Study on Seismic Response of Silo-Stock-Foundation Interaction System
LI Shu-wei1,2, ZHAO Wen1, GUO Zhi-yu3
1. School of Resources & Civil Engineering, Northeastern University, Shenyang 110819, China; 2. China Energy Engineering Group Co, Ltd, Beijing 100022, China; 3. Heilongjiang Electric Power Design Institute Co, Ltd, China Energy Construction Group, Harbin 150078, China.
LI Shu-wei, ZHAO Wen, GUO Zhi-yu. Study on Seismic Response of Silo-Stock-Foundation Interaction System[J]. Journal of Northeastern University Natural Science, 2018, 39(12): 1764-1768.
[1]Couto A,Ruiz A,Aguado P J.Design and instrumentation of a mid-size test station for measuring static and dynamic pressures in silos under different conditions–Part I:Description[J].Computers and Electronics in Agriculture,2012,85:164-173. [2]姜忻良,丁学成.桩土物理模型及结构-桩-土相互作用[J].振动工程学报,1993,6(2):143-152.(Jiang Xin-liang,Ding Xue-cheng.The physical model of pile-soil and structure-pile-soil interaction system [J].Journal of Vibration Engineering,1993,6(2):143-152.) [3]Butenweg C,Rosin J,Holler S.Analysis of cylindrical granular material silos under seismic excitation[J].Buildings,2017,7(3):61-65. [4]Wang B,Chen M,Tang Z,et al.Finite element analysis of huge coal silo foundation[J].Rock and Soil Mechanics,2010,31(6):1983-1988. [5]王建平.贮仓-贮料-桩-地基空间相互作用系统的动力特性及随机地震响应研究[D].西安:西安建筑科技大学,2006.(Wang Jian-ping.Studies on dynamic characteristics and random seismic response of silo-stock-pile-foundation spatial interaction system[D].Xi′an:Xi′an University of Architecture and Technology,2006.) [6]Yu X,Raeesi A,Ghaednia H,et al.Behavior of a large steel field silo structure subject to grain loading[J].Journal of Performance of Constructed Facilities,2017,31(5):04017038. [7]Tu P,Vimonsatit V.Silo quaking of iron ore train load out bin—a time-varying mass structural dynamic problem[J].Advanced Powder Technology,2017,28(11):3014-3025. [8]Wang X,Yang Z,Shu X,et al.The static contact statuses between granular materials and flat-bottomed steel silos[J].Powder Technology,2013,235:1053-1059. [9]Knebel K,Schweizerhof K.Buckling of cylindrical shells containing granular solids[J].Thin-Walled Structures,1995,23(1):295-312. [10]程瑜.钢筋混凝土立筒仓结构抗震分析[D].郑州:河南工业大学,2010.(Cheng Yu.The analysis an antiseismic performance of reinforced concrete in vertical cylinder silo[D].Zhengzhou:Henan University of Technology,2010.) [11]赵书锋,尉桂芬.地震作用下钢筋混凝土筒仓动力特性及变形分析[J].河南建材,2014(6):38-39+42.(Zhao Shu-feng,Wei Gui-fen.Dynamic characteristics and deformation analysis of reinforced concrete silos under seismic action[J].Henan Building Materials,2014(6):38-39+42.) [12]张德玉.大直径预应力混凝土浅筒仓抗震计算及模型简化分析[D].合肥:安徽建筑工业学院,2010.(Zhang De-yu.Earthquake resistance calculation and model simplifies analysis of large-diameter prestressed concrete short silo[D].Hefei:Anhui Jianzhu University,2010.) [13]Ayuga F.Some unresolved problems in the design of steel cylindrical silos[M]// Structures and Granular Solids.Boca Raton:CRC Press,2008:123-133. [14]住房和城乡建设部.建筑抗震设计规范:GB50011-2010[S].北京:中国建筑工业出版社,2016.(Ministry of Housing and Urban-Rural Development.Code for seismic design of buildings:GB50011-2010[S].Beijing:China Construction Industry Press,2016.) [15]住房和城乡建设部.钢筋混凝土筒仓设计规范:GB50077-2003[S].北京:中国计划出版社,2003.(Ministry of Housing and Urban-Rural Development.Code for design of reinforced concrete silos:GB50077-2003[S].Beijing:China Planning Press,2003.) [16]李树蔚,赵文.筒承式筒仓结构的优化设计[J].电力设备管理,2018(5):80-81+84.(Li Shu-wei,Zhao Wen.Optimum design of barrel supported silos[J].Power Equipment Management,2018(5):80-81+84.)