Reflection of plane waves in thermoelastic medium with double porosity

被引:9
|
作者
Kumar, Rajneesh [1 ]
Vohra, Richa [2 ]
Gorla, M. G. [2 ]
机构
[1] Kurukshetra Univ, Dept Math, Kurukshetra, Haryana, India
[2] Himachal Pradesh Univ, Dept Math, Shimla, India
关键词
Reflection; Lord-Shulman theory; Amplitude ratios; Double porosity; Plane waves;
D O I
10.1108/MMMS-01-2016-0002
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Purpose - The purpose of this paper is to study the reflection of plane waves in thermoelastic medium with double porosity structure. Design/methodology/approach - A two-dimensional model is considered of an isotropic thermoelastic half-space with double porosity. Thermoelasticity with one relaxation time given by Lord and Shulman (1967) has been used to study the problem. It is found that there exists four coupled longitudinal waves, namely, longitudinal wave (P), longitudinal thermal wave (T), longitudinal volume fractional wave corresponding to pores (PVI) and longitudinal volume fractional wave corresponding to fissures (PVII), in addition to an uncoupled transverse wave (SV). Findings - The formulae for amplitude ratios of various reflected waves are obtained in closed form. It is found that these amplitude ratios are functions of angle of incidence. Effect of porosity and thermal relaxation time is shown graphically on the amplitude ratios with angle of incidence for a particular model. Originality/value - Reflection of plane waves is of great practical importance. There are many organic and inorganic deposits beneath the earth surface. Wave propagation is the simplest and most economical technique to detect these. The model discussed in the present paper can provide useful information for experimental researchers working in the field of geophysics and earthquake engineering, along with seismologist working in the field of mining tremors and drilling into the crust of the earth.
引用
收藏
页码:748 / 778
页数:31
相关论文
共 50 条
  • [41] Reflection of plane waves in thermoelastic microstructured materials under the influence of gravitation
    S. M. Abo-Dahab
    Adnan Jahangir
    Abo-el-nour N. Abd-alla
    Continuum Mechanics and Thermodynamics, 2020, 32 : 803 - 815
  • [42] Reflection and Transmission of Plane Waves in Nonlocal Generalized Thermoelastic Solid with Diffusion
    S. Malik
    D. Gupta
    K. Kumar
    R. K. Sharma
    P. Jain
    Mechanics of Solids, 2023, 58 : 161 - 188
  • [43] Reflection of plane waves in thermoelastic microstructured materials under the influence of gravitation
    Abo-Dahab, S. M.
    Jahangir, Adnan
    Abd-alla, Abo-el-nour N.
    CONTINUUM MECHANICS AND THERMODYNAMICS, 2020, 32 (03) : 803 - 815
  • [44] Reflection and Transmission of Plane Waves in Nonlocal Generalized Thermoelastic Solid with Diffusion
    Malik, S.
    Gupta, D.
    Kumar, K.
    Sharma, R. K.
    Jain, P.
    MECHANICS OF SOLIDS, 2023, 58 (01) : 161 - 188
  • [45] Love-type waves in thermoelastic solid with double porosity structure
    Kumar, Davinder
    Singh, Dilbag
    Tomar, Sushil Kumar
    WAVES IN RANDOM AND COMPLEX MEDIA, 2022,
  • [46] Reflection and Transmission of Plane Waves at a Water-Porous Sediment Interface with a Double-Porosity Substrate
    Lyu, Dan-Dan
    Wang, Jin-Ting
    Jin, Feng
    Zhang, Chu-Han
    TRANSPORT IN POROUS MEDIA, 2014, 103 (01) : 25 - 45
  • [47] Influence of thermal load on a rotating thermoelastic medium with diffusion and double porosity
    Sheokand, Parmender
    Choudhary, Suman
    Deswal, Sunita
    JOURNAL OF THERMAL STRESSES, 2024, 47 (03) : 295 - 320
  • [48] Effect of relaxation time on generalized double porosity thermoelastic medium with diffusion
    Othman, Mohamed I. A.
    Mansour, Nehal T.
    GEOMECHANICS AND ENGINEERING, 2023, 32 (05) : 475 - 482
  • [49] REFLECTION OF PLANE-WAVES FROM AN AMPLIFYING MEDIUM
    KOLOKOLOV, AA
    JETP LETTERS, 1975, 21 (11) : 312 - 313
  • [50] Reflection of plane waves in a microelongated thermoelastic porous medium with Hall current under modified Green-Lindsay model
    Yadav, Komal
    Sheoran, Devender
    Kalkal, Kapil Kumar
    ACTA MECHANICA, 2025, 236 (02) : 1359 - 1380