共查询到20条相似文献,搜索用时 15 毫秒
1.
The paper studies the propagation of torsional surface waves in an initially stressed anisotropic poro-elastic layer over a semi-infinite heterogeneous half space with linearly varying rigidity and density due to irregularity at the interface. The irregularity is taken in the half space in the form of a rectangle. It is observed that torsional surface waves propagate in this assumed medium. In the absence of the irregularity, the velocity equation of the torsional surface wave is also obtained. For a layer over a homogeneous half space, the velocity of torsional surface waves coincides with that of the Love waves. 相似文献
2.
The paper studies the propagation of Love waves in a non-homogeneous substratum over an initially stressed heterogeneous half-space. The dispersion equation of phase velocity is derived. The velocities of Love waves are calculated numerically as a function of kH and presented in a number of graphs, where k is the wave number, and H is the thickness of the layer. The case of Gibson’s half-space is also considered. It is observed that the speed of Love waves is finite in the vicinity of the surface of the half-space and vanishes as the depth increases for a particular wave number. It is also observed that an increase in compressive initial stresses causes decreases of Love waves velocity for the same frequency, and the tensile initial stress of small magnitude in the half-space causes increase of the velocity. 相似文献
3.
4.
The propagation of large amplitude nonlinear waves in a peridynamic solid is analyzed. With an elastic material model that hardens in compression, sufficiently large wave pulses propagate as solitary waves whose velocity can far exceed the linear wave speed. In spite of their large velocity and amplitude, these waves leave the material they pass through with no net change in velocity and stress. They are nondissipative and nondispersive, and they travel unchanged over large distances. An approximate solution for solitary waves is derived that reproduces the main features of these waves observed in computational simulations. It is demonstrated by numerical studies that the waves interact only weakly with each other when they collide. Wavetrains composed of many non-interacting solitary waves are found to form and propagate under certain boundary and initial conditions. 相似文献
5.
The strain solitary waves in a nonlinear elastic rod 总被引:7,自引:0,他引:7
Solitary strain waves in a nonlinear elastic rod are analysed in this paper; influence of the physical and geometrical parameters
of the rod on the waves are discussed; some main properties of the solitary waves are pointed out. 相似文献
6.
Scattering of elastic waves in an elastic matrix containing an inclusion with interfaces 总被引:1,自引:0,他引:1
Based on the theory of elastic dynamics, the scattering of elastic waves and dynamic stress concentration in fiber-reinforced
composite with interfaces are studied. Analytical expressions of elastic waves in different medium areas are presented and
an analytic method of solving this problem is established. The mode coefficients are determined by means of the continuous
conditions of displacement and stress on the boundary of the interfaces. The influence of material properties and structural
size on the dynamic stress concentration factors near the interfaces is analyzed. It indicates that they have a great influence
on the dynamic properties of fiber-reinforced composite. As examples, numerical results of dynamic stress concentration factors
near the interfaces are presented and discussed. This paper provides reliable theoretical evidence for the study of dynamic
properties in fiber-reinforced composite.
Project supported by the National Natural Science Foundation of China (No. 19972018). 相似文献
7.
Water waves in an elastic vessel 总被引:2,自引:0,他引:2
D. Y. Hsieh 《Acta Mechanica Sinica》1997,13(4):289-303
Linear and nonlinear analyses of water waves in an elastic vessel are carried out to study the dramatic phenomena of Dragon
Wash as well as related controllable experiments. It is proposed that the capillary edge waves are generated by parametric
resonance, which is shown to be a possible mechanism for both rectangular an circular vessels. For circular vessel, the normal
geometric resonance is also operating, thus greatly enhance the dramatic effect. The mechanism of nonlinear mode-mode interaction
is proposed for the generation of axisymmetric low-frequency gravity waves by the high- frequency external excitation. A simple
model system is studied numerically to demonstrate explicitly this interaction mechanism. 相似文献
8.
The problem of scattering of normal incident time harmonic plane elastic waves by a co-planar periodic array of cracks in 3-D space is investigated. The scattered waves consist of a superposition of an infinite number of wave modes [M, N]T and [M, N]L,M. N=0, 1, 2, , but only a finite number of them are propagating wave modes. The numerical calculation has been made for rectangular cracks and P wave incidence. The reflection coefficient of [O, O] order,R
0
3
, has been studied in detail for various wave numbers and parameters of the geometry for the problem. The reliability of the numerical calculation has been checked by an application of the balance of rates of energies. For an elongated rectangular crack,R
0
3
in the corresponding 2-D problem in [2] is recovered. The dynamic stress intensity factors around the crack edge have been obtained. The results as the wave number goes to zero have been compared with those in the correspoding static case. Good agreement is observed. 相似文献
9.
In the present paper, we are interested in the propagation of Rayleigh waves in an isotropic elastic half-space coated with a thin isotropic elastic layer. The contact between the layer and the half space is assumed to be smooth. The main purpose of the paper is to establish an approximate secular equation of the wave. By using the effective boundary condition method, an approximate, yet highly accurate secular equation of fourth-order in terms of the dimensionless thickness of the layer is derived. From the secular equation obtained, an approximate formula of third-order for the velocity of Rayleigh waves is established. The approximate secular equation and the formula for the velocity obtained in this paper are potentially useful in many practical applications. 相似文献
10.
W. Ellermeier 《Archive of Applied Mechanics (Ingenieur Archiv)》1996,66(7):460-478
Summary The dynamics of one-dimensional two-component shear motion in elastic-isotropic homogeneous media is studied assuming isentropic finite displacements. Wave breaking of initially continuous waves on the infinite interval is discussed for weakly nonlinear waves.The problem of a resonating finite-thickness shear layer in primary resonance for single-component motion exhibits jump discontinuities of particle velocity, shear strain and stress in a finite frequency band near primary resonance.Under certain conditions two-component motion can be reduced to a quasi-single-component motion. 相似文献
11.
Chia-Shun Yih 《Acta Mechanica Sinica》1993,9(3):193-209
A systematic procedure is proposed for obtaining solutions for solitary waves in stratified fluids. The stratification of
the fluid is assumed to be exponential or linear. Its comparison with existing results for an exponentially stratified fluid
shows agreement, and it is found that for the odd series of solutions the direction of displacement of the streamlines from
their asymptotic levels is reversed when the stratification is changed from exponential to linear. Finally the interaction
of solitary waves is considered, and the Korteweg-de Vries equation and the Boussinesq equation are derived. Thus the known
solutions of these equations can be relied upon to provide the answers to the interaction problem. 相似文献
12.
In the present work, by employing the non-linear equations of motion of an incompressible, inhomogeneous, isotropic and prestressed thin elastic tube with variable radius and the approximate equations of an inviscid fluid, which is assumed to be a model for blood, we studied the propagation of non-linear waves in such a medium, in the longwave approximation. Utilizing the reductive perturbation method we obtained the variable coefficient Korteweg–de Vries (KdV) equation as the evolution equation. By seeking a progressive wave type of solution to this evolution equation, we observed that the wave speed decreases for increasing radius and shear modulus, while it increases for decreasing inner radius and the shear modulus. 相似文献
13.
Theory of water waves in an elastic vessel 总被引:3,自引:0,他引:3
D. Y. Hsieh 《Acta Mechanica Sinica》2000,16(2):97-112
Recent experiments related to the Dragon Wash phenomena showed that axisymmetric capillary waves appear first from excitation,
and circumferential capillary waves appear after increase of the excitation strength. Based on this new finding, a theory
of parametric resonance is developed in detail to explain the on-set of the prominent circumferential capillary waves. Numerical
computation is also carried out and the results agree generally with the experiments. Analysis and numerical computation are
also presented to explain the generation of axisymmetric low-frequency gravity waves by the high-frequency external excitation. 相似文献
14.
15.
The contact interaction of an elastic punch of arbitrary cross-section and an elastic semi-space with initial (residual) stresses
is studied. A general method to solve the problem is proposed. It allows solving contact problems for bodies with initial
(residual) stresses when the solution of the corresponding elastic problem is known
__________
Translated from Prikladnaya Mekhanika, Vol. 43, No. 12, pp. 28–40, December 2007. 相似文献
16.
Professor C. V. Massalas G. Tsolakidis 《Archive of Applied Mechanics (Ingenieur Archiv)》1990,60(5):323-334
Summary In this work we study the propagation of plane magneto-electro-thermo-elastic harmonic waves in an unbounded isotropic, conducting and initially stressed medium permeated by a primary uniform magnetic field. The formulation of the problem is given in the framework of the quasi-static electromagnetic state and the generalized theory of thermoelasticity proposed by Lord and Shulman. The characteristics of the wave motion, phase velocity, attenuation coefficient and specific energy loss are obtained in an analytical form and their dependence on the magnetoelastic and thermoelastic coupling, the initial stress state and the relaxation time is discussed.
Über die magneto-elektro-thermoelastischen wellen in vorgespannten leitern
Übersicht Diese Arbeit untersucht die Ausbreitung von magneto-elektro-thermoelastischen harmonischen Wellen in einem unendlichen isotropen, leitenden und vorgespannten Medium, welches von einem gleichförmigen magnetischen Feld durchsetzt ist. Das Problem wird formuliert im Rahmen der quasistatischen elektromagnetischen Theorie und der allgemeinen Theorie der Thermoelastizität, wie sie durch Lord und Schulman vorgeschlagen wurde. Die charakteristischen Größen der Wellenbewegung wie Phasengeschwindigkeit, Dämpfungskoeffizient und spezifischer Energieverlust werden analytisch abgeleitet und die Rolle der magnetoelastischen und thermoelastisehen Kopplung, des ursprünglichen Spannungszustandes und der Relaxationszeit werden diskutiert.相似文献
17.
Hilmi Demiray 《International Journal of Non》2008,43(9):887-891
In the present work, by utilizing the non-linear equations of motion of an incompressible, isotropic thin elastic tube subjected to a variable prestretch both in the axial and the radial directions and the approximate equations of motion of an incompressible inviscid fluid, which is assumed to be a model for blood, we studied the propagation of weakly non-linear waves in such a medium, in the long wave approximation. Employing the reductive perturbation method we obtained the variable coefficient KdV equation as the evolution equation. By seeking a travelling wave solution to this evolution equation, we observed that the wave speed is variable in the axial coordinate and it decreases for increasing circumferential stretch (or radius). Such a result seems to be plausible from physical considerations. 相似文献
18.
Based on the theory of elastic dynamics, multiple scattering of elastic waves and dynamic stress concentrations in fiber-reinforced
composite are studied. The analytical expressions of elastic waves in different regions are presented. The mode coefficients
of elastic waves are determined in accordance with the continuous conditions of displacement and stress on the boundary of
the multi-interfaces. By using the addition theorem of Hankel functions, the formula of scattered wave fields in different
local coordinates are transformed into those in one local coordinate to determine the unknown coefficients and dynamic stress
concentration factors (DSCFs). The influences of the distance between two inclusions, material properties and structural size
on the DSCFs near the interfaces are analyzed. As examples, the numerical results of DSCFs near the interfaces for two kinds
of fiber-reinforced composites are presented and discussed.
The project supported by the National Natural Science Foundation of China (19972018) 相似文献
19.
In the numerical simulation of elastic wave propagation in the solid, it is essential to introduce absorbing boundary conditions to limit the large or unbounded domain of computation. In this paper, the absorbing boundaries for transversely isotropic media are composed of simple first-order partial differential operators, and each of the operators can perfectly absorb a plane wave outgoing at a certain angle. To test the absorbing ability, the reflection coefficient formulas for the quasi-P and quasi-S wave on the absorbing boundary are derived based on the potential functions theory of the elastic wave. Numerical examples show that the absorbing effect is good. The boundary conditions given here have a practical meaning.Supported by National Natural Science Foundation of China. 相似文献
20.
A boundary integral equation method is applied to the study of the interaction of plane elastic waves with a periodic array
of collinear inplane cracks. Numerical results are presented for the dynamic stress intensity factors. The effects of the
wave type, wave frequency, wave incidence angle, and crack spacing on the dynamic stress intensity factors are analyzed in
detail.
The project supported by the Committee of Science and Technology of Shanghai and Tongji University 相似文献