近年来,由钢弹簧隔振器和阻尼筒组成的钢弹簧隔振减震装置,被用于地铁沿线建筑结构的振动控制。目前,该装置在多向控制性能测试试验和参数分析研究方面存在不足,实际工程中大多采用验算法来满足设计要求,设计过程在实用性和最优性上存在不足。研究分别从竖向和水平向上进行了钢弹簧隔振器压剪性能试验和阻尼筒耗能试验,分析得到隔振器力学性能参数和阻尼筒耗能性能参数;接着以应用该装置的20层Benchmark模型为研究对象,通过数值模拟计算分别对竖向环境激励和水平向罕遇地震动输入下,隔振减震装置参数对结构振动控制效果影响进行了系统分析,研究分别给出了装置中隔振器和阻尼器有效性能参数的取值范围。研究成果可为钢弹簧隔振减震装置的结构振动控制应用提供参考和指导。
Abstract
In recent years, the steel spring vibration isolation device composed of steel spring vibration isolator and damping cylinder is used for vibration control of building structures along subway.At present, the device has shortcomings in multi-directional control performance tests and parametric analysis; in practical engineering, the checking calculation method is mostly used to meet design requirements; there are lacks of practicability and optimality in design process.Here, compression and shear tests of steel spring vibration isolator and energy dissipation tests of damping cylinder were conducted in vertical and horizontal directions, respectively.The mechanical performance parameters of the vibration isolator and energy dissipation performance parameters of the damping cylinder were obtained through test data analysis.Then, taking a 20-story Benchmark model equipped with the device as the study object, effects of parameters of the device on the structural vibration control effect under vertical environment excitation and horizontal rare ground motion input, respectively were systematically analyzed through numerical simulation.Finally, effective ranges of performance parameters of vibration isolator and damping cylinder in the device were determined.It was shown that the study results can provide a reference and a guidance for application of steel spring vibration isolation devices in structural vibration control.
关键词
钢弹簧隔振减震装置 /
压剪性能试验 /
阻尼性能试验 /
Benchmark模型 /
环境振动 /
地震响应 /
参数分析
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Key words
steel spring vibration isolation device /
compression-shear test /
damping performance test /
Benchmark model /
environment vibration /
seismic response /
parametric analysis
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参考文献
[1]宋瑞祥,张学刚,孙国栋.探讨两种建筑隔振基础措施在地铁沿线物业开发中的应用[J].噪声与振动控制, 2018, 38(5):156-161.
SONG Ruixiang, ZHANG Xuegang, SUN Guodong.Discussion on the application of two foundation isolation measures in buildings receiving excessive vibration from adjacent subway lines[J].Noise and Vibration Control, 2018,38(5):156-161.
[2]LAI C G, CALLERIO A, FACCIOLI E, et al.Prediction of railway-induced ground vibrations in tunnels[J].Journal of Vibration & Acoustics, 2005, 127(5):503-514.
[3]刘维宁,马蒙,刘卫丰,等.我国城市轨道交通环境振动影响的研究现况[J].中国科学:技术科学, 2016,46(6):547-559.
LIU Weining, MA Meng, LIU Weifeng, et al.Overview on current research of environmental vibration influence induced by urban mass transit in China[J].Scientia Sinica Technologica, 2016,46(6):547-559.
[4]HILL C, REARDON R, JOING S, et al.Test and numerical analysis of subway-induced vibrations of metro-line nearby buildings[J].Journal of South China University of Technology, 2015, 43(2):33-40.
[5]刘文光.橡胶隔震支座力学性能及隔震结构地震反应分析研究[D].北京:北京工业大学,2003.
[6]MOKHA A,CONSTANTINOU M,REINHORN A, et al.Experimental study of friction-pendulum isolation system[J].Journal of Structural Engineering, 1991, 117(4):1201-1217.
[7]付伟庆,李茂,张春巍,等.基于被动变阻尼装置高层结构风振控制效果对比分析[J].地震工程与工程振动, 2019, 39(5):95-103.
FU Weiqing, LI Mao, ZHANG Chunwei, et al.Wind vibration control comparative analysis of passive variable damping device in high-rise buildings[J].Earthquake Engineering and Engineering Dynamics, 2019, 39(5):95-103.
[8]凌育洪,吴景壮,马宏伟.地铁引起的振动对框架结构的影响及隔振研究:以某教学楼为例[J].振动与冲击,2015,34(4):184-189.
LING Yuhong, WU Jingzhuang, MA Hongwei.Effects of subway vibration on a frame structure and its vibration isolation[J].Journal of Vibration and Shock, 2015, 34(4): 184-189.
[9]张波,申伟,张华.浮置板用复合弹簧隔振器的研制[J].铁道车辆,2016(5): 19-22.
ZHANG Bo, SHEN Wei, ZHANG Hua.Development of compound spring vibration isolator for floating slab[J].Rolling Stock, 2016(5): 19-22.
[10]张亚辉.金属弹簧隔振器建模及负载特性研究[D].成都:电子科技大学,2017.
[11]陈诚,丁党盛,王尊明.青岛新机场弹簧隔振器施工技术[J].住宅与房地产,2018, 28: 195-196.
CHEN Cheng, DING Dangsheng, WANG Zunming.Construction technology of spring vibration isolator for Qingdao new airport[J].Housing and Real Estate, 2018, 28: 195-196.
[12]刘晓钟.北京远洋万和城,北京,中国[J].世界建筑, 2019(5):80-81.
LIU Xiaozhong.Beijing cosco wanhe city, Beijing, China[J].World Architecture, 2019(5): 80-81.
[13]谢为楠.米兰公寓,意大利[J].世界建筑,1994(2):41.
XIE Weinan.Milan apartment, Italy[J].World Architecture, 1994(2): 41.
[14]杨惠喜.钢弹簧隔振系统在地铁邻近建筑物的设计应用[J].现代城市轨道交通,2014(6): 44-46.
YANG Huixi.Design and application of steel spring vibration isolation system for metro adjacent buildings[J].Modern Urban Transit Modern Urban Transit, 2014(6): 44-46.
[15]王建立,陈高峰,王建,等.预制式钢弹簧浮置板的研制与应用[J].城市轨道交通研究,2019,22(5):39-43.
WANG Jianli, CHEN Gaofeng, WANG Jian, et al.Manufacture and application of prefabricated steel spring floating slab[J].Urban Mass Transit,2019,22(5):39-43.
[16]SPENCER B, Jr, CHRISTENSON R E,DYKE S J.Next generation Benchmark control problem for seismically excited buildings[C]//Proceedings of the Second World Conference on Structural Control.Kyoto, Japan, 1998.
[17]楼梦麟,张静.大跨度拱桥地震反应分析中阻尼模型的讨论[J].振动与冲击, 2009, 28(5):22-26.
LOU Mengling, ZHANG Jing.Discussion on damping models for seismic response analysis of long-span bridge[J].Journal of Vibration and Shock, 2009,28(5):22-26.
[18]NEWMARK N M.A method of computation for structural dynamics[J].J Eng Mech,1959,85(EM3):67-94.
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脚注
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