Wind power forecastingA wind power forecast corresponds to an estimate of the expected production of one or more wind turbines (referred to as a wind farm) in the near future, up to a year. Forecast are usually expressed in terms of the available power of the wind farm, occasionally in units of energy, indicating the power production potential over a time interval.
Wind directionWind direction is generally reported by the direction from which the wind originates. For example, a north or northerly wind blows from the north to the south; the exceptions are onshore winds (blowing onto the shore from the water) and offshore winds (blowing off the shore to the water). Wind direction is usually reported in cardinal (or compass) direction, or in degrees. Consequently, a wind blowing from the north has a wind direction referred to as 0° (360°); a wind blowing from the east has a wind direction referred to as 90°, etc.
Offshore wind powerOffshore wind power or offshore wind energy is the generation of electricity through wind farms in bodies of water, usually at sea. There are higher wind speeds offshore than on land, so offshore farms generate more electricity per amount of capacity installed. Offshore wind farms are also less controversial than those on land, as they have less impact on people and the landscape. Unlike the typical use of the term "offshore" in the marine industry, offshore wind power includes inshore water areas such as lakes, fjords and sheltered coastal areas as well as deeper-water areas.
Parc éolienthumb|Parc éolien de Neuenkirchen (Allemagne). thumb|Parc éolien de Tauern (Autriche). Une centrale éolienne, parc éolien, ou ferme éolienne, est un site regroupant plusieurs éoliennes produisant de l'électricité. Il se trouve dans un lieu où le vent est fort et/ou régulier. vignette|centre|Parc de Guazhou (Chine).|upright=3 La ferme éolienne de Gansu, province du Gansu, en Chine, est le plus important parc du monde avec de puissance en novembre 2010.
Vertical-axis wind turbineA vertical-axis wind turbine (VAWT) is a type of wind turbine where the main rotor shaft is set transverse to the wind while the main components are located at the base of the turbine. This arrangement allows the generator and gearbox to be located close to the ground, facilitating service and repair. VAWTs do not need to be pointed into the wind, which removes the need for wind-sensing and orientation mechanisms. Major drawbacks for the early designs (Savonius, Darrieus and giromill) included the significant torque ripple during each revolution, and the large bending moments on the blades.
Turbine hydrauliqueUne turbine hydraulique est une machine tournante qui produit une énergie mécanique à partir d'eau en mouvement (cours d'eau ou marée) ou potentiellement en mouvement (barrage). Elle constitue le composant essentiel des centrales hydroélectriques destinées à produire de l'électricité à partir d'un flux d'eau. Elle a été inventée par Benoît Fourneyron en 1832, qui installa sa première machine à Pont-sur-l'Ognon. vignette|droite|Turbine hydraulique et générateur électrique, vue en coupe.
Wind gradientIn common usage, wind gradient, more specifically wind speed gradient or wind velocity gradient, or alternatively shear wind, is the vertical component of the gradient of the mean horizontal wind speed in the lower atmosphere. It is the rate of increase of wind strength with unit increase in height above ground level. In metric units, it is often measured in units of meters per second of speed, per kilometer of height (m/s/km), which reduces to the standard unit of shear rate, inverse seconds (s−1).
Vent dominantright|thumb|400px|Carte mondiale des vents dominants à la surface terrestre. au nord du tropique du Cancer et au sud du tropique du Capricorne. Vents d'est (les alizés) sous les tropiques : dans l'hémisphère nord, dans l'hémisphère sud. vignette|redresse=1.3|Carte météorologique animée de l'Atlantique Nord. L'anticyclone des Açores (A) et la dépression d'Islande régissent les climats de l'Europe. En été, l'anticyclone étire une crête barométrique jusqu'à la Cornouaille, donnant des vents d'ouest.
Gradient de pressionLe gradient de pression est la quantité utilisée en mécanique pour représenter la variation de la pression dans un fluide. Le gradient de pression est une grandeur vectorielle normalement exprimée dans le système international d'unités en pascals par mètre (Pa/m). Les gradients de pression jouent un rôle important en aérodynamique et hydrodynamique, théories appliquées dans divers domaines scientifiques et techniques comprenant l'aéronautique, la géophysique, l'astronomie et la biophysique.
Wind speedIn meteorology, wind speed, or wind flow speed, is a fundamental atmospheric quantity caused by air moving from high to low pressure, usually due to changes in temperature. Wind speed is now commonly measured with an anemometer. Wind speed affects weather forecasting, aviation and maritime operations, construction projects, growth and metabolism rate of many plant species, and has countless other implications. Wind direction is usually almost parallel to isobars (and not perpendicular, as one might expect), due to Earth's rotation.