文章摘要
陈炜昀,陈国兴,刘志军,夏唐代.不同边界条件下非饱和土地基中的Rayleigh波传播[J].水利学报,2015,46(11):1329-1336
不同边界条件下非饱和土地基中的Rayleigh波传播
Propagation of Rayleigh wave in unsaturated soil at different boundary conditions
投稿时间:2014-09-13  
DOI:10.13243/j.cnki.slxb.20141112
中文关键词: 非饱和土  Rayleigh 波  弥散特性  传播速度  衰减系数
英文关键词: unsaturated soil  Rayleigh wave  dispersion characteristics  propagation velocity  attenuation coefficient
基金项目:国家自然科学基金资助项目(41502285,51378258);江苏省自然科学基金(BK20150952);江苏省高校自然科学研究项目(14KJB41000)
作者单位
陈炜昀 南京工业大学岩土工程研究所, 江苏南京 210009 
陈国兴 南京工业大学岩土工程研究所, 江苏南京 210009 
刘志军 浙江大学软弱土与环境土工教育部重点实验室, 浙江杭州 310058 
夏唐代 浙江大学软弱土与环境土工教育部重点实验室, 浙江杭州 310058 
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中文摘要:
      地球表面绝大部分土层并非处于完全饱和状态,故采用传统的饱和土两相介质理论进行动力学分析时,计算结果往往与实际情况不符。针对这一客观问题,以非饱和土为研究对象,在三相孔隙介质波动理论的基础上开展了非饱和土体半空间中Rayleigh波的弥散特性研究。分别考虑了两种不同的边界条件:(a)不透水不透气地基边界;(b)透水透气地基边界。根据边界条件及相关的本构关系式,推导出相应Rayleigh波的弥散方程,再通过Newton-Raphson法进行数值求解。最后讨论了在不同边界条件下,非饱和土地基表面附近Rayleigh波的弥散特性受到地基土饱和度、频率以及土体固有渗透系数的影响。计算结果表明:在两种边界条件下Rayleigh波的传播均受到地基土饱和度变化的影响。并且,频率及渗透系数在不同边界条件下对Rayleigh波特性的影响明显不同。
英文摘要:
      Most of the soil of the earth's surface is not completely saturated, so when the traditional two-phase media theory is used for dynamic analysis,the results are often inconsistent with the actual situation. In view of this objective problem,the unsaturated soil is chosen to be our research object. Based on the wave theory of three-phase porous media, the research on the dispersion characteristics of Rayleigh wave in unsaturated soil half-space is carried out. Two different boundary conditions are considered:(a) water/air impermeable boundary, and(b) water/air permeable boundary. According to the boundary conditions and constitutive relations, the corresponding dispersion equations of Rayleigh wave are derived. Then, through the Newton-Raphson method, the equations could be solved numerically. Lastly, the influences of soil saturation degree, frequency and intrinsic permeability of the soil on the dispersion characteristics of the Rayleigh wave at different boundary conditions are discussed, respectively. The results show that, at both these two kinds of boundary conditions, the propagation of the Rayleigh waves with various frequencies is affected by the saturation change. Moreover, the influences of frequency and permeability coefficient on the propayation characteristics of Rayleigh waves at different boundary conditions are quite different.
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