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Adaptable dual control systems for earthquake resistance

机译:适用于地震阻力的双重控制系统

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The use of passive energy dissipation systems for seismic control has been proven internationally over the past years as most promising. The proposed concept of Adaptable Dual Control Systems (ADCS), presented in the present paper, relies on the seismic performance of braced frames with cables or tension only rods, following a closed circuit, and hysteretic dampers. ADCS are based on a dual function of the component members, resulting in two practically uncoupled systems: a primary and a secondary system. The primary frame is responsible for the normal vertical and horizontal forces, while the closed damper-bracing mechanism, for the earthquake forces and the necessary energy dissipation. The bracing members are fixed at the bottom of the columns and are free to move horizontally at the primary frame's joints. Relative displacements are induced between the energy dissipation system's component members and the main frame's members. The potentials for maximum energy dissipation of the proposed systems are investigated in three configurations of the control system. In all cases the damper utilizes the relative displacement between its end joints to yield in the inelastic region, enabling the primary frame to resist elastically. ADCS may result to significant energy dissipation, when all design parameters involved are accordingly predefined. The predominant parameters that characterize ADCS seismic behavior are verified in respect to the mechanical properties of the control elements under the action of ten selected earthquake records of the Greek-Mediterranean region. A comparative parametric analysis of the three systems' seismic behavior leads to significant recommendations for their application as alternative energy dissipation systems.
机译:在过去几年中,在过去几年中,使用被动能量耗散系统在过去几年中被证实是最有前途的。本文介绍的适应性双控制系统(ADC)的所提出的概念依赖于闭合电路和滞后阻尼器的电缆或张力的支撑框架的地震性能。 ADC基于组件成员的双重功能,导致两种实际解耦系统:主要和辅助系统。主框架负责正常的垂直和水平力,而闭合阻尼支撑机构,用于地震力和必要的能量耗散。支撑构件固定在柱的底部,并且可以自由地在主框架的关节上水平移动。在能量耗散系统的部件成员和主框架的成员之间引起相对位移。在控制系统的三种配置中研究了所提出的系统的最大能量耗散的电位。在所有情况下,阻尼器利用其端部接头之间的相对位移以在无弹性区域中屈服,使初级框架能够弹性地抵抗。当相应地预定义时,ADC可能导致显着的能量耗散。表征ADCS地震行为的主要参数在希腊地中海地区的十个选定的地震记录的作用下验证了对照元件的机械性能。对三个系统的地震行为的比较参数分析导致其申请作为替代能源耗散系统的重要建议。

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