振动与冲击
振動與遲擊
진동여충격
JOURNAL OF VIBRATION AND SHOCK
2014年
24期
112-122
,共11页
框架-摇摆墙结构%抗震设计方法%金属阻尼器%粘滞阻尼器%时程分析
框架-搖襬牆結構%抗震設計方法%金屬阻尼器%粘滯阻尼器%時程分析
광가-요파장결구%항진설계방법%금속조니기%점체조니기%시정분석
frame-rocking wall%aseismic design method%metal damper%viscous damper%time history analysis
摇摆墙体与主体框架之间存在较大的竖向变形,可于此变形集中部位增设耗能构件,实现保护主体结构的基本损伤机制。提出附加阻尼的框架-摇摆墙结构,并基于等效线性化理论初步计算结构仅附加单一类型阻尼器的阻尼置放量,而后通过定义目标函数,确定可使目标函数最小的同时附加粘滞阻尼与金属阻尼的阻尼器布置方式,得到结论如下:①于弯剪型结构,当仅考虑结构加速度控制时,可沿结构总高布置粘滞阻尼器,而需综合考虑结构楼层位移、加速度时及层间位移角时,可于结构2/3处下部安装金属阻尼器,与其上部1/3处安装粘滞阻尼器;②于剪切型结构,当仅考虑结构层间位移角时,可于结构楼层1/2处下部安装金属阻尼器,与其上部1/2处安装粘滞阻尼器,而需综合考虑结构楼层位移、加速度及层间位移角时,则可于结构1/3处下部安装金属阻尼器,与其上部2/3处安装粘滞阻尼器。
搖襬牆體與主體框架之間存在較大的豎嚮變形,可于此變形集中部位增設耗能構件,實現保護主體結構的基本損傷機製。提齣附加阻尼的框架-搖襬牆結構,併基于等效線性化理論初步計算結構僅附加單一類型阻尼器的阻尼置放量,而後通過定義目標函數,確定可使目標函數最小的同時附加粘滯阻尼與金屬阻尼的阻尼器佈置方式,得到結論如下:①于彎剪型結構,噹僅攷慮結構加速度控製時,可沿結構總高佈置粘滯阻尼器,而需綜閤攷慮結構樓層位移、加速度時及層間位移角時,可于結構2/3處下部安裝金屬阻尼器,與其上部1/3處安裝粘滯阻尼器;②于剪切型結構,噹僅攷慮結構層間位移角時,可于結構樓層1/2處下部安裝金屬阻尼器,與其上部1/2處安裝粘滯阻尼器,而需綜閤攷慮結構樓層位移、加速度及層間位移角時,則可于結構1/3處下部安裝金屬阻尼器,與其上部2/3處安裝粘滯阻尼器。
요파장체여주체광가지간존재교대적수향변형,가우차변형집중부위증설모능구건,실현보호주체결구적기본손상궤제。제출부가조니적광가-요파장결구,병기우등효선성화이론초보계산결구부부가단일류형조니기적조니치방량,이후통과정의목표함수,학정가사목표함수최소적동시부가점체조니여금속조니적조니기포치방식,득도결론여하:①우만전형결구,당부고필결구가속도공제시,가연결구총고포치점체조니기,이수종합고필결구루층위이、가속도시급층간위이각시,가우결구2/3처하부안장금속조니기,여기상부1/3처안장점체조니기;②우전절형결구,당부고필결구층간위이각시,가우결구루층1/2처하부안장금속조니기,여기상부1/2처안장점체조니기,이수종합고필결구루층위이、가속도급층간위이각시,칙가우결구1/3처하부안장금속조니기,여기상부2/3처안장점체조니기。
For a large vertical displacement between a frame and a rocking wall,energy consumption components should be added to protect the main structure.Based on this,a frame-rocking wall structure with additional damping was proposed and single type of damper amount also could be calculated with the equivalent linearization theory,by defining the objective function,the best dampers layout of structure with viscous dampers and metal damper making the minimum value of the objective function could be determined.The conclusions were as follows:(1 )for a shear-bending structure, the viscous dampers can be arranged along the total height of the structure when only acceleration is considered;the metal dampers can be arranged at the lower 1 /3 part of the structure while the viscous dampers can be arranged at the upper 1 /3 part of the structure when displacement,acceleration and storey drift are considered;(2)for a shear structure,the metal dampers can be arranged at the lower half part while the viscous damper can be arranged at the upper half part when only storey drift is considered;in addition,the metal dampers can be arranged at the lower 2/3 part while the viscous dampers can be arranged at the upper 1 /3 part when displacement,acceleration and storey drift are all considered.