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首页> 外文期刊>Engineering Structures >Proposed new equivalent lateral force design method for low-rise reinforced concrete wall-frame mixed building systems
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Proposed new equivalent lateral force design method for low-rise reinforced concrete wall-frame mixed building systems

机译:拟议的低层钢筋混凝土墙框架混合建筑系统的新的等效侧向力设计方法

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Reinforced concrete wall-frame mixed buildings have been widely used as a seismic force resisting system because walls and frames can play complementary roles in earthquake resistance. In conventional design procedures (e.g., per ASCE 7), the walls and frames in mixed buildings have often been analyzed and designed separately by assigning a specific portion of the design lateral load to each one. These conventional procedures may in part be a product of a bygone era when computerized structural analysis programs were not widely used. However, advanced structural analysis programs are currently available, which can easily simulate the walls and frames simultaneously, and even three-dimensionally. Korean structural engineers have taken advantage of those programs and typically design such mixed buildings without separating the walls and frames or assigning any particular required strength to each one. This new design method is simple and easy to conduct, but it does not exactly follow the conventional design process for a wall-frame interactive system, even though it still uses the same seismic design parameters (from ASCE 7). Therefore, this study has investigated the feasibility of the new design method. Target buildings for the study have reinforced concrete ordinary shear walls in low-to-medium-rise wall frame mixed buildings, and specifically those with plans having fairly limited bays except for the ones with walls, which makes it difficult to separate the walls and frames. To investigate the performance of buildings designed by the simple new method based on elastic analysis, nonlinear static pushover and nonlinear dynamic analyses have been conducted as part of this study, and engineering demand parameters such as story drift and concrete compressive strain at the wall base have been examined. Results indicate that buildings designed by the new method have good performance even for very conservative failure criteria. However, they exhibited less satisfactory performance than those designed by the conventional procedure. This shortcoming could be compensated for by a slight decrease in the response modification factor, or by specifying a lower bound wall area ratio or an upper bound wall axial load ratio. In order for these options to be applicable, some additional study may be necessary, where a wider variety of prototype buildings are examined utilizing probabilistic approaches. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢筋混凝土墙框架混合建筑已被广泛用作抗震系统,因为墙体和框架在抗震中可以起到互补的作用。在常规设计程序中(例如,根据ASCE 7),经常通过将设计侧向载荷的特定部分分配给每个建筑物来分别分析和设计混合建筑物中的墙壁和框架。当计算机结构分析程序未被广泛使用时,这些常规程序可能部分是过去时代的产物。但是,目前可以使用高级结构分析程序,该程序可以轻松地同时模拟墙壁和框架,甚至可以三维模拟。韩国的结构工程师已经利用了这些程序,并且通常在设计这种混合建筑物时无需分开墙壁和框架,也无需为每个建筑物分配任何特定的所需强度。这种新的设计方法简单易行,但是,尽管它仍然使用相同的抗震设计参数(来自ASCE 7),但它并不完全遵循墙框互动系统的传统设计过程。因此,本研究探讨了新设计方法的可行性。本研究的目标建筑物在中低层墙框架混合建筑中使用钢筋混凝土普通剪力墙,特别是那些计划的海湾除外的计划,但那些墙壁除外,这使得墙壁和框架难以分离。为了研究基于弹性分析的简单新方法设计的建筑物的性能,作为研究的一部分,进行了非线性静力推覆和非线性动力分析,并且墙基础上的工程需求参数(如层间位移和混凝土压缩应变)具有经过检查。结果表明,即使对于非常保守的破坏准则,通过新方法设计的建筑物也具有良好的性能。然而,它们表现出比常规方法所设计的令人满意的性能。可以通过稍微减小响应修改因子或通过指定下边界壁面积比或上边界壁轴向载荷比来弥补此缺点。为了使这些选项适用,可能需要进行一些额外的研究,其中使用概率方法研究了各种各样的原型建筑。 (C)2017 Elsevier Ltd.保留所有权利。

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