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矿山爆破振动载荷下框架结构的动力响应分析
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  • 英文篇名:Dynamic response analysis of the architectural structure under the blasting vibration loading of mine
  • 作者:米中阳 ; 张智宇 ; 黄永辉 ; 雷振
  • 英文作者:MI Zhongyang;ZHANG Zhiyu;HUANG Yonghui;LEI Zhen;Faculty of Land and Resource Engineering,Kunming University of Science and Technology;Institute of New Blasting Technology and Application,Kunming University of Science and Technology;Guizhou Institute of Technology,Institute Mining of Engineering;
  • 关键词:爆破振动 ; 数值计算 ; 动力响应 ; 时程分析 ; 加速度放大系数
  • 英文关键词:blasting vibration;;numerical calculation;;dynamic response;;time-history curve;;acceleration magnification coefficients
  • 中文刊名:有色金属(矿山部分)
  • 英文刊名:Nonferrous Metals(Mining Section)
  • 机构:昆明理工大学国土资源工程学院;昆明理工大学爆破新技术应用研究所;贵州理工学院矿业工程学院;
  • 出版日期:2019-01-25
  • 出版单位:有色金属(矿山部分)
  • 年:2019
  • 期:01
  • 基金:国家自然科学基金资助项目(41672303,51664007,51564027);; 云南省应用基础研究资助项目(2013FZ036)
  • 语种:中文;
  • 页:99-103
  • 页数:5
  • CN:11-1839/TF
  • ISSN:1671-4172
  • 分类号:TD235
摘要
针对矿山爆破振动对邻近建筑结构的影响,对现场的爆破振动进行了监测,运用动力有限元法建立了包括确定爆破激振力的作用位置、大小和时程特征等爆破加载模型。采用ANSYS/LS-DYNA软件分别将爆破振动波输入建筑结构模型进行数值计算,通过建筑结构在爆破载荷作用下的结构自振周期随阶数变化和加速度、速度和位移时程曲线及各楼层测点的加速度放大系数的变化,分析了某矿办公楼对爆破振动的动力响应情况。研究结果表明:在模态4阶之前自振周期下降较快,5、6阶比较平稳,7阶后自振周期缓慢变小并趋于平稳,且模型的高阶振型出现扭转效应。随着楼层增加框架结构对矿山爆破振动响应的加速度增大的趋势。
        In view of the influence of mine blasting on the surrounding villages buildings,blasting vibration at the site was monitored,the blasting load model was established by applying the method of dynamic finite element method,including the exciting force of blasting vibration force location,size,and time-history features.Blasting vibration wave was loaded to the structure model for numerical calculation by using ANSYS/LS-DYNA software,the dynamic response of a mine office building under blasting loading conditions was analyzed through the variation of the structural self vibration period of the structure under the blasting load,and variations of the acceleration,velocity and displacement time-history curve and the acceleration magnification coefficients number of each floor measure point.The results indicated the self-oscillation period dropped rapidly before the 4 th order of the mode,and the 5 th and 6 th steps were relatively stable,after the 7 th order,the natural vibration period slowly became smaller and tended to be stable,and the high-order mode of the model had a torsional effect.In addition to the two-layer outer frame structure,the degree of amplification of mine blasting acceleration tended to increase with the floor.
引文
[1]张安康.爆破地震波作用下建筑结构的动力响应与损伤破坏研究[D].山东青岛:山东科技大学,2011.
    [2]曹孝君,张继春,吕和林.频率对爆破地震作用下结构的动力响应的影响研究[J].爆破,2006,23(2):14-19.
    [3]邹景明.爆破地震波作用下的结构动力响应机制[D].山东青岛:青岛理工大学,2012.
    [4]高富强,张光雄,杨军.爆破地震荷载作用下建筑结构的动力响应分析[J].爆破,2015(1):5-10.
    [5]黄志强.建筑结构对爆破振动响应的数值模拟研究[J].工业建筑,2009(增刊1):193-195.
    [6]魏晓林.爆破震动对邻近建筑物的危害影响[J].爆破,1998(1):48-54.
    [7]中华人民共和国国家质量监督检验检疫总局.爆破安全规程:GB 6722-2014[S].北京:中国标准出版社,2015.

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