S waveNOTOC In seismology and other areas involving elastic waves, S waves, secondary waves, or shear waves (sometimes called elastic S waves) are a type of elastic wave and are one of the two main types of elastic body waves, so named because they move through the body of an object, unlike surface waves. S waves are transverse waves, meaning that the direction of particle movement of a S wave is perpendicular to the direction of wave propagation, and the main restoring force comes from shear stress.
Onde longitudinaleLongitudinal waves are waves in which the vibration of the medium is parallel to the direction the wave travels and displacement of the medium is in the same (or opposite) direction of the wave propagation. Mechanical longitudinal waves are also called compressional or compression waves, because they produce compression and rarefaction when traveling through a medium, and pressure waves, because they produce increases and decreases in pressure.
Airy wave theoryIn fluid dynamics, Airy wave theory (often referred to as linear wave theory) gives a linearised description of the propagation of gravity waves on the surface of a homogeneous fluid layer. The theory assumes that the fluid layer has a uniform mean depth, and that the fluid flow is inviscid, incompressible and irrotational. This theory was first published, in correct form, by George Biddell Airy in the 19th century.
VagueUne vague () est une déformation de la surface d'une masse d'eau le plus souvent sous l'effet du vent. À l'interface des deux fluides principaux de la Terre, le vent crée des vagues sur les océans, mers et lacs. Ces mouvements irréguliers se dispersent à la surface de l'eau et sont collectivement appelés état de la mer. D'autres phénomènes, moins fréquents, sont aussi la source de vagues. Ainsi, les séismes majeurs, éruptions volcaniques ou chutes de météorites créent également des vagues appelées tsunamis ou raz-de-marée.
Onde transversaleEn physique ondulatoire, une ou est une onde dont la perturbation du milieu se fait dans l'une des directions orthogonales à celle de sa propagation. Lorsque ces directions sont parallèles, l'onde est dite longitudinale. Les vagues à la surface de l'eau sont des ondes transversales. Une onde sur une corde est également transverse. Les ondes électromagnétiques sont des ondes transversales. thumb|305px|Propagation d'une perturbation des champ électrique E et champ magnétique B. Onde électromagnétique Les ond
Méthode des éléments finisEn analyse numérique, la méthode des éléments finis (MEF, ou FEM pour finite element method en anglais) est utilisée pour résoudre numériquement des équations aux dérivées partielles. Celles-ci peuvent par exemple représenter analytiquement le comportement dynamique de certains systèmes physiques (mécaniques, thermodynamiques, acoustiques).
Inverse scattering transformIn mathematics, the inverse scattering transform is a method for solving some non-linear partial differential equations. The method is a non-linear analogue, and in some sense generalization, of the Fourier transform, which itself is applied to solve many linear partial differential equations. The name "inverse scattering method" comes from the key idea of recovering the time evolution of a potential from the time evolution of its scattering data: inverse scattering refers to the problem of recovering a potential from its scattering matrix, as opposed to the direct scattering problem of finding the scattering matrix from the potential.
P waveA P wave (primary wave or pressure wave) is one of the two main types of elastic body waves, called seismic waves in seismology. P waves travel faster than other seismic waves and hence are the first signal from an earthquake to arrive at any affected location or at a seismograph. P waves may be transmitted through gases, liquids, or solids. The name P wave can stand for either pressure wave (as it is formed from alternating compressions and rarefactions) or primary wave (as it has high velocity and is therefore the first wave to be recorded by a seismograph).
RarefactionRarefaction is the reduction of an item's density, the opposite of compression. Like compression, which can travel in waves (sound waves, for instance), rarefaction waves also exist in nature. A common rarefaction wave is the area of low relative pressure following a shock wave (see picture). Rarefaction waves expand with time (much like sea waves spread out as they reach a beach); in most cases rarefaction waves keep the same overall profile ('shape') at all times throughout the wave's movement: it is a self-similar expansion.
Dispersion (mécanique ondulatoire)vignette|Dispersion de la lumière blanche au passage d'un dioptre. En mécanique ondulatoire, la dispersion est le phénomène affectant une onde se propageant dans un milieu dit « dispersif », c'est-à-dire dans lequel les différentes longueurs d’onde constituant l'onde ne se propagent pas à la même vitesse. On rencontre ce phénomène pour tous types d'ondes, comme la lumière, le son et les ondes mécaniques (vagues, séismes, etc.). À l'exception du vide, tous les milieux sont dispersifs à des degrés divers.