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首页> 外文期刊>Engineering Computations >Influence of mechanical imperfection on the transference of Love-type waves in viscoelastic substrate overloaded by visco- micropolar composite structure
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Influence of mechanical imperfection on the transference of Love-type waves in viscoelastic substrate overloaded by visco- micropolar composite structure

机译:机械缺陷对粘弹性复合结构超载粘弹性衬底中爱型波转移的影响

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PurposeThis mathematical analysis has been accomplished for the purpose of understanding the propagation behaviour like phase velocity and attenuation of Love-type waves through visco-micropolar composite Earth's structure.Design/methodology/approachThe considered geometry of this problem involves a micropolar Voigt-type viscoelastic stratum imperfectly bonded to a heterogeneous Voigt-type viscoelastic substratum. With the aid of governing equations of motion of each individual medium and method of separation of variable, the components of micro-rotation and displacement have been obtained.FindingsThe boundary conditions of the presumed geometry at the free surface and at the interface, together with the obtained components of micro-rotation, displacement and mechanical stresses give rise to the determinant form of the dispersion relation. Moreover, some noteworthy cases have also been extrapolated in detail. Graphical interpretation irradiating the impact of viscoelasticity, micropolarity, heterogeneity and imperfectness on the phase velocity and attenuation of Love-type waves is the principal highlight of the present study.Practical implicationsIn this study, the influence of the considered parameters such as micropolarity, viscoelasticity, heterogeneity, and imperfectness has been elucidated graphically on the phase velocity and attenuation of Love-type waves. It has been noticed from the graphs that with the rising magnitude of micropolarity and heterogeneity, the attenuation curves shift upwards, that is the loss of energy of these waves takes place in a rapid way. Hence, from the outcomes of the present analysis, it can be concluded that heterogeneous micropolar stratified media can serve as a helpful tool in increasing the attenuation or in other words, loss of energy of Love-type waves, thus reducing the devastating behaviour of these waves.Originality/valueTill date, the mathematical modelling as well as vibrational analysis of Love-type waves in a viscoelastic substrate overloaded by visco-micropolar composite Earth's structure with mechanical interfacial imperfection remain unattempted by researchers round the globe. The current analysis is an approach for studying the traversal traits of surface waves (here, Love-type waves) in a realistic stratified model of the Earth's crust and may thus, serves as a dynamic paraphernalia in various domains like earthquake and geotechnical engineering; exploration geology and soil mechanics and many more, both in a conceptual as well as pragmatic manner.
机译:目的已经完成了Matposethis数学分析,以了解通过Visco-Micropolar复合地球结构的相速和爱型波的衰减等传播行为.Design/Methodology/Approach认为这个问题的几何形状涉及微柱Voigt型粘弹性层不完美地键合到非均相的Voigt型粘弹性下皮。借助于每个单独的介质的运动方程和变量的分离方法,已经获得了微旋转和位移的组件。在自由表面和界面处的假定几何形状的边界条件与获得的微旋转,位移和机械应力的组分产生了分散关系的决定性形式。此外,一些值得注意的病例也已经详细推断出来。图形解释照射粘弹性,切割,异质性,异质性和不完全对爱型波的阶段速度和衰减的影响是本研究的主要突出。该研究的实际意义,所考虑的参数如微氧度,粘弹性的影响,异质性,并且不完全在图形上阐明了爱型波的相速度和衰减。已经注意到,从图的幅度上升和异质性上升,衰减曲线向上移动,即这些波的能量损失以快速的方式发生。因此,从本分析的结果来看,可以得出结论,异构微息分层介质可以作为增加衰减或换句话说,爱情型波能量丧失的有用工具,从而降低了这些的毁灭性行为Wave.Riginality /估计日期,Mathcoolast inder的粘弹性衬底中的数学建模以及对粘弹性的粘弹性的振动分析通过机械界面缺陷的结构,通过研究人员仍然没有自由。目前的分析是在地壳的现实分层模型中研究地面波(这里,爱型波)的遍历性状的方法,因此可以作为地震和岩土工程等各个领域的动态随身处于动态地形;勘探地质和土壤力学等等,概念和务实的方式。

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