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单排空心管桩屏障对平面SV波的隔离效果研究
引用本文:徐平,夏唐代,周新民.单排空心管桩屏障对平面SV波的隔离效果研究[J].岩土工程学报,2007,29(1):131-136.
作者姓名:徐平  夏唐代  周新民
作者单位:浙江大学岩土工程研究所;浙江大学岩土工程研究所 浙江杭州310027;郑州大学交通运输工程系;河南郑州450002;浙江杭州310027;
摘    要:参考圆柱坐标系下一排圆柱体对弹性波的多重散射,根据桩土界面处应力和位移连续的条件,得到了非连续空心管桩屏障对入射平面SV波散射系数的理论解。通过引入无量纲位移幅值,即屏障后土体的竖向位移与入射平面SV波引起的竖向位移的比值,比较了不同形式的屏障对入射平面SV波的隔离效果。讨论了桩间距、屏障的位置和管桩的剪切模量(刚度)对单排空心管桩屏障对平面SV波隔离效果的影响,为非连续屏障的隔振设计提供了理论依据。

关 键 词:空心管桩  非连续屏障  平面SV波  隔振设计  
文章编号:1000-4548(2007)01-0131-06
修稿时间:2005-11-07

Study on effect of barrier of a row of hollow pipe piles on isolation of incident plane SV waves
XU Ping,XIA Tang-dai,ZHOU Xin-min.Study on effect of barrier of a row of hollow pipe piles on isolation of incident plane SV waves[J].Chinese Journal of Geotechnical Engineering,2007,29(1):131-136.
Authors:XU Ping  XIA Tang-dai  ZHOU Xin-min
Affiliation:1.Institute of Geotechnical Engineering Zhejiang University Hangzhou 310027 China 2.Department of Transportation Engineering Zhengzhou 450002 China
Abstract:According to the multiple scattering of elastic waves by a row of cylinders in cylindrical coordinate systems, supposing that the interface of hollow pipe piles and soils was coherent, and stresses and displacements were continuous, a theoretical solution of scattering coefficients of incident plane SV Waves by the barrier of a row of hollow pipe piles was obtained. By studying the normalized vertical displacement amplitude, the ratio of vertical displacement amplitude of soils behind the barrier to the amplitude of the incident SV waves, the effects of different types of barriers on the isolation of incident plane SV waves were compared, and the influence of displacement between the center of the two adjacent hollow pipe piles, the location of the barriers and the shear modulus or rigidness of the hollow pipe piles on the effect of isolation of the incident plane SV waves were discussed, and it would provide theoretical basis for the design of discontinuous barrier for vibration isolation.
Keywords:hollow pipe pile  discontinuous barrier  plane SV wave  vibration isolation design
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