构件的需求/容量比在形成塑料铰链之前和之后都保持不变,但它们也导致在独特的解决方案中,满足规定的屈服准则,边界支持。以及静态平衡条件。

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