具有非局部双相位滞后的不同介质边界面波的分析

IF 0.8 4区 综合性期刊 Q3 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences, India Section A: Physical Sciences Pub Date : 2023-09-27 DOI:10.1007/s40010-023-00850-y
Rajesh Kumar, Vipin Gupta, Vijayata Pathania, Rajneesh Kumar, M. S. Barak
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摘要

本文讨论了具有非局部双相滞后的双孔热弹性固体半空间\((M_{1} )\)与无粘液体半空间\((M_{2} )\)接触时平面波的行为。控制方程以二维形式表示,采用正态模态分析对问题进行求解,以便进一步研究。在介质\(M_{1}\)中存在四个耦合纵波,一个耦合横波,在介质\(M_{2}\)中存在一个耦合机械波。这些波受非局部双相滞后和双孔隙率参数的影响。长期方程由应用界面力学和热条件确定。得到了相速度、衰减系数、穿透深度、比损耗等波特性的紧凑形式。得到了介质中位移场、温度场和体积分数场的分量\(M_{1}\)以及介质中的法向速度场和声压场\(M_{2}\)的封闭形式。数值模拟结果以图形的形式描述了非局部和相位滞后对波的基本特性的影响。
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Analysis of Waves at Boundary Surfaces at Distinct Media with Nonlocal Dual-Phase-Lag

This study discusses the behavior of plane waves in a double porous thermoelastic with nonlocal dual-phase-lag solid half-space \((M_{1} )\) in contact with inviscid liquid half-space \((M_{2} )\). The governing equations are expressed in two-dimensional form, and normal mode analysis is adopted to solve the problem for further investigation. It has been found that there exist four coupled longitudinal, one transverse wave in the medium \(M_{1}\), and one mechanical wave in the medium \(M_{2}\). These waves are under the influence of parameters of nonlocal dual-phase-lag and double porosity. Secular equations are determined by applying interfacial mechanical and thermal conditions. The compact form of wave characteristics like phase velocity, attenuation coefficient, penetrating depth, and specific loss is obtained. The component of displacement, temperature change, and volume fraction fields in the medium \(M_{1}\), along with normal velocity and acoustic pressure in the medium, \(M_{2}\) are obtained in closed form. Numerically simulated results are displayed in the form of graphs to depict the behavior of nonlocal and phase lag on basic characteristics of waves.

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来源期刊
CiteScore
2.60
自引率
0.00%
发文量
37
审稿时长
>12 weeks
期刊介绍: To promote research in all the branches of Science & Technology; and disseminate the knowledge and advancements in Science & Technology
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