28 documents satisfont la requête. Vérifiez les termes recherchés ou relancez la recherche sur le texte intégral
Urban growth and natural hazards, in particular in mountainous areas of developing countries ; Croissance urbaine et risques naturels dans les montagnes des pays en développement
Auteur(s) : Thouret, Jean-Claude D'Ercole, Robert
Auteurs secondaires : Université Blaise Pascal - Clermont-Ferrand 2 (UBP) Université des Antilles et de la Guyane (UAG) Association des Géographes Français Association de la Revue de Géographie Alpine (ARGA, Grenoble I) Observatoire de Physique du Globe de Clermont-Ferrand (OPGC) Université Blaise Pascal (Clermont II) Université des Antilles et de la Guyane CERAMAC (Centre d'Etudes et de Recherches Appliquées au Massif Central, à la moyenne montagne et aux espaces fragiles)
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Diagnostic Study for the DIPECHO Action Plan for Central America and the Caribbean ; Diagnóstico previo al Plan de Acción para América Central y El Caribe ; Diagnostic préalable aux plans d'action DIPECHO en Amérique Centrale et dans les Caraïbes
Auteur(s) : D'Ercole, Robert Lesales, Thierry Pigeon, Patrick Misson, Claudine Napias, Jean-Claude Giri, Jacques Orlyk, Sylvie
Auteurs secondaires : Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry]) Université des Antilles et de la Guyane (UAG) Centre de Recherche sur l’Épidémiologie des Désastres - CRED CIFEG ECHO CIFEG (Centre International pour la Formation et les Echanges Géologiques) Programme ECHO de prévention d'atténuation et de préparation aux catastrophes
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The morphostructural and paleoseismologycal analysis of the NW and SE segments of Pambak-Sevan-Syunik fault (PSS), Armenia ; Analyse cinématique et paléosismologique des terminaisons NW et SE de la faille Pampak-Sevan-Syunik (PSS), Arménie
Auteur(s) : Mkrtchyan, Mushegh
Auteurs secondaires : Géosciences Montpellier ; Université des Antilles et de la Guyane (UAG) - Institut national des sciences de l'Univers (INSU - CNRS) - Université de Montpellier (UM) - Centre National de la Recherche Scientifique (CNRS) Université Montpellier Jean-François Ritz Ara Avagyan
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Improvement of the knowledge in seismic hazard in the French Lesser Antilles: analysis of regional seismological and accelerometric data. ; Contribution à la connaissance de l'aléa sismique dans les Antilles françaises: analyses des données sismologiques et accélérométriques régionales.
Auteur(s) : Bengoubou-Valerius, Mendy,
Auteurs secondaires : Institut de Physique du Globe de Paris (IPGP) ; Université Pierre et Marie Curie - Paris 6 (UPMC) - Institut national des sciences de l'Univers (INSU - CNRS) - IPG PARIS - Université Paris Diderot - Paris 7 (UPD7) - Université de la Réunion (UR) - Centre National de la Recherche Scientifique (CNRS) Université des Antilles et de la Guyane (UAG) Bureau de Recherches Géologiques et Minières (BRGM) (BRGM) Université des Antilles-Guyane Auran Randrianasolo(arandria@univ-ag.fr)
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Urban growth and natural hazards (especially in developing countries) ; Croissance urbaine et risques naturels (en particulier dans les pays en développement)
Auteur(s) : D'Ercole, Robert Thouret, Jean-Claude
Auteurs secondaires : Université des Antilles et de la Guyane (UAG) Université Blaise Pascal - Clermont-Ferrand 2 (UBP) Association des Géographes Français Association de la Revue de Géographie Alpine (ARGA, Grenoble I) Observatoire de Physique du Globe de Clermont-Ferrand (OPGC) Université Blaise Pascal (Clermont II) CERAMAC (Centre d'Etudes et de Recherches Appliquées au Massif Central, à la moyenne montagne et aux espaces fragiles) CIFEG
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Mémoire de mer, océan de papiers : naufrage, risque et fait maritime à la Guadeloupe (Petites Antilles) fin XVIIe - mi XIXe siècles ; Sea memory archives ocean : shipwreck, risk and maritime events in Guadeloupe(french west indies) from the end of 17th to the mid 19th century
Auteur(s) : Guibert, Jean-Sébastien
Auteurs secondaires : Antilles-Guyane Bégot, Danielle
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Deformation at the transition between subduction and collision east of Taiwan: seismological approach ; Déformation à la transition entre subduction et collision à l'est de Taïwan: approche sismologique
Auteur(s) : Theunissen, Thomas
Auteurs secondaires : Géosciences Montpellier ; Université des Antilles et de la Guyane (UAG) - Institut national des sciences de l'Univers (INSU - CNRS) - Université de Montpellier (UM) - Centre National de la Recherche Scientifique (CNRS) Université Montpellier II - Sciences et Techniques du Languedoc Serge Lallemand(serge.lallemand@gm.univ-montp2.fr) ANR ACTS
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180degre). Synthetic tests show the effectiveness of MAXI (using P-wave only) to determine the parameters x, y and z even when the azimuthal gap is important. In the latter case, the quality of the results is dependent on the velocity model to represent the 3D structure of the Earth. We propose an approach involving the use of a 3D a priori P-wave velocity model to locate earthquakes which are lateral and remote to the seismic network. An application to the case of Taiwan and Ecuador validates this approach. Finally, at the level of a few months, the marine geophysical campaign RATS (Ryukyu Arc: Tectonics and Seismology) was conducted in two stages. A passive seismology experiment from July to October, 2008 (RATS1) has been conducted over the forearc of the Ryukyus and then active seismic experiment (refraction and reflection) was conducted in May 2009 in a NNE - SSW line through the Ryukyu margin. These two combined experiments allow improving our knowledge about the crustal structure of the margin. At the level of the forearc, the basement of the forearc is characterized by vertical backstop and a very deformed basis certainly associated with a significant out of sequence deformation. In depth, the downgoing plate is certainly affected by a tear that controls the seismicity in the region of transition between the subduction and collision."> 180degre). Synthetic tests show the effectiveness of MAXI (using P-wave only) to determine the parameters x, y and z even when the azimuthal gap is important. In the latter case, the quality of the results is dependent on the velocity model to represent the 3D structure of the Earth. We propose an approach involving the use of a 3D a priori P-wave velocity model to locate earthquakes which are lateral and remote to the seismic network. An application to the case of Taiwan and Ecuador validates this approach. Finally, at the level of a few months, the marine geophysical campaign RATS (Ryukyu Arc: Tectonics and Seismology) was conducted in two stages. A passive seismology experiment from July to October, 2008 (RATS1) has been conducted over the forearc of the Ryukyus and then active seismic experiment (refraction and reflection) was conducted in May 2009 in a NNE - SSW line through the Ryukyu margin. These two combined experiments allow improving our knowledge about the crustal structure of the margin. At the level of the forearc, the basement of the forearc is characterized by vertical backstop and a very deformed basis certainly associated with a significant out of sequence deformation. In depth, the downgoing plate is certainly affected by a tear that controls the seismicity in the region of transition between the subduction and collision."> 180degre). Synthetic tests show the effectiveness of MAXI (using P-wave only) to determine the parameters x, y and z even when the azimuthal gap is important. In the latter case, the quality of the results is dependent on the velocity model to represent the 3D structure of the Earth. We propose an approach involving the use of a 3D a priori P-wave velocity model to locate earthquakes which are lateral and remote to the seismic network. An application to the case of Taiwan and Ecuador validates this approach. Finally, at the level of a few months, the marine geophysical campaign RATS (Ryukyu Arc: Tectonics and Seismology) was conducted in two stages. A passive seismology experiment from July to October, 2008 (RATS1) has been conducted over the forearc of the Ryukyus and then active seismic experiment (refraction and reflection) was conducted in May 2009 in a NNE - SSW line through the Ryukyu margin. These two combined experiments allow improving our knowledge about the crustal structure of the margin. At the level of the forearc, the basement of the forearc is characterized by vertical backstop and a very deformed basis certainly associated with a significant out of sequence deformation. In depth, the downgoing plate is certainly affected by a tear that controls the seismicity in the region of transition between the subduction and collision."> 180degre). Synthetic tests show the effectiveness of MAXI (using P-wave only) to determine the parameters x, y and z even when the azimuthal gap is important. In the latter case, the quality of the results is dependent on the velocity model to represent the 3D structure of the Earth. We propose an approach involving the use of a 3D a priori P-wave velocity model to locate earthquakes which are lateral and remote to the seismic network. An application to the case of Taiwan and Ecuador validates this approach. Finally, at the level of a few months, the marine geophysical campaign RATS (Ryukyu Arc: Tectonics and Seismology) was conducted in two stages. A passive seismology experiment from July to October, 2008 (RATS1) has been conducted over the forearc of the Ryukyus and then active seismic experiment (refraction and reflection) was conducted in May 2009 in a NNE - SSW line through the Ryukyu margin. These two combined experiments allow improving our knowledge about the crustal structure of the margin. At the level of the forearc, the basement of the forearc is characterized by vertical backstop and a very deformed basis certainly associated with a significant out of sequence deformation. In depth, the downgoing plate is certainly affected by a tear that controls the seismicity in the region of transition between the subduction and collision."> | 180degre). Synthetic tests show the effectiveness of MAXI (using P-wave only) to determine the parameters x, y and z even when the azimuthal gap is important. In the latter case, the quality of the results is dependent on the velocity model to represent the 3D structure of the Earth. We propose an approach involving the use of a 3D a priori P-wave velocity model to locate earthquakes which are lateral and remote to the seismic network. An application to the case of Taiwan and Ecuador validates this approach. Finally, at the level of a few months, the marine geophysical campaign RATS (Ryukyu Arc: Tectonics and Seismology) was conducted in two stages. A passive seismology experiment from July to October, 2008 (RATS1) has been conducted over the forearc of the Ryukyus and then active seismic experiment (refraction and reflection) was conducted in May 2009 in a NNE - SSW line through the Ryukyu margin. These two combined experiments allow improving our knowledge about the crustal structure of the margin. At the level of the forearc, the basement of the forearc is characterized by vertical backstop and a very deformed basis certainly associated with a significant out of sequence deformation. In depth, the downgoing plate is certainly affected by a tear that controls the seismicity in the region of transition between the subduction and collision.">Plus
Le régime juridique de prévention et de réparation des risques naturels majeurs face aux exigences de justice sociale : le cas des Antilles francaises ; The legal system of prevention and repairs of major natural hazards confronted with the requirements of social and environmental justice : The case of the French West Indies
Auteur(s) : Coco, Roger
Auteurs secondaires : Antilles-Guyane Breton, Jean-Marie
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