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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Analysis of stress, magnetic field and temperature on coupled gravity-Rayleigh waves in layered water-soil model
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Analysis of stress, magnetic field and temperature on coupled gravity-Rayleigh waves in layered water-soil model

机译:分层水土模型中重力-瑞利波耦合作用下的应力,磁场和温度分析

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In this study, the coupled effects of magnetic field, stress and thermal field on gravity waves propagating in a liquid layer over a solid surface are discussed. Due to change in temperature, initial hydrostatic stress and magnetic field, the gravity-sound Rayleigh waves can propagate in the liquid-solid interface. Dispersion properties of waves are derived by using classical dynamical theory of thermoelasticity. The phase velocity of gravity waves influenced quite remarkably in the presence of initial stress parameter, magneto-thermoelastic coupling parameter in the half space. Numerical solutions are also discussed for gravity-Rayleigh waves. In the absence of temperature, stress and magnetic field, the obtained results are in agreement with classical results.
机译:在这项研究中,讨论了磁场,应力和热场对在固体表面上的液体层中传播的重力波的耦合效应。由于温度,初始静液压应力和磁场的变化,重力声瑞利波可以在液固界面传播。利用经典的热弹性动力学理论推导了波的色散特性。在半空间中存在初始应力参数,磁热弹性耦合参数时,重力波的相速度会受到很大影响。还讨论了重力瑞利波的数值解。在没有温度,应力和磁场的情况下,所得结果与经典结果一致。

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