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Simplified probabilistic seismic assessment of dampers in tall and braced structures in buildings

机译:建筑物中高支架结构中阻尼器的简化概率地震评估

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Purpose – The paper aims to focus on adjacent buildings response, equipped with damper, to analyze the vibration reduction in the nearby buildings. The nearby buildings were also equipped with dampers. The occurrence of adjacent buildings with adequate or inadequate space in between is a common phenomenon. However, many a times not much attention is paid to provide or check gap adequacy or to connect the two buildings suitably to avoid pounding of two structures on each other. This study emphasizes the utility of providing a damper in between two adjacent buildings for better performance. Design/methodology/approach – The two steel structures taken for study are prototype of two structures normally found in industrial structure such as power plant, where in one of boiler structure is often tall and braced and short structure of turbine building which is moment resistant, modeled in SAP. There could be similar such structures which are often connected to a platform or a walkway with a sliding end, so as not to transfer horizontal force to other structures. If the advantage of stiffness of tall braced structure is taken into account, shorter structure can be suitably connected to braced structure to transfer forces during seismic cases under nonlinear conditions, thereby avoiding pounding (incase gap is too less), reducing response and thus optimizing the section sizes. The structures were subjected to El Centro earthquake, to simulate MCE (which could be the other site TH scaled up as desired for real site PGA), and damper location and parameters were varied to find optimum value which offers reduced base shear, reduced top floor displacement and minimuminter story drift and highest energy absorption by fluid viscous dampers. Findings – The findings show that taller structures, which are braced, have more stiffness; the effect of damper is more pronounced in reducing displacement of shorter moment resistant structure to the tune of 60%, with suitably defined Cd value which is found to be 600 KNs/m for the present study. Thus, advantage of stiffener structure is taken to leverage and reduce the displacement of shorter moment resistant structure in reducing its displacement under nonlinear conditions of seismic case. Originality/value – This work shows the original findings, of the adjacent buildings response, equipped with damper, to analyze the vibration reduction on other buildings which were planned to be constructed nearby.
机译:目的 - 纸张旨在专注于配备阻尼器的相邻建筑物,分析附近建筑物的减振。附近的建筑也配有阻尼器。相邻建筑物的发生具有足够或不足之间的空间是一种常见的现象。然而,许多时间不受很多关注来提供或检查差距充足度或者适当地连接两个建筑物,以避免彼此冲击两个结构。本研究强调了在两个相邻建筑物之间提供阻尼器的效用,以实现更好的性能。设计/方法/方法 - 用于研究的两种钢结构是通常在电厂结构中的工业结构中发现的两种结构的原型,其中锅炉结构之一通常是高且支撑的涡轮机建筑物的短结构,在SAP建模。可以存在类似的这样的结构,这些结构通常连接到具有滑动端的平台或行走道,以免将水平力传递到其他结构。如果考虑高支撑结构刚度的优点,则较短的结构可以适当地连接到支撑结构,以在非线性条件下在地震情况下传递力,从而避免捣碎(INCASE间隙太短),减少响应并因此优化截面大小。将结构进行了EL Centro地震,以模拟MCE(这可能是真实部位PGA的其他网站TH缩放),并且改变阻尼位置和参数以找到可降低的基础剪切,减少的顶层流体粘性阻尼器的位移和最小值故事漂移和最高能量吸收。调查结果 - 调查结果表明,支撑的更高的结构具有更加僵硬的;阻尼器的效果更加明显,降低了较短的力矩抗性结构的位移到60%,具有适当定义的CD值,该研究是本研究的600kn / m。因此,采用加强件结构的优点来利用并降低较短力矩抗力结构的位移在降低其在地震壳体的非线性条件下的位移中。原创性/值 - 这项工作显示了配备阻尼器的相邻建筑物的原始调查结果,分析了计划在附近建造的其他建筑物的减振。

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