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荷载作用下多孔饱和地基的热-水-力耦合动力响应分析
引用本文:熊春宝,郭颖,刁钰,李志.荷载作用下多孔饱和地基的热-水-力耦合动力响应分析[J].计算力学学报,2018,35(6):795-801.
作者姓名:熊春宝  郭颖  刁钰  李志
作者单位:天津大学 建筑工程学院, 天津 300072,天津大学 建筑工程学院, 天津 300072,天津大学 建筑工程学院, 天津 300072,天津大学 建筑工程学院, 天津 300072
摘    要:基于广义热弹性理论,结合达西定律,对Biot波动方程进行修正,研究了一个受到荷载作用的多孔饱和地基的热-水-力多场耦合动态响应问题。建立了多孔饱和地基在荷载作用下的热-水-力耦合模型及控制方程,该模型可退化为热弹性耦合模型。采用正则模态法求解,得到了问题的解析解,讨论了热-水-力耦合模型和热弹性耦合模型的区别,分析了荷载频率变化对地基中各物理量的影响。最终给出了无量纲的竖向位移、超孔隙水压力、竖向应力和温度等物理量的分布规律。

关 键 词:广义热弹性理论  热松弛时间  热-水-力耦合模型  热弹性耦合模型  多孔弹性体  正则模态法
收稿时间:2017/9/5 0:00:00
修稿时间:2017/11/20 0:00:00

Coupled thermo-hydro-mechanical dynamic response of saturated porous foundation under normal load
XIONG Chun-bao,GUO Ying,DIAO Yu,LI Zhi.Coupled thermo-hydro-mechanical dynamic response of saturated porous foundation under normal load[J].Chinese Journal of Computational Mechanics,2018,35(6):795-801.
Authors:XIONG Chun-bao  GUO Ying  DIAO Yu  LI Zhi
Institution:School of Civil Engineering, Tianjin University, Tianjin 300072, China,School of Civil Engineering, Tianjin University, Tianjin 300072, China,School of Civil Engineering, Tianjin University, Tianjin 300072, China and School of Civil Engineering, Tianjin University, Tianjin 300072, China
Abstract:This work concerns the problems associated with a poroelastic half-space soil medium subject to a normal force within the context of generalized thermoelasticity with one relaxation time.By remaining faithful to Biot''s theory of dynamic poroelasticity,the foundation material is idealized as a uniform,fully saturated,poroelastic half-space medium.The governing equations of thermo-hydro-mechanical dynamic model (THMD) is established,and this model can reduced into the thermo-elastic dynamic model (TMD).We then deduce the general solutions of non-dimensional vertical displacement,excess pore water pressure,vertical stress,and temperature distribution using normal mode analysis and depict them graphically.Throughout this paper,we discuss the differences between THMD and TMD.
Keywords:generalized thermoelastic theory  relaxation time  coupled thermo-hydro-mechanical dynamic  thermo-elastic dynamic  poroelastic  normal mode analysis
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