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Seismic performance improvement of tension-only-braced frames with Energy-Dissipative Rocking Columns

机译:具有能量耗散摇摆柱的距离支撑框架的地震性能改进

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Steel braced frames consisting of strong beams, weak columns, and tension-only braces (BTFs) have been extensively used in low-rise steel buildings, since it is prefabricated rapidly and is cost-efficient. However, BTFs are vulnerable to soft story failure due to the negligible post-yielding stiffness of tension-only braces. A novel device of Energy-Dissipative Rocking Column (EDRC) is proposed to improve the seismic performance of BTFs. An EDRC consists of dual hinge supported steel column branches and replaceable steel strip dampers between them. Firstly, the effectiveness of EDRCs were verified through nonlinear time history analyses on benchmark multistory BTFs using a suite of far-field ground motion records. Secondly, systematic parametric studies are conducted to quantify the effect of key influencing factors such as stiffness ratio of EDRC to BTF and bending stiffness of column branches on the seismic performance improvement of BTF-EDRC systems. The results show that the maximum inter-story drift and inter-story drift concentration under earthquakes as well as the residual drift after earthquakes can be significantly mitigated by coupling with EDRC. It is found that the maximum inter story drift ratio can be reduced by 50% when the stiffness ratio of EDRC to BTF reached 1.0. The most effective stiffness ratio of EDRC to BTF for mitigating the inter-story drift concentration and residual drift ratio falls in a range of no more than 0.2 and 0.4, respectively.
机译:由强梁,弱柱和张力柱(BTF)组成的钢支撑框架已广泛用于低层钢制建筑,因为它是迅速预制的,并且具有成本效益。然而,由于只有张力的张力的张力的屈服刚度,因此BTFS容易受到软故障失败的影响。提出了一种新颖的能量耗散摇摆(EDRC)装置,以改善BTF的地震性能。 EDRC由双铰链支撑的钢柱分支和它们之间的可更换钢带阻尼器组成。首先,通过使用套件的远场地面运动记录来通过非线性时间历史分析来验证EDRCS的有效性。其次,进行系统参数研究,以量化关键影响因素,例如柱分支的EDRC与BTF的刚度比和弯曲刚度的效果对BTF-EDRC系统的地震性能改进。结果表明,通过与EDRC偶联,地震下最大的地下漂移和地震间漂移浓度以及地震后的残余漂移。发现当EDRC至BTF的刚度比达到1.0时,最大帧间漂移比可以减少50%。用于减轻故事间漂移浓度和残余漂移比的EDRC至BTF的最有效刚度比分别在不超过0.2和0.4的范围内。

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