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Seismic Response Control of Adjacent Buildings Linked by Fluid Dampers

机译:流体阻尼器连接的相邻建筑物的地震响应控制

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摘要

A comprehensive experimental investigation on dynamic characteristics and seismic response of adjacent buildings linked by fluid dampers is carried out on a 4mX4m seismic simulator. The control performance of fluid dampers is evaluated through the comparison of dynamic characteristics and seismic responses of adjacent buildings linked by fluid dampers, linked by rigid rods, and without any connections. The experimental results show that the installation of fluid dampers can significantly reduce the seismic responses of both buildings and keep their natural frequencies almost unchanged if the related parameters of dampers and buildings can be appropriately selected. As a continuing study of the test investigation in which all test cases are limited to linear elastic adjacent buildings only, elasto-plastic seismic response of adjacent buildings linked by fluid dampers are numerically computed. A nonlinear finite element planar model using plastic beam element and linear viscous-velocity damper element is used in the computation to simulate two steel frames connected by fluid dampers. The computational results show that not only in linear elastic stage but also in elasto-plastic stage, the seismic resistant performance of the two steel frames can be evidently enhanced if they are properly linked by fluid dampers with appropriate parameters although the control effect of fluid dampers in elasto-plastic stage is inferior to that in elastic stage.
机译:在4mX4m地震模拟器上,对通过流体阻尼器连接的相邻建筑物的动力特性和地震响应进行了全面的实验研究。通过比较由流体阻尼器链接,由刚性杆链接且没有任何连接的相邻建筑物的动态特性和地震响应,评估流体阻尼器的控制性能。实验结果表明,如果适当选择阻尼器和建筑物的相关参数,安装流体阻尼器可以显着降低两座建筑物的地震响应,并使它们的固有频率几乎保持不变。作为所有试验案例仅限于线性弹性相邻建筑物的试验研究的继续研究,对通过流体阻尼器链接的相邻建筑物的弹塑性地震响应进行了数值计算。计算中使用了一个由塑料梁单元和线性粘滞速度阻尼器单元组成的非线性有限元平面模型,以模拟通过流体阻尼器连接的两个钢框架。计算结果表明,不仅是线性弹性阶段,还是弹塑性阶段,尽管两个液压阻尼器的控制效果很好,但通过适当设置阻尼器参数将两个钢框架正确连接,可以显着提高其抗震性能。弹塑性阶段要比弹力阶段差。

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