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Highlighting Differences between Force-Based and Displacement-Based Design Solutions for Reinforced Concrete Frame Structures

机译:突出显示钢筋混凝土框架结构基于力和基于位移的设计解决方案之间的差异

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Over the past two decades, the earthquake engineering community has become increasingly aware of fundamental shortcomings in the current code force-based design methods. In light of this, a large number of displacement-based seismic design (DBD) methods have been proposed, and the most developed of these is currently the Direct DBD method. In order to illustrate how significantly design solutions obtained by Direct DBD can differ from those obtained using current code methods, design strengths obtained by the Eurocode 8 equivalent lateral force (ELF) method and the Direct DBD method are compared for over 1000 regular case study reinforced concrete (RC) frame buildings. The research examines buildings from 1 to 12 storeys in height, investigating the impact of structural proportions, material properties, design drift limits, gravity loads and design intensity on the seismic design strengths required. The findings illustrate that the design strengths required by the Eurocode 8 ELF method can be significantly smaller but can also be significantly greater than the Direct DBD solution. The conceptual reasons for the observed differences are discussed. Furthermore, the research uses the results of the large number of Direct DBD solutions to identify means of simplifying the Direct DBD procedure for regular RC frames so that it can be applied with similar ease to the current code ELF approach.
机译:在过去的二十年中,地震工程界越来越认识到当前基于规范力的设计方法的基本缺陷。鉴于此,已经提出了大量基于位移的地震设计(DBD)方法,并且其中最发达的是直接DBD方法。为了说明Direct DBD获得的设计解决方案与使用当前代码方法获得的设计解决方案有何显着不同,我们对1000多个常规案例研究中通过Eurocode 8等效横向力(ELF)方法和Direct DBD方法获得的设计强度进行了比较。混凝土(RC)框架建筑物。这项研究检查了1到12层高的建筑物,研究了结构比例,材料特性,设计漂移极限,重力载荷和设计强度对所需抗震设计强度的影响。研究结果表明,Eurocode 8 ELF方法所需的设计强度可以明显小于Direct DBD解决方案,但也可以明显大于Direct DBD解决方案。讨论了观察到的差异的概念性原因。此外,该研究使用大量Direct DBD解决方案的结果来确定简化常规RC帧的Direct DBD过程的方法,以便可以轻松地将其应用于当前代码ELF方法。

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