Énergie renouvelableLes énergies renouvelables (parfois abrégées EnR) proviennent de sources d'énergie dont le renouvellement naturel est assez rapide pour qu'elles puissent être considérées comme inépuisables à l'échelle du temps humain. Elles proviennent de phénomènes naturels cycliques ou constants induits par les astres : le Soleil essentiellement pour la chaleur et la lumière qu'il produit, mais aussi l'attraction de la Lune (marées) et la chaleur engendrée par la Terre (géothermie).
Transition énergétiqueLa transition énergétique désigne à la fois l'évolution passée de la répartition des énergies consommées sur la planète (bois, hydroélectricité, charbon, pétrole, gaz naturel, nucléaire, etc.) et, pour l'avenir, l'objectif politique et technique d'une modification structurelle profonde des modes de production et de consommation de l'énergie. C'est l'un des volets de la transition écologique.
Stockage de l'énergieLe stockage de l'énergie consiste à mettre en réserve une quantité d'énergie provenant d'une source pour une utilisation ultérieure. Il a toujours été utile et pratiqué, pour se prémunir d'une rupture d'un approvisionnement extérieur ou pour stabiliser à l'échelle quotidienne les réseaux électriques, mais il a pris une acuité supplémentaire depuis l'apparition de l'objectif de transition écologique.
100% renewable energy100% renewable energy means getting all energy from renewable resources. The endeavor to use 100% renewable energy for electricity, heating, cooling and transport is motivated by climate change, pollution and other environmental issues, as well as economic and energy security concerns. Shifting the total global primary energy supply to renewable sources requires a transition of the energy system, since most of today's energy is derived from non-renewable fossil fuels.
Energy systemAn energy system is a system primarily designed to supply energy-services to end-users. The intent behind energy systems is to minimise energy losses to a negligible level, as well as to ensure the efficient use of energy. The IPCC Fifth Assessment Report defines an energy system as "all components related to the production, conversion, delivery, and use of energy". The first two definitions allow for demand-side measures, including daylighting, retrofitted building insulation, and passive solar building design, as well as socio-economic factors, such as aspects of energy demand management and remote work, while the third does not.
Renewable energy commercializationRenewable energy commercialization involves the deployment of three generations of renewable energy technologies dating back more than 100 years. First-generation technologies, which are already mature and economically competitive, include biomass, hydroelectricity, geothermal power and heat. Second-generation technologies are market-ready and are being deployed at the present time; they include solar heating, photovoltaics, wind power, solar thermal power stations, and modern forms of bioenergy.
Ressources et consommation énergétiques mondialesLes réserves mondiales prouvées d'énergie fossile pouvaient être estimées en 2020, selon l'Agence fédérale allemande pour les sciences de la Terre et les matières premières, à , dont 55 % de charbon, 25 % de pétrole et 19 % de gaz naturel. Ces réserves assurent de production au rythme actuel ; cette durée est très variable selon le type d'énergie : pour le pétrole, pour le gaz naturel, pour le charbon. Pour l'uranium, avec les techniques actuelles, elle serait de 90 à selon les estimations, et sa durée d'utilisation pourrait se compter en siècles en ayant recours à la surgénération.
Variable renewable energyVariable renewable energy (VRE) or intermittent renewable energy sources (IRES) are renewable energy sources that are not dispatchable due to their fluctuating nature, such as wind power and solar power, as opposed to controllable renewable energy sources, such as dammed hydroelectricity or biomass, or relatively constant sources, such as geothermal power. The use of small amounts of intermittent power has little effect on grid operations. Using larger amounts of intermittent power may require upgrades or even a redesign of the grid infrastructure.
Computational complexityIn computer science, the computational complexity or simply complexity of an algorithm is the amount of resources required to run it. Particular focus is given to computation time (generally measured by the number of needed elementary operations) and memory storage requirements. The complexity of a problem is the complexity of the best algorithms that allow solving the problem. The study of the complexity of explicitly given algorithms is called analysis of algorithms, while the study of the complexity of problems is called computational complexity theory.
Open-source software developmentOpen-source software development (OSSD) is the process by which open-source software, or similar software whose source code is publicly available, is developed by an open-source software project. These are software products available with its source code under an open-source license to study, change, and improve its design. Examples of some popular open-source software products are Mozilla Firefox, Google Chromium, Android, LibreOffice and the VLC media player. In 1997, Eric S. Raymond wrote The Cathedral and the Bazaar.