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时域动力边界元理论研究及其初步应用
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作者 盛谦 黄玉盈 《长江科学院院报》 CSCD 北大核心 1996年第S1期44-48,共5页
系统论述了时域动力边界元的理论以及基于边界元方法的施工开挖简化模拟方法,并开发了有关的软件。
关键词 岩质边坡 动力边界元 数值分析 计算机软件
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盆山耦合场地对平面SH波的散射 被引量:3
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作者 刘中宪 马宁宁 刘蕾 《应用力学学报》 CAS CSCD 北大核心 2015年第5期839-844,900,共6页
沉积盆地和山体对地震动的显著影响已被地震观测和理论证实,但两者的复合作用尚需予以定量分析。本文基于单层位势理论,在散射体表面施加虚拟荷载构造散射波场;然后由边界条件建立方程求解得到虚拟荷载密度,由散射波场和自由波场叠加得... 沉积盆地和山体对地震动的显著影响已被地震观测和理论证实,但两者的复合作用尚需予以定量分析。本文基于单层位势理论,在散射体表面施加虚拟荷载构造散射波场;然后由边界条件建立方程求解得到虚拟荷载密度,由散射波场和自由波场叠加得到总波场,并进行了详细的参数(入射频率、入射角度、山体高度等)分析。结果表明:在SH波水平入射情况下,山体主要表现为"屏障"作用,其后方盆地中位移幅值可降低30%左右;在垂直入射情况下,盆地内部地震响应反而会增大,如当η=0.5时,其放大程度超过50%;整体上看,随着山体高度增大,对盆地内部地震响应的影响增大。本文研究结论可为复杂地形条件下长大桥梁、高坝等大型工程结构抗震设计提供部分科学依据。 展开更多
关键词 盆山耦合 复杂场地条件 动力边界元 地震波散射
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Scattering wave field around a cavity with circular cross-section embedded in saturated soil using boundary element method 被引量:3
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作者 张鸿 高谦 徐斌 《Journal of Central South University》 SCIE EI CAS 2013年第11期3296-3304,共9页
Based on Biot’s theory and considering the properties of a cavity,the boundary integral equations for the numerical simulation of wave scattering around a cavity with a circular cross-section embedded in saturated so... Based on Biot’s theory and considering the properties of a cavity,the boundary integral equations for the numerical simulation of wave scattering around a cavity with a circular cross-section embedded in saturated soil are obtained using integral transform methods.The Cauchy type singularity of the boundary integral equation is discussed.The effectiveness of the properties of soil mass and incident field on the dynamic stress concentration and pore pressure concentration around a cavity is analyzed.Our results are in good agreement with the existing solution.The numerical results of this work show that the dynamic stress concentration and pore pressure concentration are influenced by the degree of fluid–solid coupling as well as the pore compressibility and water permeability of saturated soil.With increased degree of fluid–solid coupling,the dynamic stress concentration improves from 1.87 to 3.42 and the scattering becomes more significant.With decreased index of soil mass compressibility,the dynamic stress concentration increases and its maximum reaches 3.67.The dynamic stress concentration increases from 1.64 to 3.49 and pore pressure concentration improves from 0.18 to 0.46 with decreased water permeability of saturated soil. 展开更多
关键词 saturated soil boundary integral equations wave scattering dynamic stress concentration Green's function
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