|本期目录/Table of Contents|

[1]许 巍,梁书亭.错层板柱结构体系振动台试验与分析[J].建筑科学与工程学报,2022,39(02):44-51.[doi:10.19815/j.jace.2021.09013]
 XU Wei,LIANG Shu-ting.Shaking Table Tests and Analysis for Staggered Slab-column Structure System[J].Journal of Architecture and Civil Engineering,2022,39(02):44-51.[doi:10.19815/j.jace.2021.09013]
点击复制

错层板柱结构体系振动台试验与分析(PDF)
分享到:

《建筑科学与工程学报》[ISSN:1673-2049/CN:61-1442/TU]

卷:
39卷
期数:
2022年02期
页码:
44-51
栏目:
防灾减灾工程
出版日期:
2022-03-30

文章信息/Info

Title:
Shaking Table Tests and Analysis for Staggered Slab-column Structure System
文章编号:
1673-2049(2022)02-0044-08
作者:
许 巍1,梁书亭2
(1. 东南大学建筑设计研究院有限公司,江苏 南京 210096; 2. 东南大学 土木工程学院,江苏 南京 210096)
Author(s):
XU Wei1, LIANG Shu-ting2
(1. Architects & Engineers Co., Ltd. of Southeast University, Nanjing 210096, Jiangsu, China; 2. School of Civil Engineering, Southeast University, Nanjing 210096, Jiangsu, China)
关键词:
错层 板柱结构 振动台试验 地震响应 抗震性能
Keywords:
staggered floor slab-column structure shaking table test seismic response seismic performance
分类号:
TU375.4
DOI:
10.19815/j.jace.2021.09013
文献标志码:
A
摘要:
为研究错层板柱结构的抗震性能,对一个缩尺比例为1:7的结构模型进行了振动台试验。试验选取2条天然波和1条人工波,对结构模型的自振频率、结构阻尼比、楼层加速度、楼层位移、构件的应变和楼层剪力进行分析,研究了在不同烈度地震作用下错层板柱结构损伤的发展情况及最终的破坏形态。结果表明:在地震作用下,错层板柱结构柱端和梁端出现裂缝,且随着地震烈度的不断增加,裂缝继续发展,直至柱端出现塑性铰,最终在8度罕遇地震工况下结构发生了整体倒塌; 错层部位的框架柱受力最为复杂,且应变水平较高,在试验过程中破坏最为严重; 随着输入的地震加速度持续增加,主体结构的损伤不断累积,结构自振频率不断降低,结构阻尼比呈增大的趋势; 地震烈度不同时,错层板柱结构加速度响应的峰值沿楼层分布规律差别较大,且随着地震烈度的增加,结构动力放大系数有降低的趋势; 错层板柱结构抗侧刚度较小,在较低烈度的地震作用下结构层间位移角已经不能满足规范要求; 建议在高烈度区域尽量避免采用错层板柱结构。
Abstract:
In order to study the seismic performance of staggered slab-column structure, shaking table tests were carried out on a structural model with a scale of 1:7. Two natural waves and one artificial wave were selected to analyze the natural frequency, structural damping ratio, acceleration, displacement, member strain and floor shear force of the structural model. The development of damage and final failure mode of staggered slab-column structure under different earthquake intensities were studied. The results show that under the action of earthquake, cracks appear at the column end and beam end of staggered slab-column structure, and with the continuous increase of seismic intensity, the cracks continue to develop until plastic hinges appear at the column end, and finally the whole structure collapses under the condition of 8 degree earthquake. The stress of the frame column at the staggered floor is the most complex, the strain level is high, and the damage is the most serious in the experimental process. With the continuous increase of the input seismic acceleration, the damage of the main structure accumulates, the natural frequency of the structure decreases, and the damping ratio of the structure increases. When the seismic intensity is different, the peak value of acceleration response of staggered slab-column structure varies greatly along the floor, and the structural dynamic amplification factor tends to decrease with the increase of seismic intensity. The lateral stiffness of staggered slab-column structure is small, and the interlayer displacement angle of the structure can not meet the requirements of the code under the action of low intensity earthquake. Therefore, it is suggested that staggered slab column structure should be avoided to applicating in high intensity areas.

参考文献/References:

[1] 建筑抗震设计规范:GB 50011—2010[S].北京:中国建筑工业出版社,2010.
Code for Seismic Design of Buildings:GB 50011—2010[S].Beijing:China Architecture & Building Press,2010.
[2]谢靖中,李国强,屠成松.错层结构的几点分析[J].建筑科学,2001,17(1):35-37,41.
XIE Jing-zhong,LI Guo-qiang,TU Cheng-song.Analytical Study on Staggered Floor Structure[J].Building Science,2001,17(1):35-37,41.
[3]ROBERTSON I,JOHNSON G.Cyclic Lateral Loading of Nonductile Slab-column Connections[J].ACI Structural Journal,2006,103(3):356-364.
[4]STEIN T,GHALI A,DILGER W.Distinction Between Punching and Flexural Failure Modes of Flat Plates[J].ACI Structural Journal,2007,104(3):357-365.
[5]RHA C,KANG T H K,SHIN M,et al.Gravity and Lateral Load-carrying Capacities of Reinforced Concrete Flat Plate Systems[J].ACI Structural Journal,2014,111(4):753-764.
[6]毛蓉萍.错层建筑在汶川地震中受损分析[J].工程力学,2010,27(增1):118-121.
MAO Rong-ping.Split-level Building Damaged in Wenchuan Earthquake Analysis[J].Engineering Mechanics,2010,27(S1):118-121.
[7]郭 楠,郭轶宏,杨颖伟.板柱-剪力墙结构适用高度研究[J].沈阳建筑大学学报(自然科学版),2011,27(1):79-83.
GUO Nan,GUO Yi-hong,YANG Ying-wei.Study of Suitable Height of Slab-column and Shearwall Structure[J].Journal of Shenyang Jianzhu University(Natural Science),2011,27(1):79-83.
[8]FICK D R,SOZEN M,KREGER M E.Cyclic Lateral Load Test and the Estimation of Elastic Drift Response of a Full-scale Three-story Flat-plate Structure[J].ACI Special Publication,2014,296:1-14.
[9]LIU J R,TIAN Y,ORTON S L,et al.Resistance of Flat-plate Buildings Against Progressive Collapse.I:Modeling of Slab-column Connections[J].Journal of Structural Engineering,2015,141(12):04015053.
[10]赵 晋,易伟建,朱泽华.板柱节点冲切破坏后受力性能试验研究[J].建筑结构学报,2015,36(7):35-42.
ZHAO Jin,YI Wei-jian,ZHU Ze-hua.Experimental Research on Post-punching Behavior of Slab-column Connections[J].Journal of Building Structures,2015,36(7):35-42.
[11]扶长生,吕西林,康 婧.柱支承双向板及板柱节点的设计与研究[J].建筑结构学报,2009,30(2):98-106.
FU Chang-sheng,LU Xi-lin,KANG Jing.Study and Design of Column-supported Slab and Its Connection[J].Journal of Building Structures,2009,30(2):98-106.
[12]RITCHIE M,GHALI A,DILGER W,et al.Unbalanced Moment Resistance by Shear in Slab-column Connections:Experimental Assessment[J].ACI Structural Journal,2006,103(1):74-82.
[13]CHOI K K,SHIN D W,PARK H G.Shear Strength Model for Slab-column Connections Subjected to Unbalanced Moment[J].ACI Structural Journal,2014,111(3):491-502.
[14]DRAKATOS I S,MUTTONI A,BEYER K.Internal Slab-column Connections Under Monotonic and Cyclic Imposed Rotations[J].Engineering Structures,2016,123:501-516.
[15]HAN S W,PARK Y M,KEE S H.Stiffness Reduction Factor for Flat Slab Structures Under Lateral Loads[J].Journal of Structural Engineering,2009,135(6):743-750.
[16]MIRZAEI Y.Post-punching Behavior of Reinforced Concrete Slabs[D].Lausanne:Cole Polytechnique Fédérale de Lausanne,2010.
[17]吴 强,程文瀼.水平力作用下板柱结构等代梁计算宽度的研究[J].工业建筑,2004,34(3):77-79.
WU Qiang,CHENG Wen-rang.Study of Calculating Width of Equivalent Beam for Slab-column Structure Subjected to Horizontal Forces[J].Industrial Construction,2004,34(3):77-79.
[18]许成祥,郭 骁,樊鸿博,等.基于OpenSees的钢管混凝土柱-钢梁错层节点抗震性能有限元分析[J].科学技术与工程,2020,20(11):4478-4484.
XU Cheng-xiang,GUO Xiao,FAN Hong-bo,et al.Finite Element Analysis on Seismic Behavior Column-steel Beam Staggered Joints of Concrete-filled Steel Tube Based on OpenSees[J].Science Technology and Engineering,2020,20(11):4478-4484.
[19]曹 赫,刘庆文.错层框架结构节点垂直加腋抗震性能分析[J].南昌航空大学学报(自然科学版),2019,33(1):80-85.
CAO He,LIU Qing-wen.Seismic Performance Analysis of Staggered Floor Frame Structure with Vertical Haunch Connections[J].Journal of Nanchang Hangkong University(Natural Sciences),2019,33(1):80-85.
[20]魏 巍,郭 喜,喻德建.错层框架结构考虑二阶效应的设计方法[J].重庆大学学报,2019,42(11):29-37.
WEI Wei,GUO Xi,YU De-jian.The Design Method of Staggered Frame Structure Considering the Second-order Effect[J].Journal of Chongqing University,2019,42(11):29-37.
[21]龙锦添,陈 瑶,王 辉,等.局部错层框架结构混合减震分析[J].结构工程师,2018,34(5):58-65.
LONG Jin-tian,CHEN Yao,WANG Hui,et al.Seismic Performance Analysis of Staggered Floors in Frame Structures[J].Structural Engineers,2018,34(5):58-65.
[22]王 硕.对错层处形成短柱的框架结构抗震性能分析[D].太原:太原理工大学,2014.
WANG Shuo.Analysis of the Seismic Performance of the Frame Structure of Short Column to Form Staggered[D].Taiyuan:Taiyuan University of Technology,2014.
[23]毛莹莹.错层结构动力特性及抗震性能研究[D].成都:西南交通大学,2009.
MAO Ying-ying.The Research of Dynamic Characteristics and Seismic Performance of Split-level Structure[D].Chengdu:Southwest Jiaotong University,2009.
[24]徐自国,黄小坤,高 杰,等.高烈度地区高层建筑错层剪力墙结构抗震性能分析[J].建筑结构,2012,42(4):69-74.
XU Zi-guo,HUANG Xiao-kun,GAO Jie,et al.Aseismic Performance Analysis on a Shear-wall High-rise Structure with Staggered Floors in High Earthquake Intensity Regions[J].Building Structure,2012,42(4):69-74.
[25]杨 彬.高层建筑结构中极短柱抗震性能研究[D].合肥:安徽建筑大学,2016.
YANG Bin.Research on Seismic Performance of High-rise Building Structure with Ultra Short Columns[D].Hefei:Anhui Jianzhu University,2016.
[26]徐张伟.多高层错层结构受力性能研究[D].合肥:安徽建筑大学,2017.
XU Zhang-wei.Research on Performance of Hight-rise Building with Staggered Floors[D].Hefei:Anhui Jianzhu University,2017.
[27]曹 赫.钢筋混凝土错层框架结构抗震性能分析[D].南昌:南昌航空大学,2019.
CAO He.Seismic Performance Analysis of RC Frame Structure with Staggered Floor[D].Nanchang:Nanchang Hangkong University,2019.
[28]王志军,韩风霞.地震作用下考虑分布质量的错层框架错层区域剪力分析[J].振动与冲击,2011,30(7):91-95.
WANG Zhi-jun,HAN Feng-xia.Shearing Force Analysis of Split-level Region for a Split-level Structure with Uniform Mass Distribution Under Earthquake[J].Journal of Vibration and Shock,2011,30(7):91-95.

相似文献/References:

备注/Memo

备注/Memo:
收稿日期:2021-09-06
基金项目:国家自然科学基金项目(59878013)
作者简介:许 巍(1975-),男,江苏盐城人,工程师,工学博士,E-mail:745982556@qq.com。
更新日期/Last Update: 2022-03-20