Structural engineerStructural engineers analyze, design, plan, and research structural components and structural systems to achieve design goals and ensure the safety and comfort of users or occupants. Their work takes account mainly of safety, technical, economic, and environmental concerns, but they may also consider aesthetic and social factors. Structural engineering is usually considered a specialty discipline within civil engineering, but it can also be studied in its own right.
Structural loadA structural load or structural action is a force, deformation, or acceleration applied to structural elements. A load causes stress, deformation, and displacement in a structure. Structural analysis, a discipline in engineering, analyzes the effects of loads on structures and structural elements. Excess load may cause structural failure, so this should be considered and controlled during the design of a structure. Particular mechanical structures—such as aircraft, satellites, rockets, space stations, ships, and submarines—are subject to their own particular structural loads and actions.
Pan de boisLe pan de bois est un ouvrage de charpenterie composé de sablières hautes et basses, de poteaux de décharges et de tournisses formant un mur de bois. Les pans de bois intégraient des colombages, colombes et colombelles, dans la maison à colombages. L’exactitude lexicale et, surtout, historique, amène à préciser que l’appellation actuelle « maison à colombages » se disait autrefois à pan de bois. Le pan de bois peut être apparent ou caché par un bardage, un clayonnage.
Earthquake warning systemAn earthquake warning system or earthquake early warning system is a system of accelerometers, seismometers, communication, computers, and alarms that is devised for notifying adjoining regions of a substantial earthquake while it is in progress. This is not the same as earthquake prediction, which is currently incapable of producing decisive event warnings. An earthquake is caused by the release of stored elastic strain energy during rapid sliding along a fault.
Bâtiment (construction)Un bâtiment au sens commun est une construction immobilière, réalisée par intervention humaine, destinée d'une part à servir d'abri, c'est-à-dire à protéger des intempéries des personnes, des biens et des activités, d'autre part à manifester leur permanence comme fonction sociale, politique ou culturelle. Un bâtiment est un ouvrage d'un seul tenant composé de corps de bâtiments couvrant des espaces habitables lorsqu'il est d'une taille importante.
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.
Parkfield earthquakeParkfield earthquake is a name given to various large earthquakes that occurred in the vicinity of the town of Parkfield, California, United States. The San Andreas fault runs through this town, and six successive magnitude 6 earthquakes occurred on the fault at unusually regular intervals, between 12 and 32 years apart (with an average of every 22 years), between 1857 and 1966. The most recent significant earthquake to occur here happened on September 28, 2004.
Structural steelStructural steel is a category of steel used for making construction materials in a variety of shapes. Many structural steel shapes take the form of an elongated beam having a of a specific cross section. Structural steel shapes, sizes, chemical composition, mechanical properties such as strengths, storage practices, etc., are regulated by standards in most industrialized countries. Most structural steel shapes, such as -beams, have high second moments of area, which means they are very stiff in respect to their cross-sectional area and thus can support a high load without excessive sagging.
Ossature en acierlien=//upload.wikimedia.org/wikipedia/commons/thumb/2/2e/Lloyds_Axe_and_Willis.jpg/170px-Lloyds_Axe_and_Willis.jpg|vignette|200px|Ossature en acier rectangulaire, ou «charpente périmétrique» du bâtiment Willis (à droite) contrastain avec la charpente du 30 St Mary Axe, à Londres. L'ossature en acier est une technique de construction avec une ossature de colonnes verticales en acier et de horizontales, construites selon une grille rectangulaire pour supporter les planchers, le toit et les murs d'un bâtiment qui sont tous attachés à l'ossature.
Gros œuvreLe gros œuvre est l'ensemble des éléments de construction d'un édifice qui lui assure la reprise de tous les efforts subis, soit en permanence (le poids propre de l'édifice), soit temporairement, de manière variable (vent, neige, séisme, tassement du sol) ou même, éventuellement, accidentelle (chocs, incendie). Le gros œuvre rassemble tout ce qui concourt à la solidité, à la stabilité de l'édifice : fondations, murs porteurs, poteaux, poutres, planchers entre les étages, etc.