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可液化土层对地下结构地震反应的影响研究 被引量:7
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作者 刘春晓 陶连金 +2 位作者 边金 陈向红 张倍 《铁道标准设计》 北大核心 2018年第2期133-139,共7页
为了研究砂土液化大变形对地铁车站结构产生的重要影响,使用FLAC^(3D),采用PL-Fin土体液化本构模型,总结地下结构位于可液化土层时,液化土层从液化初始到产生液化大变形时刻,土体液化、结构位移变形和结构周围土体应力与结构应力变化规... 为了研究砂土液化大变形对地铁车站结构产生的重要影响,使用FLAC^(3D),采用PL-Fin土体液化本构模型,总结地下结构位于可液化土层时,液化土层从液化初始到产生液化大变形时刻,土体液化、结构位移变形和结构周围土体应力与结构应力变化规律,并与非液化场地下的地下结构地震反应进行对比。主要结论有:地铁车站结构从底部开始液化,引起两侧土体的移动和结构的倾斜上浮;由于结构两侧土体液化较轻微,结构左侧墙临近土体应力及结构应力在液化和非液化场地中的变化规律比较类似,底部土体液化较严重导致液化地层中结构底板及底板相邻土体应力变化同非液化土层存在较大差异。 展开更多
关键词 液化 土层-地下结构 PL-Fin模型 地震反应
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Exploring Soil Layers and Water Tables with Ground-Penetrating Radar 被引量:12
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作者 K.ROTH U.WOLLSCHLAGER +1 位作者 CHENGZhu-Hua ZHANGJia-Bao 《Pedosphere》 SCIE CAS CSCD 2004年第3期273-282,共10页
Ground-penetrating radar (GPR) has been used predominantly for environments with low electrical conductivity like freshwater aquifers, glaciers, or dry sandy soils. The objective of the present study was to explore it... Ground-penetrating radar (GPR) has been used predominantly for environments with low electrical conductivity like freshwater aquifers, glaciers, or dry sandy soils. The objective of the present study was to explore its application for mapping in subsurface agricultural soils to a depth of several meters. For a loamy sand and a clayey site on the North China Plain, clay inclusions in the sand were detected; the thickness, inclination, and continuity of the confining clay and silt layers was assessed; and a local water table was mapped. Direct sampling (soil coring and profiling) in the top meter and independent measurement of the water table were utilized to confirm the findings. Also, effective estimates of the dielectric number for the site with the dielectric number of moist clayey soils depending strongly on frequency were obtained. Thus, important properties of soils, like the arrangement and type of layers and in particular their continuity and inclination, could be explored with moderate efforts for rather large areas to help find optimal locations for the time-consuming and expensive measurements which would be necessary to detail a model of the subsurface. 展开更多
关键词 ground-penetrating radar soil layers water table
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