Seismic retrofitSeismic retrofitting is the modification of existing structures to make them more resistant to seismic activity, ground motion, or soil failure due to earthquakes. With better understanding of seismic demand on structures and with our recent experiences with large earthquakes near urban centers, the need of seismic retrofitting is well acknowledged. Prior to the introduction of modern seismic codes in the late 1960s for developed countries (US, Japan etc.) and late 1970s for many other parts of the world (Turkey, China etc.
Construction parasismiquethumb| La Tokyo Skytree, la deuxième plus grande tour au monde (derrière le Burj Khalifa) qui, du haut de ses , a parfaitement résisté au séisme de 2011 de magnitude 9, démontrant l'efficacité des constructions parasismiques japonaises. La construction parasismique ou construction antisismique est la réalisation de bâtiments et infrastructures résistant aux séismes. Elle implique l'étude du comportement des bâtiments et structures sujets à un chargement dynamique de type sismique.
Aléa sismiquevignette|Ceinture de feu du Pacifique L'aléa sismique est la probabilité qu'un séisme destructeur de caractéristiques données (exprimées en général par des paramètres tels que l’accélération, la période de récurrence, l’intensité, le spectre de réponse...) se produise dans une région donnée pendant une période donnée. Il ne doit pas être confondu avec le risque sismique qui est la probabilité qu'un séisme engendre des destructions et fasse des victimes. Ce risque est une combinaison de .
Séismevignette|upright=1.5|Carte de la répartition mondiale des séismes en 2010, montrant leur distribution essentiellement le long des frontières des grandes plaques tectoniques (dorsales dans les océans, ceinture de feu du Pacifique et ceinture alpine sur les continents). Un séisme ou tremblement de terre est une secousse du sol résultant de la libération brusque d'énergie accumulée par les contraintes exercées sur les roches. Cette libération d'énergie se fait par rupture le long d'une faille, généralement préexistante.
Seismic loadingSeismic loading is one of the basic concepts of earthquake engineering which means application of an earthquake-generated agitation to a structure. It happens at contact surfaces of a structure either with the ground, or with adjacent structures, or with gravity waves from tsunami. Seismic loading depends, primarily, on: Anticipated earthquake's parameters at the site - known as seismic hazard Geotechnical parameters of the site Structure's parameters Characteristics of the anticipated gravity waves from tsunami (if applicable).
Seismic vibration controlIn earthquake engineering, vibration control is a set of technical means aimed to mitigate seismic impacts in building and non-building structures. All seismic vibration control devices may be classified as passive, active or hybrid where: passive control devices have no feedback capability between them, structural elements and the ground; active control devices incorporate real-time recording instrumentation on the ground integrated with earthquake input processing equipment and actuators within the structure; hybrid control devices have combined features of active and passive control systems.
Earthquake-resistant structuresEarthquake-resistant or aseismic structures are designed to protect buildings to some or greater extent from earthquakes. While no structure can be entirely impervious to earthquake damage, the goal of earthquake engineering is to erect structures that fare better during seismic activity than their conventional counterparts. According to building codes, earthquake-resistant structures are intended to withstand the largest earthquake of a certain probability that is likely to occur at their location.
Seismic intensity scalesSeismic intensity scales categorize the intensity or severity of ground shaking (quaking) at a given location, such as resulting from an earthquake. They are distinguished from seismic magnitude scales, which measure the magnitude or overall strength of an earthquake, which may, or perhaps may not, cause perceptible shaking. Intensity scales are based on the observed effects of the shaking, such as the degree to which people or animals were alarmed, and the extent and severity of damage to different kinds of structures or natural features.
Seismic analysisSeismic analysis is a subset of structural analysis and is the calculation of the response of a building (or nonbuilding) structure to earthquakes. It is part of the process of structural design, earthquake engineering or structural assessment and retrofit (see structural engineering) in regions where earthquakes are prevalent. As seen in the figure, a building has the potential to 'wave' back and forth during an earthquake (or even a severe wind storm). This is called the 'fundamental mode', and is the lowest frequency of building response.
Connexion (mathématiques)En géométrie différentielle, la connexion est un outil pour réaliser le transport parallèle. Il existe plusieurs présentations qui dépendent de l'utilisation faite. Cette notion a été développée au début des années 1920 par Élie Cartan et Hermann Weyl (avec comme cas particulier celle de connexion affine), puis reformulée en 1951 par Charles Ehresmann et Jean-Louis Koszul. Connexion de Koszul La connexion de Koszul est un opérateur sur des espaces de sections.