江苏科技大学学报(自然科学版)
江囌科技大學學報(自然科學版)
강소과기대학학보(자연과학판)
JOURNAL OF JIANGSU UNIVERSITY OF SCIENCE AND TECHNOLOGY(NATURAL SCIENCE EDITION)
2013年
3期
224-228
,共5页
郭楠%朱金%杨颖伟
郭楠%硃金%楊穎偉
곽남%주금%양영위
板柱-剪力墙结构%扭转效应%有限元分析%扭平周期比%扭转位移比
闆柱-剪力牆結構%扭轉效應%有限元分析%扭平週期比%扭轉位移比
판주-전력장결구%뉴전효응%유한원분석%뉴평주기비%뉴전위이비
slab-column and shearwall structure%torsion response%finite element analysis%ratios of torsion pe-riods to translation periods%ratios of maximal elastic drifts to average drifts
对4种剪力墙典型布置方案的板柱-剪力墙结构进行有限元分析,研究了其动力特性,扭平周期比及在考虑偶然偏心影响的地震作用下楼层的扭转位移比,评价了剪力墙布置对此类结构扭转效应的影响。研究结果表明:剪力墙集中布置在中部时,结构的抗侧刚度较大,分散布置于周边时,结构的抗扭刚度较大;结构楼层的扭转位移比与沿受力方向质心与刚心是否重合及结构抗扭刚度两方面因素有关,质心与刚心是否重合对结构扭转效应的影响更为明显。
對4種剪力牆典型佈置方案的闆柱-剪力牆結構進行有限元分析,研究瞭其動力特性,扭平週期比及在攷慮偶然偏心影響的地震作用下樓層的扭轉位移比,評價瞭剪力牆佈置對此類結構扭轉效應的影響。研究結果錶明:剪力牆集中佈置在中部時,結構的抗側剛度較大,分散佈置于週邊時,結構的抗扭剛度較大;結構樓層的扭轉位移比與沿受力方嚮質心與剛心是否重閤及結構抗扭剛度兩方麵因素有關,質心與剛心是否重閤對結構扭轉效應的影響更為明顯。
대4충전력장전형포치방안적판주-전력장결구진행유한원분석,연구료기동력특성,뉴평주기비급재고필우연편심영향적지진작용하루층적뉴전위이비,평개료전력장포치대차류결구뉴전효응적영향。연구결과표명:전력장집중포치재중부시,결구적항측강도교대,분산포치우주변시,결구적항뉴강도교대;결구루층적뉴전위이비여연수력방향질심여강심시부중합급결구항뉴강도량방면인소유관,질심여강심시부중합대결구뉴전효응적영향경위명현。
Finite element analysis is applied to the slab-olumn and shearwall structure of four kinds of typical shear walls .The dynamic characteristics , the ratios of torsion periods to translation periods and the ratio of maxi-mal elastic drifts to average drifts are investigated when the earthquake action and the condition of the accidental eccentric influence are considered .The influence of the torsion response on the shear walls arranged in slab-col-umn and shearwall structure is assessed .The results show that the lateral rigidity of the structure is bigger , when the shear walls are arranged in the middle , and when they are arranged in the edge , the torsion stiffness of the structure is bigger .The ratios of each story maximal elastic drifts to average drifts are in connection with the tor-sion stiffness of the structure and the question whether the center of quality and the center of stiffness along stress direction are coincident or not .The former has more influence on the torsion response of structure .