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任意多个凸起地形对平面P波的散射
引用本文:巴振宁,彭琳,梁建文,黄棣旸.任意多个凸起地形对平面P波的散射[J].工程力学,2018,35(7):7-17,23.
作者姓名:巴振宁  彭琳  梁建文  黄棣旸
作者单位:1.天津大学土木系, 天津 300072;;2.滨海土木工程结构与新材料教育部重点实验室, 天津 300072;;3.中国建筑股份有限公司技术中心, 北京 101300
基金项目:国家自然科学基金项目(51778413,51578373)
摘    要:结合\

关 键 词:间接边界元法  平面P波  散射  多个凸起地形  动力相互作用
收稿时间:2017-03-08
修稿时间:2018-03-27

SCATTER AND DIFFRACTION OF ARBITRARY NUMBER OF HILLS FOR INCIDENT PLANE P-WAVES
BA Zhen-ning,PENG Lin,LIANG Jian-wen,HUANG Di-yang.SCATTER AND DIFFRACTION OF ARBITRARY NUMBER OF HILLS FOR INCIDENT PLANE P-WAVES[J].Engineering Mechanics,2018,35(7):7-17,23.
Authors:BA Zhen-ning  PENG Lin  LIANG Jian-wen  HUANG Di-yang
Affiliation:1.Department of Civil Engineering, Tianjin University, Tianjin 300072, China;;2.Key Laboratory of Coast Civil Structure Safety(Tianjin University), Ministry of Education Tianjin 300072, China;;3.China State Construction Technical Center, Beijing 101300, China
Abstract:The diffraction of plane P waves on multiple hills of an arbitrary number is studied using an indirect boundary element method (IBEM), combined with the technology of ‘conjunction’. The model is divided into an open layered half-space region and multiple independent closed regions. Wave fields are classified as free fields and scattered fields. The free field response can be solved by the direct stiffness method, and the diffraction response of the open layered half-space region and closed regions can be simulated by the Green's function of fictitious distributed loads acting on corresponding boundaries. And the densities of the distributed loads are determined by solving the algebraic system based on boundary conditions. The validity of the method is confirmed by the comparison with published results. Then numerical analyses are performed by multiple hills topography in the cases of different heights, different distances and different numbers. The results show that the surface displacement of multiple hills is significantly bigger than those of a single hill because of the dynamic interaction among hills, making the surface displacement and spectrum amplification of multiple hills obviously different from those of a single hill. The variation of heights and distances of hills on both sides would lead to the changes in the dynamic interaction mechanism within hills, which alter the peak and peak-period amplification of spectrum furthermore. Increases in heights and numbers of hills on both sides, as well as decreases in distances from each other will result in a more intensive dynamic interaction, a bigger displacement and a more complex spatial distribution.
Keywords:Indirect boundary element method (IBEM)  plane P waves  diffraction  multiple hills  dynamic interaction
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