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Shaking table test and verification of development of an accumulated semi-active hydraulic damper as an active interaction control device

机译:振动台测试以及作为主动交互控制装置的蓄能式半主动液压缓冲器的开发验证

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Semi-active control is based on the use of the emerging concept of active control and passive control. The developed accumulator semi-active hydraulic damper (ASHD) is converted to interaction element (IE) of active interaction control (AIC). Systemic equations of motion, control law and control rulers of this proposed new AIC are studied in this research. A full-scale multiple degrees of freedom shaking table is tested toverify the energy dissipation of this proposed AIC, including test building without control, with passive control added involving various stiffness ratios and also with synchronic control added involving various stiffness ratios. Shock absorption of displacement can be up to 74–81% of that of the test structure with stiffness ratio = 2.3387 and 1.790 at 1st and 2nd floor under control of synchronous switch of this proposed AIC, respectively. No matter what the test structure added with various stiffeners at 1st and 2nd floor under synchronous control, test results of shock absorption ratio of acceleration show good seismic proof capability. In addition, base shear control effects of this proposed AIC method are higher than those of the test structure with various stiffeners added underpassive control. These results show that AIC with stiffeners for structural control provides the characteristics of a stabilized structure under excitation of near-fault earthquake with velocity impulse action.
机译:半主动控制基于对新兴的主动控制和被动控制概念的使用。研发的蓄能器半主动液压阻尼器(ASHD)转换为主动交互控制(AIC)的交互元件(IE)。本研究对提出的新型AIC的运动方程,控制律和控制标尺进行了研究。测试了一个满刻度的多自由度振动台,以验证该拟议AIC的能量耗散,包括无控制的测试建筑物,添加了涉及各种刚度比的无源控制,还添加了涉及各种刚度比的同步控制。在此建议的AIC的同步开关的控制下,在第一层和第二层的位移刚度分别为2.3387和1.790时,位移的冲击吸收率可达到测试结构的74%至81%。无论在第一层和第二层在同步控制下添加各种加强筋的测试结构如何,加速度的减震率测试结果都显示出良好的抗震能力。此外,这种拟议的AIC方法的基本剪切控制效果要比带有各种加劲肋的非被动控制的测试结构更高。这些结果表明,带有加强筋的AIC用于结构控制,在具有速度脉冲作用的近断层地震的激发下,提供了稳定结构的特性。

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