世界地震工程
世界地震工程
세계지진공정
WORLD INFORMATION ON EARTHQUAKE ENGINEERING
2010年
1期
99-104
,共6页
王建强%金建洲%丁永刚%李大望
王建彊%金建洲%丁永剛%李大望
왕건강%금건주%정영강%리대망
基础隔震结构%摩擦摆支座%上部结构偏心距%上部结构抗扭刚度
基礎隔震結構%摩抆襬支座%上部結構偏心距%上部結構抗扭剛度
기출격진결구%마찰파지좌%상부결구편심거%상부결구항뉴강도
base-isolated structure%friction pendulum bearing%the eccentricity in the superstructure%the torsional stiffness of the superstructure
对上部结构存在偏心的摩擦摆基础隔震结构进行了水平双向地震作用下的地震反应分析,研究了上部结构偏心距和抗扭刚度对结构地震反应的影响.分析表明:上部结构偏心距对上部结构和隔震层的位移反应和加速度反应均有较大影响,即使在上部结构偏心距较小时,其对结构地震反应仍有一定程度的影响;上部结构的抗扭刚度对上部结构的加速度反应影响较小,而对上部结构的位移反应影响较大;上部结构的抗扭刚度对隔震层的加速度反应和位移反应影响较小.因而,对于上部结构存在偏心的摩擦摆基础隔震结构,应减小上部结构偏心距并增大其抗扭刚度以减小摩擦摆基础隔震结构的扭转反应.
對上部結構存在偏心的摩抆襬基礎隔震結構進行瞭水平雙嚮地震作用下的地震反應分析,研究瞭上部結構偏心距和抗扭剛度對結構地震反應的影響.分析錶明:上部結構偏心距對上部結構和隔震層的位移反應和加速度反應均有較大影響,即使在上部結構偏心距較小時,其對結構地震反應仍有一定程度的影響;上部結構的抗扭剛度對上部結構的加速度反應影響較小,而對上部結構的位移反應影響較大;上部結構的抗扭剛度對隔震層的加速度反應和位移反應影響較小.因而,對于上部結構存在偏心的摩抆襬基礎隔震結構,應減小上部結構偏心距併增大其抗扭剛度以減小摩抆襬基礎隔震結構的扭轉反應.
대상부결구존재편심적마찰파기출격진결구진행료수평쌍향지진작용하적지진반응분석,연구료상부결구편심거화항뉴강도대결구지진반응적영향.분석표명:상부결구편심거대상부결구화격진층적위이반응화가속도반응균유교대영향,즉사재상부결구편심거교소시,기대결구지진반응잉유일정정도적영향;상부결구적항뉴강도대상부결구적가속도반응영향교소,이대상부결구적위이반응영향교대;상부결구적항뉴강도대격진층적가속도반응화위이반응영향교소.인이,대우상부결구존재편심적마찰파기출격진결구,응감소상부결구편심거병증대기항뉴강도이감소마찰파기출격진결구적뉴전반응.
The seismic response of the structure isolated by friction pendulum system (FPS) with an asymmetric superstructure under bilateral ground motions is analyzed. The effects of the eccentricity and the torsional stiffness on the superstructure are studied. It is shown that the effect of the eccentricity of the superstructure on the displacement and the acceleration of the superstructure and the isolation layer is remarkable. Even though the eccentricity is small, the effect of which should be taken into account in the seismic design of the base-isolated structure. The effect of the torsional stiffness of the superstructure on the seismic response of the superstructure is more remarkable than that on the seismic response of the isolation layer. So the seismic response of the superstructure can be effectively diminished by decreasing the eccentricity and increasing the torsional stiffness of the superstructure.