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Seismic reflection and transmission coefficients of a single layer sandwiched between two dissimilar poroelastic solids 被引量:3
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作者 Manjeet Kumari Mahabir Singh Barak Manjeet Kumar 《Petroleum Science》 SCIE CAS CSCD 2017年第4期676-693,共18页
The seismic reflection and transmission characteristics of a single layer sandwiched between two dissimilar poroelastic solids saturated with two immiscible viscous fluids are investigated. The sandwiched layer is mod... The seismic reflection and transmission characteristics of a single layer sandwiched between two dissimilar poroelastic solids saturated with two immiscible viscous fluids are investigated. The sandwiched layer is modeled as a porous solid with finite thickness. The propagation of waves is represented with potential functions. The displacements of particles in different phases of the aggregate are defined in terms of these potential functions. Due to the presence of viscosity in pore fluids, the reflected and transmitted waves are inhomogeneous in nature, i.e., with different directions of propagation and attenuation. The closed-form analytical expressions for reflection and transmission coefficients are derived theoretically for appropriate boundary conditions. These expressions are calculated as a non-singular system of linear algebraic equations and depend on the various parameters involved in this non-singular system. Hence,numerical examples are studied to determine the effects of various properties of the sandwich layer on reflection and transmission coefficients. The essential features of layer thickness, incident direction, wave frequency, liquidsaturation and capillary pressure of the porous layer on reflection and transmission coefficients are depicted graphically and discussed. The analysis shows that reflection and transmission coefficients are strongly associated with incident direction and various properties of the porous layer. 展开更多
关键词 Sandwiched layer Immiscible pore fluids Inhomogeneous wave reflection and transmission coefficients
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Reflection and transmission of Laguerre Gaussian beam from uniaxial anisotropic multilayered media 被引量:2
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作者 李海英 吴振森 +2 位作者 尚庆超 白璐 李正军 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第3期330-335,共6页
Based on angular spectrum expansion and 4 × 4 matrix theory, the reflection and transmission characteristics of a Laguerre Gaussian (LG) beam from uniaxial anisotropic multilayered media are studied. The reflec... Based on angular spectrum expansion and 4 × 4 matrix theory, the reflection and transmission characteristics of a Laguerre Gaussian (LG) beam from uniaxial anisotropic multilayered media are studied. The reflected and transmitted beam fields of an LG beam are derived. In the case where the principal coordinates of the uniaxial anisotropic media coincide with the global coordinates, the reflected and transmitted beam intensities from a uniaxial anisotropic slab and three-layered media are numerically simulated. It is shown that the reflected intensity components of the incident beam, especially the TM polarized incident beam, are smaller than the transmitted intensity components. The distortion of the reflected intensity component is more evident than that of the transmitted intensity component. The distortion of intensity distribution is greatly affected by the dielectric tensor and the thickness of anisotropic media. We finally extend the application of the method to general anisotropic multilayered media. 展开更多
关键词 Laguerre Gaussian beam reflection and transmission uniaxial anisotropic multilayered media
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POWER REFLECTION AND TRANSMISSION IN BEAM STRUCTURES CONTAINING A SEMI-INFINITE CRACK 被引量:1
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作者 Li Zhou Wanchun Yuan 《Acta Mechanica Solida Sinica》 SCIE EI 2008年第2期177-188,共12页
Wave reflection and transmission in a beam containing a semi-infinite crack are studied analytically based on Timoshenko beam theory., Two kinds of crack surface conditions: non-contact (open) and fully contact (c... Wave reflection and transmission in a beam containing a semi-infinite crack are studied analytically based on Timoshenko beam theory., Two kinds of crack surface conditions: non-contact (open) and fully contact (closed) cracks, are considered respectively for an isotropic beam. The analytical solution of reflection and transmission coefficients for a semi-infinite crack is obtained. The power reflection and transmission ratios depend on both the frequency and the position of the crack. Numerical results show the conservation of power transport. The transmitted energy among various wave modes is also investigated. A finite element method is used to verify the validity of the analytical results. 展开更多
关键词 reflection and transmission CRACK power transport structural health monitoring
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Seismic reflection and transmission coeffi-cients at an air-water interface of saturated porous soil
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作者 周新民 夏唐代 +1 位作者 徐平 邹振轩 《Acta Seismologica Sinica(English Edition)》 EI CSCD 2006年第4期397-405,共9页
Based on the modified Biot's theory of two-phase porous media, a study was presented on seismic reflection and transmission coefficients at an air-water interface of saturated porous soil media. The major differences... Based on the modified Biot's theory of two-phase porous media, a study was presented on seismic reflection and transmission coefficients at an air-water interface of saturated porous soil media. The major differences between air-saturated soils and water-saturated soils were theoretically discussed, and the theoretical formulas of reflection and transmission coefficients at an air-water interface were derived. The characteristics of propagation and attenuation of elastic waves in air-saturated soils were given and the relations among the frequency, the angle of incidence and the reflection, transmission coefficients were analyzed by using numerical methods. Numerical results show that the propagation characteristic of the wave in air-saturated soils is great different from that in water-saturated soils. The frequency and the angle of incidence can have great influences on the reflection and transmission coefficients at interface. Some new cognition about the wave propagation is obtained and the study suggests that we may carefully pay attention to the influence of air on the dynamic analysis of seismic wave. 展开更多
关键词 seismic wave air-saturated soils propagation characteristics reflection and transmission
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Reflection and transmission of an Airy beam in a dielectric slab
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作者 杨小锦 屈檀 +4 位作者 吴振森 李海英 白璐 巩蕾 李正军 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第7期290-301,共12页
The reflection and transmission of a finite-power Airy beam incident on a dielectric slab are investigated by an analytical method.Based on the plane-wave angular spectrum expansion and Fresnel approximation,the analy... The reflection and transmission of a finite-power Airy beam incident on a dielectric slab are investigated by an analytical method.Based on the plane-wave angular spectrum expansion and Fresnel approximation,the analytical expressions of the reflected field,internal field as well as transmitted field in each region are obtained.Through numerical simulations,the intensity distributions of the incident beam,reflected beam,internal beam as well as transmitted beam are presented at oblique incidence.Besides,we also compare the intensity distributions of the geometrical-optics beam field,the first order beam mode field and the actual beam field,which indicates that the contribution of each order beam mode field to the actual beam field is related to the refractive index of the dielectric slab.Meanwhile,the reflection characteristics of the Airy beams in the special cases of Brewster incidence and total reflection are investigated.Finally,the effects of the optical thickness and refractive index of the dielectric slab on the peak intensity distributions and beam shifts of the reflected and transmitted beams are also discussed in detail.The analytical and numerical results will be useful to analyze the propagation dynamics of Airy beam in the dielectric slab and provide some theoretical supports to the design of optical film. 展开更多
关键词 Airy beam dielectric slab Fresnel approximation reflection and transmission
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Reflection and transmission of acoustic waves on multilayered porous media 被引量:1
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作者 QIAO Wenxiao(Department of Petroleum Exploration, University of Petroleum, Dongying 257062)WANGYaojun WU Wenqiu(Institute of Acoustics, Nanjing University. Nanjing 210008) 《Chinese Journal of Acoustics》 1993年第1期25-37,共13页
Based on the Boit theory of acoustic wave propagation in fluid-saturated porous medium we have studied in this paper the acoustic reflection and transmission on multilayered porous media, in which the adequate boundar... Based on the Boit theory of acoustic wave propagation in fluid-saturated porous medium we have studied in this paper the acoustic reflection and transmission on multilayered porous media, in which the adequate boundary conditions across the interfaces are taken into account. Numerical calculations of the reflection and transmission coefficients at different incident angles and frequencies of the fast compressional wave incident on porous media with three or four layers are presented. The results indicate that the maximum or minimum reflection and transmission coefficients appear at certain ratios of the wavelength to the thickness. The acoustic incident angle and porous medium properties are shown to affect significantly these coefficients. As an example, the measured transmission coefficients in a water-saturated fused glass bead sample are in good agreement with theoretical prediction. 展开更多
关键词 Acoustic wave Porous medium reflection and transmission.
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On the eigenvalues and eigendisplacement of the critical mode in horizontally layered media
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作者 Shaotong Wang Laiyu Lu 《Earthquake Science》 2024年第1期13-35,共23页
Wave propagation in horizontally layered media is a classical problem in seismic-wave theory.In semi-infinite space,a nondispersive Rayleigh wave mode exists,and the eigendisplacement decays exponentially with depth.I... Wave propagation in horizontally layered media is a classical problem in seismic-wave theory.In semi-infinite space,a nondispersive Rayleigh wave mode exists,and the eigendisplacement decays exponentially with depth.In a layered model with increasing layer velocity,the phase velocity of the Rayleigh wave varies between the S-wave velocity of the bottom half-space and that of the classical Rayleigh wave propagated in a supposed half-space formed by the parameters of the top layer.If the phase velocity is the same as the P-or S-wave velocity of the layer,which is called the critical mode or critical phase velocity of surface waves,the general solution of the wave equation is not a homogeneous(expressed by trigonometric functions)or inhomogeneous(expressed by exponential functions)plane wave,but one whose amplitude changes linearly with depth(expressed by a linear function).Theories based on a general solution containing only trigonometric or exponential functions do not apply to the critical mode,owing to the singularity at the critical phase velocity.In this study,based on the classical framework of generalized reflection and transmission coefficients,the propagation of surface waves in horizontally layered media was studied by introducing a solution for the linear function at the critical phase velocity.Therefore,the eigenvalues and eigenfunctions of the critical mode can be calculated by solving a singular problem.The eigendisplacement characteristics associated with the critical phase velocity were investigated for different layered models.In contrast to the normal mode,the eigendisplacement associated with the critical phase velocity exhibits different characteristics.If the phase velocity is equal to the S-wave velocity in the bottom half-space,the eigendisplacement remains constant with increasing depth. 展开更多
关键词 dispersion curve EIGENVALUE generalized reflection and transmission coefficient surface wave guide wave
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Reflection and transmission of elastic waves at an interface between two micropolar piezoelectric half-spaces
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作者 Baljeet Singh Asha Sangwan Jagdish Singh 《Journal of Ocean Engineering and Science》 SCIE 2019年第3期227-237,共11页
In the present paper,we consider a problem of reflection and transmission of plane waves at an interface between two different transversely isotropic micropolar piezoelectric half-spaces.The plane wave solution of gov... In the present paper,we consider a problem of reflection and transmission of plane waves at an interface between two different transversely isotropic micropolar piezoelectric half-spaces.The plane wave solution of governing equations for micropolar piezoelectric medium indicates the propagation of three coupled plane waves.An incident plane wave at an interface between two dissimilar half-spaces generates three reflected and three transmitted waves.The relations between amplitude ratios of reflected and transmitted waves are derived which,in general,depend on material parameters and angle of incidence.The explicit expressions for energy ratios of reflected and transmitted waves are also obtained.For relevant material parameters,the results are illustrated graphically to show the micropolar piezoelectric effects on variations of amplitude ratios and the square root of energy ratios against the angle of incidence. 展开更多
关键词 Plane waves Micropolar piezoelectricity reflection and transmission Amplitude ratios Energy ratios
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REFLECTION AND TRANSMISSION OF A PLANAR SOLITARY WAVE
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作者 Lu Qiu-qiang Taiyuan Institute of technology,Taiyuan,P.R.ChinaLiu Ying-zhong Miao Guo-ping Shanghai Jiao Tong University,Shanghai,P.R.ChinaZhu De-xiang China Ship Scientific Research Center,Wuxi,P.R.China 《Journal of Hydrodynamics》 SCIE EI CSCD 1989年第2期20-31,共12页
Reflection and transmission of a planar solitary wave by a 2-D cylinder are investigated by matched asymptotic method.Boussinesq equations are the governing equations in the outer field and described by finite differe... Reflection and transmission of a planar solitary wave by a 2-D cylinder are investigated by matched asymptotic method.Boussinesq equations are the governing equations in the outer field and described by finite difference method.In the near field the governing equation is Laplace equation which is expressed,for a square cylinder,in eigenfunctions in different regions.The outer and inner solu- tions are matched and solved by iteration.As an example,the time history of the change of forces and moment and the evolution of the transmitted and reflected waves are given. 展开更多
关键词 reflection and transmission OF A PLANAR SOLITARY WAVE BODY
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Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate
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作者 Chengmin Gao Xin Zhao +5 位作者 Jun Yao Xiao-Qing Yan Xiang-Tian Kong Yongsheng Chen Zhi-Bo Liu Jian-Guo Tian 《Photonics Research》 SCIE EI 2015年第2期1-9,共9页
Pump-probe differential reflection and transmission spectroscopy is a very effective tool to study the nonequilibrium carrier dynamics of graphene. The reported sign of differential reflection from graphene is not exp... Pump-probe differential reflection and transmission spectroscopy is a very effective tool to study the nonequilibrium carrier dynamics of graphene. The reported sign of differential reflection from graphene is not explicitly explained and not consistent. Here, we study the differential reflection and transmission signals of graphene on a dielectric substrate. The results reveal the sign of differential reflection changes with the incident direction of the probe beam with respect to the substrate. The obtained theory can be applied to predict the differential signals of other two-dimensional materials placed on various dielectric substrates. 展开更多
关键词 Sign of differential reflection and transmission in pump-probe spectroscopy of graphene on dielectric substrate Case
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孔隙率对矩形沟槽上垂直多孔屏障的波浪散射效应影响
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作者 Gour Das Rumpa Chakraborty 《哈尔滨工程大学学报(英文版)》 CSCD 2024年第1期85-100,共16页
The effect of porosity on surface wave scattering by a vertical porous barrier over a rectangular trench is studied here under the assumption of linearized theory of water waves.The fluid region is divided into four s... The effect of porosity on surface wave scattering by a vertical porous barrier over a rectangular trench is studied here under the assumption of linearized theory of water waves.The fluid region is divided into four subregions depending on the position of the barrier and the trench.Using the Havelock’s expansion of water wave potential in different regions along with suitable matching conditions at the interface of different regions,the problem is formulated in terms of three integral equations.Considering the edge conditions at the submerged end of the barrier and at the edges of the trench,these integral equations are solved using multi-term Galerkin approximation technique taking orthogonal Chebyshev’s polynomials and ultra-spherical Gegenbauer polynomial as its basis function and also simple polynomial as basis function.Using the solutions of the integral equations,the reflection coefficient,transmission coefficient,energy dissipation coefficient and horizontal wave force are determined and depicted graphically.It was observed that the rate of convergence of the Galerkin method in computing the reflection coefficient,considering special functions as basis function is more than the simple polynomial as basis function.The change of porous parameter of the barrier and variation of trench width and height significantly contribute to the change in the scattering coefficients and the hydrodynamic force.The present results are likely to play a crucial role in the analysis of surface wave propagation in oceans involving porous barrier over submarine trench. 展开更多
关键词 Water wave scattering Rectangular trench Vertical porous barriers Havelock’s inversion formula Multi-term galerkin approximation reflection and transmission coefficients Energy dissipation Hydrodynamic force
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A new numerical technique for simulating the coupled seismic and electromagnetic waves in layered porous media 被引量:12
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作者 Hengxin Ren Qinghua Huang Xiaofei Chen 《Earthquake Science》 CSCD 2010年第2期167-176,共10页
Chen's technique of computing synthetic seismograms, which decomposes every vector with a set of basis of orthogonality and completeness before applying the Luco-Apsel-Chen (LAC) generalized reflection and transmis... Chen's technique of computing synthetic seismograms, which decomposes every vector with a set of basis of orthogonality and completeness before applying the Luco-Apsel-Chen (LAC) generalized reflection and transmission coefficients method, is confirmed to be efficient in dealing with elastic waves in multi-layered media and accurate in any frequency range. In this article, we extend Chen's technique to the computation of coupled seismic and electromagnetic (EM) waves in layered porous media. Expanding the involved mechanical and electromagnetic fields by a set of scalar and vector wave-function basis, we obtain the fundamental equations which are subsequently solved by using a recently developed version of the LAC generalized reflection and transmission coefficients method. Our approach and corresponding program is validated by reciprocity tests. We also show a numerical example of a two-layer model with an explosion source. The P-to-EM conversion waves radiated from the interface may have potential application. 展开更多
关键词 synthetic seismogram porous media electrokinetic effect generalized reflection and transmission coefficients
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A Study of Properties of the Photonic Band Gap of Unmagnetized Plasma Photonic Crystal 被引量:5
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作者 刘崧 钟双英 刘三秋 《Plasma Science and Technology》 SCIE EI CAS CSCD 2009年第1期14-17,共4页
In this study, the propagation of electromagnetic waves in one-dimensional plasma photonic crystals (PPCs), namely, superlattice structures consisting alternately of a homogeneous unmagnetized plasma and dielectric ... In this study, the propagation of electromagnetic waves in one-dimensional plasma photonic crystals (PPCs), namely, superlattice structures consisting alternately of a homogeneous unmagnetized plasma and dielectric material, is simulated numerically using the finite-difference time-domain (FDTD) algorithm. A perfectly matched layer (PML) absorbing technique is used in this simulation. The reflection and transmission coefficients of electromagnetic (EM) waves through PPCs are calculated. The characteristics of the photonic band gap (PBG) are discussed in terms of plasma density, dielectric constant ratios, number of periods, and introduced layer defect. These may provide some useful information for designing plasma photonic crystal devices. 展开更多
关键词 plasma photonic crystal finite-difference time-domain method photonic band gap reflection and transmission coefficients
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Analysis of the influence of sheath positions,flight parameters and incident wave parameters on the wave propagation in plasma sheath
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作者 张启凡 韩一平 +1 位作者 董秦鲁 董畅 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第3期33-40,共8页
The plasma sheath covering hypersonic vehicles has a significant effect on the propagation of electromagnetic waves.Based on the calculation of the flow field of a conical cylindrical,this work studies the propagation... The plasma sheath covering hypersonic vehicles has a significant effect on the propagation of electromagnetic waves.Based on the calculation of the flow field of a conical cylindrical,this work studies the propagation of electromagnetic waves in plasma sheath at L-band and Ku-band,and discusses the propagation characteristics in the head,side and tail of the sheath.The dielectric properties of plasma sheath are related to flight speed and altitude.A flight condition corresponds to a unique distribution of dielectric properties.For the conical cylindrical,the results show that flight speed is generally negatively correlated with the transmissivity of the plasma sheath.The reflection characteristics of electromagnetic waves at the L-band and Kuband when obliquely incident to the plasma sheath show a downward trend.When the frequency is increased to Ku-band,the propagation characteristics of electromagnetic waves in the plasma sheath are related to the position of the sheath. 展开更多
关键词 plasma sheath reflection and transmission flow field
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Oblique Wave Scattering by An Undulating Porous Bottom in A Two-Layer Ice-Covered Fluid
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作者 Srikumar PANDA 《China Ocean Engineering》 SCIE EI CSCD 2016年第3期431-446,共16页
The present study analyzes the reflection and transmission phenomenon of water-waves in a two-layer ice-covered system. The upper layer is covered by an ice-sheet, whereas the bottom of the lower layer is undulated an... The present study analyzes the reflection and transmission phenomenon of water-waves in a two-layer ice-covered system. The upper layer is covered by an ice-sheet, whereas the bottom of the lower layer is undulated and permeable. By using regular perturbation analysis and Fourier transform technique, the problem is solved and the first order reflection and transmission coefficients are determined. It is found that these coefficients depend on the shape as well as the permeability of the undulating bottom. Therefore, from the practical viewpoint, an undulating bottom topography is considered to determine all the aforesaid coefficients. The role of various system parameters, such as porosity, angle of incidence and ice parameters, are discussed to analyze the transformation of incident water wave energy from one layer to another layer. The outcomes are demonstrated in graphical forms. 展开更多
关键词 water-wave ice cover POROSITY perturbation analysis Fourier transform reflection and transmission
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Influence of magnetic field on wave propagation at liquid-microstretch solid interface
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作者 B.SINGH 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2011年第5期595-602,共8页
The reflection and refraction of a longitudinal wave at an interface between a perfectly conducting nonviscous liquid half-space and a perfectly conducting microstretch elastic solid half-space are studied. The approp... The reflection and refraction of a longitudinal wave at an interface between a perfectly conducting nonviscous liquid half-space and a perfectly conducting microstretch elastic solid half-space are studied. The appropriate solutions to the governing equations are obtained in both the half-spaces satisfying the required boundary conditions at the interface to obtain a system of five non-homogeneous equations in the amplitude ratios of various reflected and transmitted waves. The system is solved by a Fortran program of the Gauss elimination method for a particular example of an interface between water and aluminum-epoxy composite. Numerical values of the amplitude ratios are computed for a certain range of the incidence angle both in the presence and absence of an impressed transverse magnetic field. The effects of the presence of the transverse magnetic field on the amplitude ratios of various reflected and transmitted waves are shown graphically. 展开更多
关键词 MICROSTRETCH wave propagation reflection and transmission magnetic field
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两种不同垂直穿孔屏障的孔隙率对斜波衍射的影响(英文)
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作者 Anjan Sasmal Sandip Paul Soumen De 《Journal of Marine Science and Application》 CSCD 2019年第4期417-432,共16页
The diffraction of obliquely incident wave by two unequal barriers with different porosity in infinitely deep water is investigated by using two-dimensional linearized potential theory.Reflection and transmission coef... The diffraction of obliquely incident wave by two unequal barriers with different porosity in infinitely deep water is investigated by using two-dimensional linearized potential theory.Reflection and transmission coefficients are computed numerically using appropriate Galerkin approximations for two partially immersed and two submerged barriers.The amount of energy dissipation due to the permeable barriers is derived using Green’s integral theorem.The coefficient of wave force is determined using the linear Bernoulli equation of dynamic pressure jump on the porous barriers.The numerical results of hydrodynamics quantities are illustrated graphically. 展开更多
关键词 Water wave scattering Galerkin approximation POROSITY Two unequal barriers reflection and transmission coefficients
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Scattering of water waves by thin vertical plate submerged below ice-cover surface
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作者 P.MAITI P.RAKSHIT S.BANERJEA 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2011年第5期635-644,共10页
The present paper is concerned with scattering of water waves from a vertical plate, modeled as an elastic plate, submerged in deep water covered with a thin uniform sheet of ice. The problem is formulated in terms of... The present paper is concerned with scattering of water waves from a vertical plate, modeled as an elastic plate, submerged in deep water covered with a thin uniform sheet of ice. The problem is formulated in terms of a hypersingular integral equation by a suitable application of Green's integral theorem in terms of difference of potential functicns across the barrier. This integral equation is solved by a collocation method using a finite series involving Chebyshev polynomials. Reflection and transmission coefficients are obtained numerically and presented graphically for various values of the wave number and ice-cover parameter. 展开更多
关键词 scattering problem ice-cover surface hypersingular integral equation Green's integral theorem reflection and transmission coefficients
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Interaction between surface gravity wave and submerged horizontal flexible structures
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作者 Sarat Chandra Mohapatra Trilochan Sahoo C.Guedes Soares 《Journal of Hydrodynamics》 SCIE EI CSCD 2018年第3期481-498,共18页
Interactions between surface gravity wave and submerged horizontal flexible structures are studied under the assumption of small amplitude water wave theory and structural response. The generalized dispersion relation... Interactions between surface gravity wave and submerged horizontal flexible structures are studied under the assumption of small amplitude water wave theory and structural response. The generalized dispersion relation associated with surface gravity wave interaction with submerged horizontal flexible plate is analyzed to understand the characteristics of the two propagating modes due to the presence of the free surface and submerged horizontal plate. The phase and group velocities are studied in order to analyze the effect of submerged flexible plate on gravity wave motion. The expansion formulae based on Green’s function technique and eigenfunction expansion method using Fourier transform with appropriate orthogonal mode-coupling relation associated with surface gravity wavemaker problems are derived and compared in both the cases of water of finite and infinite depths. The usefulness of the expansion formulae is demonstrated by deriving the solution for surface gravity wave interaction with submerged articulated flexible plate in water of finite depth. Several numerical results on reflection and transmission coefficients related to submerged flexible plate are presented in order to understand the effect of submerged flexible structure on surface wave motion in different cases. 展开更多
关键词 Submerged flexible structures Green’s function expansion formulae articulated submerged plate reflection and transmission coefficients
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Wave propagation analysis for a second strain gradient rod theory 被引量:4
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作者 Guang ZHU Christophe DROZ +1 位作者 Abdelmalek ZINE Mohamed ICHCHOU 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2020年第10期2563-2574,共12页
In this work,an enriched model describing the longitudinal wave propagation is established based on Mindlin’s Second Strain Gradient(SSG)theory,which can describe the heterogeneity caused by the micro-structure inter... In this work,an enriched model describing the longitudinal wave propagation is established based on Mindlin’s Second Strain Gradient(SSG)theory,which can describe the heterogeneity caused by the micro-structure interactions in the frame of continuum mechanics.The governing equation and associated boundary conditions are derived based on Hamilton’s principle,then the dispersion relation of non-classical longitudinal wave together with the extra-waves appearing exclusively in SSG theory model are investigated.The investigations are based on the modal density,energy flow,and forced response of the rod.Wave transmission and reflection through planar interfaces based on the proposed model have been calculated.Finally,the results of the enriched model are well interpreted by comparing with the classical theory results,and some useful conclusions are derived on the SSG theory based model in the wave propagation characterization. 展开更多
关键词 Dynamic behavior Energy flow Enriched rod model reflection and transmission Second strain gradient theory Wave propagation features
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