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Статті в журналах з теми "Données bâtiments"
Crépon, Étienne, and Hervé Charrue. "Le changement climatique s’impose à nous." Administration N° 282, no. 2 (July 10, 2024): 41–43. http://dx.doi.org/10.3917/admi.282.0041.
Повний текст джерелаCantin, Richard, and Cédric Bereaud. "Differentes sources d’erreurs dans le diagnostic de performance énergétique pour les bâtiments." Acta Europeana Systemica 8 (July 10, 2020): 231–40. http://dx.doi.org/10.14428/aes.v8i1.56393.
Повний текст джерелаBouet, Olivier, Majid Beqqali, Sahar Ghaderi, and Franck Chopin. "Photogrammétrie et photographies : des outils complémentaires pour la reconstitution numérique du patrimoine. L'exemple de la modélisation des toits de deux bâtiments de terre de la ville de Bam (Iran)." Revue Française de Photogrammétrie et de Télédétection, no. 196 (April 15, 2014): 31–39. http://dx.doi.org/10.52638/rfpt.2011.34.
Повний текст джерелаMauger-Vauglin, Mathilde, Stéphanie Battiston, Mathias Studer, and Emilie Bronner. "Apport des données Pléiades Neo pour la détection des dommages au bâti." Revue Française de Photogrammétrie et de Télédétection 226, no. 1 (June 27, 2024): 21–30. http://dx.doi.org/10.52638/rfpt.2024.680.
Повний текст джерелаHarris, William V. "Bois et déboisement dans la Méditerranée antique." Annales. Histoire, Sciences Sociales 66, no. 1 (March 2011): 105–40. http://dx.doi.org/10.1017/s0395264900005485.
Повний текст джерелаPeltier, Virginie, and Sandrine Fournand. "Pont-sur-Seine "Le Haut de Launoy" Phase 3 (Aube). Une palissade au Néolithique récent et son système d’entrée." Revue archéologique de Picardie 3, no. 1 (2015): 49–60. http://dx.doi.org/10.3406/pica.2015.3637.
Повний текст джерелаFlucher, Guy. "Les tissages Hauet à Boué (Aisne)." Revue d'archéologie contemporaine N° 1, no. 1 (December 1, 2021): 31–42. http://dx.doi.org/10.3917/raco.001.0031.
Повний текст джерелаDesRochers, Pierre, Vicky Huppé, Jean-Marc Leclerc, and Pierre Chevalier. "La mérule pleureuse, Serpula lacrymans : revue de la situation historique et des interventions possibles." Article de synthèse 97, no. 1 (July 13, 2017): 44–53. http://dx.doi.org/10.7202/1046726ar.
Повний текст джерелаWissenberg, Lucie. "New data for understanding summit environments: an archaeological study of the marcairies on the Rossberg massif (68) and new avenues for interdisciplinary research." Source(s) – Arts, Civilisation et Histoire de l’Europe, no. 21 (February 15, 2024): 61–76. http://dx.doi.org/10.57086/sources.870.
Повний текст джерелаLe Bris, Arnaud, Cyril Wendl, Nesrine Chehata, Anne Puissant, and Tristan Postadjian. "Fusion tardive d'images SPOT-6/7 et de données multi-temporelles Sentinel-2 pour la détection de la tâche urbaine." Revue Française de Photogrammétrie et de Télédétection, no. 217-218 (September 21, 2018): 87–97. http://dx.doi.org/10.52638/rfpt.2018.415.
Повний текст джерелаДисертації з теми "Données bâtiments"
Fernández, Lorenzo Guillermo Wenceslao. "Des données accélérométriques au comportement dynamique des bâtiments existants." Thesis, Université Côte d'Azur (ComUE), 2016. http://www.theses.fr/2016AZUR4071/document.
Повний текст джерелаThe aim of this thesis is to simulate the time history response of a high rise building under seismic excitation and provide simplified methodologies that properly reproduce such response. Firstly, a detailed three-dimensional finite element model is produced to validate its reliability to simulate the real behavior of the building during ground motions, recorded using accelerometers. It is proposed to improve the accuracy of the numerical model by imposing multiple excitations, considering rocking effect and spatial variability on the input motion. The use of empirical Green's functions is proposed to simulate the seismic response directly from past event records, without the need of construction drawings and mechanical parameters calibration. A stochastic summation scheme, already used to predict ground motions, is adopted to generate synthetic signals at different heights of the building, extending the wave propagation path from the ground to the structure. A simplified representation of the building as a homogeneous Timoshenko beam is proposed to simulate the seismic response directly from ambient vibration records. Equivalent mechanical parameters are identified using deconvolution interferometry in terms of wave dispersion, natural frequencies and shear to compressional wave
Monceyron, Jean-Luc. "Intégration des données et conception des bâtiments : cas de l'acoustique." Lyon, INSA, 1996. http://www.theses.fr/1996ISAL0119.
Повний текст джерелаA system analysis of the building design process leads to the identification of some islands of information: software currently in use during the design process are unable to exchange product data describing a building project, primarily because of the partitioning of knowledge characterizing the meaning to the involved information. In order to come out of this isolation, multi-sector research works dedicated to product model data representation, exchange or sharing, have contributed to the implementation of the ISO 10303 STEP standard. Our research works lie in implementing these developments for the building design field, with an emphasis on the data exchange between an architect (in runtime via its CAD system) and an acoustician (via a knowledge-based system dedicated to the compliance checking of the last French acoustics regulation). To meet this goal, the acoustician's viewpoint on the project was interpreted into a data model, and we re-used an integration framework defined into the ESPRIT project 7280 ATLAS, based on the STEP standard. Furthermore, the exchange with the architect's view model required the specification of data mapping. It was achieved thanks to a rule-based approach. This investigation, combined with the study of several modelling experiments in the building industry field, have been brought into general for the integration of a design field in a wider framework for computer aided building design. The proposed method describes the activities required for the development of a view model and is based on a three-layer architecture: resources, domain and field, the latter reflecting the concept of an actor view
Escudero, Alain. "Etude du comportement thermique des bâtiments." Lyon, INSA, 1989. http://www.theses.fr/1989ISAL0011.
Повний текст джерелаMezian, Miloud. "Recalage conjoint de données de cartographie mobile et de modèles 3D de bâtiments." Thesis, Paris Est, 2019. http://www.theses.fr/2019PESC2065.
Повний текст джерелаFor many years, mobile land scanning vehicles have been developed to simultaneously acquire highly accurate laser data and high-resolution georeferenced images. A major application of these data is to exploit their very high level of detail (LOD) to enrich the 3D geographic databases built from aerial images and therefore much lower LOD. The 3Dgeographic databases and mobile terrestrial data prove to be very complementary: roofs are seen from the air but not on land, and facades are very poorly seen from the air but very precisely on land. Geographic databases consist of a set of geometric primitives (3D triangles) of coarse LOD, but present the advantage of being available over large geographical areas. Mobile mapping vehicles offer much more partial coverage but guarantee very fine LOD data. These vehicles also have limitations: in urban environments, the GPS signal needed for good data georeferencing is liable to being disrupted by multi-paths or even stopped during GPS masking phenomena linked to narrow streets or high buildings. The GPS sensor no longer picks up enough satellites to accurately determine its spatial position. These complementary data each have their own geo-referencing and geolocation uncertainties of drift, ranging from a few centimetres to several metres. This means that different datasets in the same area do not coincide. That is why a realignment is essential to bring this highly detailed mobile data into line with the less detailed geographical databases.In this thesis, we have finely modelled all the sources of uncertainty involved in boththe process of building the lidar point cloud and the geographic database to jointly (simultaneously) re-align the data between them. This work around uncertainties makes it possible to model them, then to exploit them in the realignment process, and finally to to propagate them on the final product, by means of a Gauss-Helmert model. The process is based on an Point to plane ICP (Iterative Closest Point) method. This realignment simultaneously corrects the (path) trajectory of the mobile mapping vehicle and the 3D geometric model. Our processing chain has been tested on simulated data from various missions carried out by the National Institute of Geographical and Forest Information (Institut National de l’Information Géographique et Forestière, IGN)
Alileche, Lyes. "Use of BIM for the optimal management of existing buildings." Thesis, Lille 1, 2018. http://www.theses.fr/2018LIL1I058/document.
Повний текст джерелаThis research concerns the use of the Building Information Modeling (BIM) for the optimal management of existing buildings, in particular social housing buildings. These buildings are characterized by aging, poor energy performances and tenant’s low-income. The building managers suffer from lack of data concerning the buildings asset which could lead to poor operating decisions.The thesis discusses how the BIM could help to meet existing buildings challenges by the creation of a friendly comprehensive system including information about the building and equipment as well as the maintenance. The benefits of the BIM model are illustrated through two case studies, which concern a social housing residence and a research building respectively.This thesis is composed of four parts. The first part includes a literature review concerning the current methods of facility management, and the role of BIM in improving this management.The second part describes steps carried out to realize the BIM model of an existing social housing residence which includes 50 dwells.The third part describes the use of BIM to optimize facilities management and building maintenance. The last part describes the development of a dynamic BIM model using the as built BIM and real time data collected with sensors to inform users and managers about energy consumption and abnormal events
Gholipour, Vida. "Éco-conception collaborative de bâtiments durables." Thesis, Vandoeuvre-les-Nancy, INPL, 2011. http://www.theses.fr/2011INPL043N/document.
Повний текст джерелаAssisting designers in improvement of environmental quality of their project, early in the sketch phase, could result in a better environmental profile of the final product. Designers are facing new necessities related to sustainable development, such as considering sources of energy and usage of local materials, among others. To find a compromise between the project’s context and architectural solutions, one has to carry out complex adjustment tasks to address this issue.To help designers with these tasks, we proposed a method founded on the usage of environment-oriented “design patterns”, which we have named “eco-models”. By being used in their projects, these eco-models are approved by many designers as plausible solutions. The eco-models and the actual projects in which they have been used are gathered and implemented in a (web-based) digital tool, named “eco.mod.”The interface of eco.mod enable designers to navigate in the database, and select appropriate eco-models to create an environmental scenario for their own architectural project. The eco.mod tool allows users to visualize the environmental consequences of theirs choices. Two experiments assisted by this tool have been conducted, and have mainly confirmed our hypothesis about efficacy of this proposed method and its associated tool
Nguyen, Alexandre Huu Tam. "Modélisation du parc de bâtiments du secteur tertiaire et simulation énergétique." Thesis, Université Paris sciences et lettres, 2021. http://www.theses.fr/2021UPSLM005.
Повний текст джерелаEnergy efficiency and decarbonation of energy use in the building sector is a strategic issue of the ecological transition in France. In 2019, the French building stock accounts for 45% of the final energy consumption, with the tertiary sector alone accounting for about one third of this or 17% of national consumption. The energy consumption of the tertiary stock and its determining factors are poorly documented. Existing tertiary stock models are mostly based on an aggregated representation of the total heated surface of the building stock subdivided by its economic activity and heating energy fuel. This aggregation makes it impossible to represent the extreme heterogeneity of the sector. This work aims at reconciling different accessible databases to establish a tertiary building stock model, its consumption and its load curve. The developed method allows to represent the building stock as a collection of buildings, in which each of them is characterized individually in terms of area, constructive and thermal characteristics, occupants, main activity sector and equipment. This method allows to take account of the link between building, system and occupancy, which contributes to the heterogeneity of the tertiary sector. The methodology is designed to be applicable to any territory in metropolitan France. The results of surface area modelling and energy consumption simulation could thus be compared with existing references for the Île-de-France region. Two applications of the method are presented: the study of the energy saving potential of the tertiary sector in the Île-de-France region, and the study of photovoltaic self-consumption in the tertiary sector for the agglomeration of Orleans
JAMET, Olivier. "Comparaison Vecteurs-Images pour la détection des changements des bâtiments d'une base de données topographiques." Phd thesis, Télécom ParisTech, 1998. http://tel.archives-ouvertes.fr/tel-00005662.
Повний текст джерелаJamet, Olivier. "Comparaison vecteurs-images pour la détection des changements des bâtiments d'une base de données topographiques." Paris, ENST, 1998. https://pastel.archives-ouvertes.fr/tel-00005662.
Повний текст джерелаAmadou, Kountché Djibrilla. "Localisation dans les bâtiments des personnes handicapées et classification automatique de données par fourmis artificielles." Thesis, Tours, 2013. http://www.theses.fr/2013TOUR4021/document.
Повний текст джерелаThe concept of « smart » invades more and more our daily life. A typical example is the smartphone, which becames by years an essential device. Soon, it’s the city, the car and the home which will become « smart ». The intelligence is manifested by the ability for the environment to interact and to take decisons in its relationships with users and other environments. This needs information on state changes occurred on both sides. Sensor networks allow to collect these data, to apply on them some pre-processings and to transmit them. Sensor network, towards some of their caracteristics are closed to Swarm Intelligence in the sense that small entities with reduced capababilities can cooperate automatically, in unattended, decentralised and distributed manner in order to accomplish complex tasks. These bio-inspired methods have served as basis for the resolution of many problems, mostly optimization and this insipired us to apply them on problems met in Ambient Assisted Living and on the data clustering problem. AAL is a sub-field of context-aware services, and its goals are to facilitate the everyday life of elderly and disable people. These systems determine the context and then propose different kind of services. We have used two important elements of the context : the position and the disabilty. Although positioning has very good precision outdoor, it faces many challenges in indoor environments due to the electromagnetic wave propagation in harsh conditions, the cost of systems, interoperabilty, etc. Our works have been involved in positioning disabled people in indoor environment by using wireless sensor network for determining the caracteristics of the electromagnetic wave (signal strenght, time, angle) for estimating the position by geometric methods (triangulation, lateration), fingerprinting methods (k-nearest neighbours), baysiens filters (Kalman filter). The application is to offer AAL services like navigation. Therefore we extend the definition of sensor node to take into account any device, in the environment, capable of emiting and receiving a signal. Also, we have studied the possibility of using Pachycondylla Apicalis for data clustering and for indoor localization by casting this last problem as data clustering problem. Finally we have proposed a system based on a middleware architecture
Книги з теми "Données bâtiments"
McCuen, Tamera L. Building information modeling for airports. Washington, D.C: Transportation Research Board, 2016.
Знайти повний текст джерелаChina) International Conference on Construction and Real Estate Management (2017 Guangzhou. ICCREM 2017: Industry regulation and sustainable development : proceedings of the International Conference on Construction and Real Estate Management 2017, November 10-12 2017, Guangzhou, China. Edited by Wang Yaowu editor, Pang Yongshi editor, Shen Qiping editor, Zhu, Yimin (College teacher), editor, Zhongguo jian zhu ye xie hui. Guan li xian dai hua zhuan ye wei yuan hui, Construction Institute, and American Society of Civil Engineers. Reston, Virginia: American Society of Civil Engineers, 2017.
Знайти повний текст джерелаAmerican Society of Civil Engineers. Technical Council on Computing and Information Technology, ed. Building information modeling: Applications and practices. Reston, Virginia: American Society of Civil Engineers, 2015.
Знайти повний текст джерелаChina) International Conference on Construction and Real Estate Management (2017 Guangzhou. ICCREM 2017: Real estate and urbanization : proceedings of the International Conference on Construction and Real Estate Management 2017, November 10-12 2017, Guangzhou, China. Edited by Wang Yaowu editor, Pang Yongshi editor, Shen Qiping editor, Zhu, Yimin (College teacher), editor, Zhongguo jian zhu ye xie hui. Guan li xian dai hua zhuan ye wei yuan hui, Construction Institute, and American Society of Civil Engineers. Reston, Virginia: American Society of Civil Engineers, 2017.
Знайти повний текст джерелаChina) International Conference on Construction and Real Estate Management (2017 Guangzhou. ICCREM 2017: Prefabricated buildings, industrialized construction, and public-private partnerships : proceedings of the International Conference on Construction and Real Estate Management 2017, November 10-12 2017, Guangzhou, China. Edited by Wang Yaowu editor, Pang Yongshi editor, Shen Qiping editor, Zhu, Yimin (College teacher), editor, Zhongguo jian zhu ye xie hui. Guan li xian dai hua zhuan ye wei yuan hui, Construction Institute, and American Society of Civil Engineers. Reston, Virginia: American Society of Civil Engineers, 2017.
Знайти повний текст джерелаChina) International Conference on Construction and Real Estate Management (2017 Guangzhou. ICCREM 2017: Project management and construction technology : proceedings of the International Conference on Construction and Real Estate Management 2017, November 10-12 2017, Guangzhou, China. Edited by Wang Yaowu editor, Pang Yongshi editor, Shen Qiping editor, Zhu, Yimin (College teacher), editor, Zhongguo jian zhu ye xie hui. Guan li xian dai hua zhuan ye wei yuan hui, Construction Institute, and American Society of Civil Engineers. Reston, Virginia: American Society of Civil Engineers, 2017.
Знайти повний текст джерелаS.C.) International Conference on Construction and Real Estate Management (2018 Charleston. ICCREM 2018: Innovative technology and intelligent construction : proceedings of the International Conference on Construction and Real Estate Management 2018, August 9-10, 2018, Charleston, South Carolina. Edited by Wang Yaowu editor, Zhu, Yimin (Construction management professor), editor, Shen Qiping editor, Al-Hussein Mohamed editor, Zhongguo jian zhu ye xie hui. Guan li xian dai hua zhuan ye wei yuan hui, Construction Institute, and American Society of Civil Engineers. Reston, Virginia: American Society of Civil Engineers, 2018.
Знайти повний текст джерелаDavies, Nigel (Nigel J.), author, ed. BIM in principle and in practice. London: ICE Publishing, 2015.
Знайти повний текст джерелаBuilding Information Modeling. Routledge, 2014.
Знайти повний текст джерелаKensek, Karen M. Building Information Modeling. Taylor & Francis Group, 2014.
Знайти повний текст джерелаЧастини книг з теми "Données bâtiments"
VOLK, Rebekka. "Modéliser le bâti immobilier existant : planification et gestion de la déconstruction." In Le BIM, nouvel art de construire, 157–79. ISTE Group, 2023. http://dx.doi.org/10.51926/iste.9110.ch7.
Повний текст джерелаGARZELLI, Andrea, and Claudia ZOPPETTI. "Analyse multitemporelle d’images Sentinel-1/2 pour le suivi de l’utilisation des sols." In Détection de changements et analyse des séries temporelles d’images 1, 221–45. ISTE Group, 2022. http://dx.doi.org/10.51926/iste.9056.ch8.
Повний текст джерелаBerrio, Laura. "Apport de l’analyse spatiale des données carpologiques à l’appréhension des espaces fonctionnels des bâtiments rubanés à Marainville-sur-Madon « sous le Chemin de Naviot » (Vosges)." In Appréhension et qualification des espaces au sein du site archéologique, 69–86. Éditions de la Sorbonne, 2016. http://dx.doi.org/10.4000/books.psorbonne.4654.
Повний текст джерелаMartinet, Marie-Madeleine. "Outils hypermédia et temps multidimensionnel du patrimoine." In Patrimoine et Humanités numériques, 89–102. Editions des archives contemporaines, 2020. http://dx.doi.org/10.17184/eac.3594.
Повний текст джерелаТези доповідей конференцій з теми "Données bâtiments"
Dubois, Marc. "Le Corbusier et la Belgique / Son Héritage." In LC2015 - Le Corbusier, 50 years later. Valencia: Universitat Politècnica València, 2015. http://dx.doi.org/10.4995/lc2015.2015.896.
Повний текст джерелаDufau, J., H. Galley, and J. C. Mangin. "Intégration d'un modèle d'évaluation technique et économique de gros-cuvre de bâtiment dans un système de CAO utilisant un système de gestion de base de données réseau." In Colloque CAO et Robotique en Architecture et BTP (3rd International Symposium on Automation and Robotics in Construction). Paris: Hermes, 1986. http://dx.doi.org/10.22260/isarc1986/0019.
Повний текст джерелаArrouf, Abdelmalek, and Berkane Nadia. "LE CORBUSIER ET LA MAIN OUVERTE À CHANDIGARH. La genèse d’une œuvre." In LC2015 - Le Corbusier, 50 years later. Valencia: Universitat Politècnica València, 2015. http://dx.doi.org/10.4995/lc2015.2015.1006.
Повний текст джерелаЗвіти організацій з теми "Données bâtiments"
Trépanier, Martin, Ingrid Peignier, and Amaury Philippe. Installations de manutention des hydrocarbures (IMH) le long du Saint-Laurent : portrait des réglementations applicables, documentation des installations et identification des sources de risque. CIRANO, July 2024. http://dx.doi.org/10.54932/ijwc4957.
Повний текст джерелаGuidati, Gianfranco, and Domenico Giardini. Synthèse conjointe «Géothermie» du PNR «Energie». Swiss National Science Foundation (SNSF), February 2020. http://dx.doi.org/10.46446/publication_pnr70_pnr71.2020.4.fr.
Повний текст джерела