Literatura científica selecionada sobre o tema "Marges continentales – Asie"

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Artigos de revistas sobre o assunto "Marges continentales – Asie"

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Forestier, Hubert, Heng Sophady, and Vincenzo Celiberti. "Le techno-complexe hoabinhien en Asie du Sud-est continentale : L’histoire d’un galet qui cache la forêt." Journal of Lithic Studies 4, no. 2 (2017): 305–49. http://dx.doi.org/10.2218/jls.v4i2.2545.

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La préhistoire du Sud-est asiatique se caractérise par un matériel lithique dont les chaînes opératoires restent encore peu connues ou mal décrites. Cette méconnaissance s’explique par l’éloignement géographique de ces régions tropicales vis à vis des problématiques préhistoriques occidentales développées depuis maintenant deux siècles. La préhistoire de l’Extrême-Orient est complexe, originale, surprenante parfois paradoxale car en marge des grandes lignées techniques connues ailleurs pour la période concernée, celle qui a vu l’avènement de l’Homme anatomiquement moderne. Cette préhistoire ré
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JUDSON, MARK L. I. "A new and endangered species of the pseudoscorpion genus Lagynochthonius from a cave in Vietnam, with notes on chelal morphology and the composition of the Tyrannochthoniini (Arachnida, Chelonethi, Chthoniidae)." Zootaxa 1627, no. 1 (2007): 53–68. http://dx.doi.org/10.11646/zootaxa.1627.1.4.

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Lagynochthonius fragilis n. sp. is described from a limestone cave in the Hong Chong karst of Kien Giang Province, southern Vietnam, which is currently threatened by quarrying activities. This is the first record of a troglomorphic species of Lagynochthonius Beier, 1951 from continental Asia. The presence of chemosensory setae on the dorsum of the chelal palm is interpreted as a synapomorphy of the tribe Tyrannochthoniini Chamberlin, 1962. The New Zealand genus Maorichthonius Chamberlin, 1925 is transferred from the Chthoniini Daday, 1888 to the Tyrannochthoniini. The genus Tyrannochthoniella
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Lobkovsky, Leopold, Yu Gabsatarov, Dmitry Alekseev, Irina Vladimirova, M. Ramazanov, and V. Kotelkin. "Geodynamic model of the interaction between the continental lithosphere and the active continental margin in East Asia." Russian Journal of Earth Sciences, April 18, 2022, 1–15. http://dx.doi.org/10.2205/2022es000787.

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We propose a concept for a geodynamic model of East Asia, taking into account the mechanism of the
 interaction between the stable part of the regional continental lithosphere and the active continental
 margin along the Kuril-Kamchatka and Japan island arcs. The concept involves upper mantle
 convection combined with keyboard-block mechanism explaining seismic cycle patterns in the active
 continental margin and provides grounds to resolve the paradoxes of the present-day velocity field
 observed by satellite geodesy methods. These paradoxes are associated with enormo
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Kinoshita, Gohta, Takuma Sato, Shota Murakami, et al. "Ice age land bridges to continental islands: Repeated migration of the forest‐dwelling sable in northeastern Asia." Journal of Biogeography, January 16, 2024. http://dx.doi.org/10.1111/jbi.14797.

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AbstractAimThe continental island system comprising Sakhalin, Hokkaido and the southern Kuril Islands (SHSK) in northeastern Asia serves as one of the southernmost habitats for many boreal and arctic organisms, with colonization via land bridges formed during glacial periods. To understand the impacts of past land‐bridge formation under Quaternary climate changes across SHSK, we investigated the demographic history of forest‐dwelling marten species.LocationSakhalin, Hokkaido and the southern Kuril Islands in northeastern Asia.TaxonSable, Martes zibellina (Carnivora, Mustelidae).MethodsWe emplo
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Teses / dissertações sobre o assunto "Marges continentales – Asie"

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Chen, Junfei. "Enregistrement sédimentaire de l'altération continentale sur les marges du SE Asiatique : exemples dans la mer de Chine du Sud." Electronic Thesis or Diss., Université de Lorraine, 2024. https://docnum.univ-lorraine.fr/ulprive/DDOC_T_2024_0143_CHEN.pdf.

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Le plateau de la Sonde, qui fait partie du sud de la mer de Chine méridionale (SCS), est situé dans une région tropicale caractérisée par une tectonique stable depuis le Quaternaire. Elle a examiné des échantillons de sédiments fluviaux dans des régions sources potentielles, des sédiments du fond marin et des carottes du plateau de la Sonde (ST13) et du talus (18288-2), à l'aide d'analyses élémentaires et isotopiques. Elle a analysé l'évolution des sources de sédiments depuis la dernière déglaciation et les changements induits sur le cycle du carbone par plateau de la Sonde pendant les période
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Pelletier, Bernard. "De la fosse de Manille à la chaîne de Tai͏̈wan : Etude géologique aux confins d'une subduction et d'une collision actives : Modèle géodynamique." Brest, 1985. http://www.theses.fr/1985BRES0012.

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La péninsule d'hengchun correspond a l'émergence de la zone de collision active. Un ensemble des dernières nouvelles ont été interprétées afin de proposer un schéma structural et un modèle d'évolution de la subduction manilaise a la collision taiwanaise. On considère. 1. La mise en évidence du matériel ophiolitique oligo-miocène, 2. Une déformation majeure d'âge miocène, 3. Un système d'obduction-collision nettement séparé dans le temps, 4. Un dispositif structural avec des phases de structuration. Dans les nombreuses questions restées en suspens, celle relative a la grande chaine centrale est
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Capítulos de livros sobre o assunto "Marges continentales – Asie"

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Harvey, Nick, and Mike Hilton. "Coastal Management in The Asia-Pacific Region." In Coastal Systems and Continental Margins. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3628-0_3.

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Talaue-Mcmanus, Liana. "Pressures On Rural Coasts in the Asia-Pacific Region." In Coastal Systems and Continental Margins. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3628-0_8.

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Daconto, Giuseppe. "Capacity Building for Integrated Coastal Zone Management in Countries of South Asia." In Coastal Systems and Continental Margins. Springer Netherlands, 1997. http://dx.doi.org/10.1007/978-94-017-1066-4_9.

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Harvey, Nick, and Nobuo Mimura. "Importance of Global Change for Coastal Management in the Asia-Pacific Region." In Coastal Systems and Continental Margins. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3628-0_1.

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Wong, Poh Poh, Lee Boon-Thong, and Maggi W. H. Leung. "Hot Spots of Population Growth and Urbanisation in the Asia-Pacific Coastal Region." In Coastal Systems and Continental Margins. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3628-0_7.

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Mimura, Nobuo. "State of the Environment in the Asia and Pacific Coastal Zones and Effects of Global Change." In Coastal Systems and Continental Margins. Springer Netherlands, 2006. http://dx.doi.org/10.1007/1-4020-3628-0_2.

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Mimura, Nobuo. "Conclusions: The Rapidly Changing Environment of the Asia and Pacific Region and its Implications for Sustainability of the Coastal Zones." In Coastal Systems and Continental Margins. Springer Netherlands, 2008. http://dx.doi.org/10.1007/978-1-4020-3625-5_6.

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Hutchison, Charles S. "Gondwana and Cathaysian blocks, Palaeotethys sutures and Cenozoic tectonics in South-east Asia." In Active Continental Margins — Present and Past. Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-662-38521-0_14.

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Hutchison, Charles S. "The Geological Framework." In The Physical Geography of Southeast Asia. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780199248025.003.0011.

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This chapter outlines the principal geological features of the region, extending from Myanmar and Taiwan in the north, southwards to include all the ASEAN countries, and extending as far as northern Australia. The present-day lithospheric plates and plate margins are described, and the Cenozoic evolution of the region discussed. Within a general framework of convergent plate tectonics, Southeast Asia is also characterized by important extensional tectonics, resulting in the world’s greatest concentration of deep-water marginal basins and Cenozoic sedimentary basins, which have become the focus
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Rogers, John J. W., and M. Santosh. "History of Continents after Rifting from Pangea." In Continents and Supercontinents. Oxford University Press, 2004. http://dx.doi.org/10.1093/oso/9780195165890.003.0012.

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As continents moved from Pangea to their present positions, they experienced more than 100 million years of geologic history. Compressive and extensional stresses generated by collision with continental and oceanic plates formed mountain belts, zones of rifting and strike-slip faulting, and magmatism in all of these environments. In this chapter we can only provide capsule summaries of this history for each of the various continents, but many of their salient features have been discussed as examples of tectonic processes in earlier chapters. The final section analyzes the breakup of Pangea as
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Trabalhos de conferências sobre o assunto "Marges continentales – Asie"

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Osundina, Adekunle Olayinka, Zulfikar Simatupang, Geovani C. Kaeng, and Sarah Sausan. "Geopressure Prediction in Deepwater Southeast Asia: Case Study from Sundaland Borneo Continental Margin." In SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition. Society of Petroleum Engineers, 2015. http://dx.doi.org/10.2118/176345-ms.

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Jiang, Dingsheng, Xisheng Xu, Fang Huang, Gengxin Deng, and Saskia Erdmann. "Existence of the big mantle wedge beneath East Asia continental margin before 123 Ma." In Goldschmidt2023. European Association of Geochemistry, 2023. http://dx.doi.org/10.7185/gold2023.16767.

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Rabbani, Harris Sajjad, Muhammad Saad Khan, M. Fahed Aziz Qureshi, Mohammad Azizur Rahman, Thomas Seers, and Bhajan Lal. "Analytical Modelling of Gas Hydrates in Porous Media." In Offshore Technology Conference Asia. OTC, 2022. http://dx.doi.org/10.4043/31645-ms.

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Abstract A mathematical model is presented to predict the formation of gas hydrates in porous media under various boundary conditions. The new mathematical modeling framework is based on coupling the analytical pore network approach (APNA) and equation proposed by De La Fuente et al. [1]. Further, we also integrate thermodynamic models to capture the phase boundary at which the formation of gas hydrates takes place. The proposed analytical framework is a set of equations that are computationally inexpensive to solve, allowing us to predict the formation of gas hydrates in complex porous media.
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Xiong, Shuai, Wenliang Xu, and Feng Wang. "Geochemical variations of the Cenozoic basalts in NE China through time: Constraints on transition time and mechanism from active continental margin setting to trench-arc-basin system in NE Asia." In Goldschmidt2022. European Association of Geochemistry, 2022. http://dx.doi.org/10.46427/gold2022.10299.

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Sales, Leonardo, Thomas Stolpnes, Milan Stanko, and Audun Faanes. "Subsea Processing Optimization Considering Reliability and Maintenance." In ASME 2023 42nd International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2023. http://dx.doi.org/10.1115/omae2023-104399.

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Abstract Subsea technology often enables the low-cost development of small marginal fields with short production lifetimes and low profit margins. However, ensuring high levels of reliability and low maintenance requirements for these subsea systems is critical for success and can be difficult to achieve. The goal of this research is to use numerical programming and optimization as a decision-support tool for the design of subsea production systems, while taking reliability and maintenance into account. The optimization was designed to determine the most suitable subsea equipment and productio
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Haver, Sverre, Kenneth Johannesen Eik, and Einar Nygaard. "Reliability Assessment of a Generic Jacket: Effects of Airgap Choices and Current Modelling." In ASME 2002 21st International Conference on Offshore Mechanics and Arctic Engineering. ASMEDC, 2002. http://dx.doi.org/10.1115/omae2002-28466.

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A simplified reliability assessment is carried out for a generic jacket at 200m water depth. The purpose is to indicate the sensitivity of the annual failure probability to the selected airgap and current design profile. Two example cases are considered. For one case the required airgap is defined by the 10−4 wave crest height, while for the other the required airgap is defined from the 10−2 wave crest height plus an uncertainty margin taken to be 10% of the crest height. For both cases, the required minimum design base shear capacities are determined both using the 10-year current profile (ea
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