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作 者:杜红凯 梁昱坤 周洋 卢肇钧 Du Hongkai;Liang Yukun;Zhou Yang;Lu Zhaojun(Beijing University of Civil Engineering and Architecture,School of Civil and Traffic Engineering,Beijing 100044,China)
机构地区:[1]北京建筑大学土木与交通工程学院,北京100044
出 处:《市政技术》2024年第7期175-182,共8页Journal of Municipal Technology
摘 要:洪水、地震、爆炸等自然和人为灾害均会导致建筑结构损坏,甚至倒塌,为解决有限单元法(Finite Element Method,FEM)和离散单元法(Discrete Element Method,DEM)等常用模拟仿真方法难以准确高效地模拟结构大变形及倒塌全过程的问题,采用应用单元法(Applied Element Method,AEM)构建模型,并与FEM、DEM进行了对比,分析了3种方法的适用范围及AEM在洪水、地震、爆炸等灾害中的应用情况。研究结果表明,AEM能够高效且可靠地模拟结构从小变形到倒塌的全过程,具有广阔的应用前景。Natural and man-made disasters such as floods,earthquakes and explosions will cause structural damage and even collapse of buildings.In order to solve the problem that commonly simulation methods of Finite Element Method(FEM)and Discrete Element Method(DEM)can not accurately and efficiently simulate the whole process of large deformation and collapse of structures,the Applied Element Method(AEM)is used to construct the model.The model is compared with FEM and DEM.And the application range of the three methods and the application of AEM in flood,earthquake,explosion and other disasters are analyzed.The research results indicate that AEM can simulate the whole process from small structural deformation to collapse efficiently and reliably,which has a broad application prospect.
分 类 号:U416.1[交通运输工程—道路与铁道工程]
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