Surface waveIn physics, a surface wave is a mechanical wave that propagates along the interface between differing media. A common example is gravity waves along the surface of liquids, such as ocean waves. Gravity waves can also occur within liquids, at the interface between two fluids with different densities. Elastic surface waves can travel along the surface of solids, such as Rayleigh or Love waves. Electromagnetic waves can also propagate as "surface waves" in that they can be guided along with a refractive index gradient or along an interface between two media having different dielectric constants.
Skull fractureA skull fracture is a break in one or more of the eight bones that form the cranial portion of the skull, usually occurring as a result of blunt force trauma. If the force of the impact is excessive, the bone may fracture at or near the site of the impact and cause damage to the underlying structures within the skull such as the membranes, blood vessels, and brain.
Fracture (geology)A fracture is any separation in a geologic formation, such as a joint or a fault that divides the rock into two or more pieces. A fracture will sometimes form a deep fissure or crevice in the rock. Fractures are commonly caused by stress exceeding the rock strength, causing the rock to lose cohesion along its weakest plane. Fractures can provide permeability for fluid movement, such as water or hydrocarbons. Highly fractured rocks can make good aquifers or hydrocarbon reservoirs, since they may possess both significant permeability and fracture porosity.
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).
Onde sismiquethumb|Différentes ondes sismiques.|alt= Les ondes sismiques, ou ondes élastiques, sont des mouvements vibratoires qui se propagent à travers un milieu matériel et peuvent le modifier irréversiblement si leur amplitude est suffisante. Elles sont engendrées par un événement initial, généralement un séisme. L'impulsion de départ déplace les atomes du milieu, qui en poussent d'autres avant de reprendre leur place, ces déplacements oscillatoires se propageant ensuite de proche en proche.
Ondevignette|Propagation d'une onde. Une onde est la propagation d'une perturbation produisant sur son passage une variation réversible des propriétés physiques locales du milieu. Elle se déplace avec une vitesse déterminée qui dépend des caractéristiques du milieu de propagation. vignette|Une vague s'écrasant sur le rivage. Il existe trois principaux types d'ondes : les ondes mécaniques se propagent à travers une matière physique dont la substance se déforme. Les forces de restauration inversent alors la déformation.
Fracturation hydrauliqueLa fracturation hydraulique est la dislocation ciblée de formations géologiques peu perméables par le moyen de l'injection sous très haute pression d'un fluide destiné à fissurer et microfissurer la roche. Cette fracturation peut être pratiquée à proximité de la surface, ou à grande profondeur (à plus de , voire à plus de dans le cas du gaz de schiste), et à partir de puits verticaux, inclinés ou horizontaux.
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.
Mechanical waveIn physics, a mechanical wave is a wave that is an oscillation of matter, and therefore transfers energy through a medium. While waves can move over long distances, the movement of the medium of transmission—the material—is limited. Therefore, the oscillating material does not move far from its initial equilibrium position. Mechanical waves can be produced only in media which possess elasticity and inertia. There are three types of mechanical waves: transverse waves, longitudinal waves, and surface waves.
Diaclasethumb|Pierre de Lauze. En géologie, une diaclase (du grec [dia], « par » et klasis, « fracture, rupture ») est une déformation au cours de laquelle une roche se fend sans que les parties disjointes s'éloignent l'une de l'autre (ne pas confondre avec la faille). Il n'y a ni déplacement (pas de rejet), ni remplissage. Ce type de fracture est souvent orienté perpendiculairement aux limites de stratification. Une diaclase peut apparaître du fait des pressions auxquelles est soumise la roche : pression lithostatique et contraintes locales liées aux mouvements.