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  • 1
    ISSN: 1365-3121
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geosciences
    Notes: The Aleutian island arc collides with the Kuril–Kamchatka arc in the area of the Cape Kamchatka peninsula. Field studies of neotectonic structures and apatite fission track analysis provide evidence for crustal plate shortening onshore the Cape Kamchatka peninsula. Tectonic blocks show differential mean exhumation rates varying from 0.18 ± 0.04 mm yr−1 in the north up to 1.2 ± 0.18 mm yr−1 in the south of the peninsula. A few of the fission track length data point to an unsteady exhumation rate. The blocks are separated by major dextral fault zones splaying off from Aleutian island arc fault zones. Across the western segment of the North American–Pacific Plate boundary the strain is partitioned along the fault zones and increases from north to south. Results from this study suggest that indentation and accretion of island arc fragments has recently occurred in the southeastern part of the Cape Kamchatka peninsula.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Oxford, UK : Blackwell Publishing Ltd
    The @island arc 2 (1993), S. 0 
    ISSN: 1440-1738
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geosciences
    Notes: Abstract A terrane map of North-East Asia at 1:5 000 000 scale has been compiled. The map shows terranes of different types and ages accreted to the North-Asian craton in the Mesozoic–Cenozoic, sub-and superterranes, together with post-amalgamation and post-accretion assemblages.The great Kolyma-Omolon superterrane adjoins the north-east craton margin. It is composed of large angular terranes of continental affinity: craton fragments and fragments of the passive continental margin of Siberia, and island arc, oceanic and turbidite terranes that are unconformably overlain by shallow marine Middle-Upper Jurassic deposits. The superterrane resulted from a long subduction of the Paleo-Pacific oceanic crust beneath the Alazeya arc. Its south-west boundary is defined by the Late Jurassic Uyandina-Yasachnaya marginal volcanic arc which was brought about by subduction of the oceanic crust that separated the superterrane from Siberia. According to paleomagnetic evidence the width of the basin is estimated to be 1500–2000 km. Accretion of the superterrane to Siberia is dated to the late Late Jurassic-Neocomian. The north-east superterrane boundary is defined by the Lyakhov-South Anyui suture which extends across southern Chukotka up to Alaska. Collision of the superterrane with the Chukotka shelf terrane is dated to the middle of the Cretaceous.The Okhotsk-Chukotka belt, composed of Albian-Late Cretaceous undeformed continental volcan-ites, defines the Cretaceous margin of North Asia. Terranes eastward of the belt are mainly of oceanic affinity: island arc upon oceanic crust, accretion wedge and turbidite terranes, as well as cratonic terranes and fragments of magmatic arcs on the continental crust and metamorphic terranes of unclear origin and age. The time of their accretion is constrained by post-accretionary volcanic belts that extend parallel to the Okhotsk-Chukotka belt but are displaced to the east: the Maastrichtian-Miocene Kamchatka-Koryak belt and the Eocene-Quaternary Central Kamchatka belt which mark active margins of the continent of corresponding ages.
    Type of Medium: Electronic Resource
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  • 3
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    PANGAEA
    In:  Geological Institute, Russian Academy of Sciences, Moscow | Supplement to: Pushcharovsky, Yury M; Peyve, Alexander A; Raznitsin, Yury N; et al. (1989): Stroenie zony razloma Zelenogo mysa: Tsentral'naya Atlantika (Structure of the Cape Verde Fracture Zone: Central Atlantic). Geological Institute of the USSR Academy of Sciences, Transactions, vol. 439. Moscow, Nauka Publ. (Yu.M. Pushcharovsky, Ed.), 199 pp.
    Publication Date: 2023-05-12
    Description: The book presents results of comprehensive geological and geophysical studies, carried out in the Cape Verde fault zone in the 3-rd cruise of R/V Akademik Nikolaj Strakhov (1986). Detailed characterization of bottom relief, thickness and structure of the sedimentary cover, magnetic field, crust structure, lithology and stratigraphy of sediments, petrography and geochemistry of magmatic rocks. Conclusions about tectonic layering of the crust and upper mantle in the fault zone, and about a concurrent structural section of large mantle inhomogeneities have been done. The book is the first monographic description of a major fault structure of the ocean floor.
    Keywords: Akademik Nikolaj Strakhov; ANS3; ANS3-D10; ANS3-D11; ANS3-D12; ANS3-D16; ANS3-D17; ANS3-D18; ANS3-D19; ANS3-D21; ANS3-D22; ANS3-D24; ANS3-D25; ANS3-D26; ANS3-D27; ANS3-D28; ANS3-D32; ANS3-D33; ANS3-D34; ANS3-D35; ANS3-D38; ANS3-D39; ANS3-D40; ANS3-D42; ANS3-D43; ANS3-D45; ANS3-D50; ANS3-D52; ANS3-D53; ANS3-D54; ANS3-D55; ANS3-D56; ANS3-D57; ANS3-D59; ANS3-D60; ANS3-D63; ANS3-D64; ANS3-D65; ANS3-T1; ANS3-T10; ANS3-T12; ANS3-T13; ANS3-T14; ANS3-T15; ANS3-T16; ANS3-T17; ANS3-T3; ANS3-T4; ANS3-T5; ANS3-T6; ANS3-T8; ANS3-T9; Archive of Ocean Data; ARCOD; Central Atlantic; Dredge; DRG; GC; Gravity corer
    Type: Dataset
    Format: application/zip, 21 datasets
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  • 4
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    PANGAEA
    In:  Geological Institute, Russian Academy of Sciences, Moscow
    Publication Date: 2023-05-12
    Keywords: Akademik Nikolaj Strakhov; ANS3; ANS3-D10; ANS3-D11; ANS3-D12; ANS3-D16; ANS3-D17; ANS3-D18; ANS3-D19; ANS3-D21; ANS3-D22; ANS3-D25; ANS3-D26; ANS3-D27; ANS3-D28; ANS3-D33; ANS3-D34; ANS3-D35; ANS3-D38; ANS3-D39; ANS3-D40; ANS3-D42; ANS3-D43; ANS3-D45; ANS3-D50; ANS3-D52; ANS3-D53; ANS3-D54; ANS3-D55; ANS3-D56; ANS3-D57; ANS3-D59; ANS3-D60; ANS3-D63; ANS3-D64; ANS3-D65; ANS3-T10; ANS3-T12; ANS3-T13; ANS3-T14; ANS3-T15; ANS3-T5; ANS3-T8; ANS3-T9; Archive of Ocean Data; ARCOD; Area/locality; Central Atlantic; Dredge; DRG; Elevation of event; Elevation of event 2; Event label; GC; Gravity corer; Latitude of event; Longitude of event; Sample mass; Sample type; Weighted
    Type: Dataset
    Format: text/tab-separated-values, 126 data points
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  • 5
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    In:  [Talk] In: KALMAR - Second Bilateral Workshop on Russian-German Cooperation on Kurile-Kamchatka and Aleutean Marginal Sea-Island Arc Systems, 16.05.-20.05.2011, Trier . KALMAR - Kurile-Kamchatka-Aleutean Marginal Sea - Island Systems : Program and Abstracts ; Workshop in Russian-German Cooperation, May 16 - 20, 2011 Trier, Germany ; pp. 23-24 .
    Publication Date: 2020-11-03
    Type: Conference or Workshop Item , NonPeerReviewed
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  • 6
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    In:  EPIC3AGU Chapman Conference on “Large-scale Volcanism in the Arctic: The Role of the Mantle and Tectonics", Selfoss, Iceland, 2019-10-13-2019-10-18
    Publication Date: 2019-12-22
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 7
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    Institute of Volcanology and Seismology FEB RAS
    In:  EPIC3Bulletin of Kamchatka Regional Association «Educational-Scientific Center». Earth Sciences, Institute of Volcanology and Seismology FEB RAS, 37(1), pp. 102-106, ISSN: 1816-5532
    Publication Date: 2018-12-14
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , peerRev
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  • 8
    Publication Date: 2018-12-14
    Description: The area in north-east Siberia, adjacent to the Laptev Sea of the Arctic Ocean, inherits a complex geological setting, which is to date not fully understood. Located north to the Laptev Sea, the ultraslow spreading Gakkel Ridge is propagating into a continental rift system – the Laptev Sea Rift. This rift separates the North American plate from the Eurasian plate and presents a rare opportunity to investigate mechanisms of recent continental breakups. In general, divergent plate boundaries are accompanied by magmatic and earthquake activities. The earthquake activity at the Gakkel Ridge shows a sharp image of seismicity, confined to the rift valley extends to the continental shelf of the Laptev Sea. Though, the Laptev Sea region indicates less and more diffuse seismicity and an absence of magmatic activity. So far, the local (micro-)seismicity of the Laptev Sea region is poorly described, due to a lack of local seismological stations and data sets. In summer 2016, as part of the project SIOLA, 25 seismological stations were temporarily installed in the Lena Delta. A network of 12 seismometers were located in the Lena Delta along the active seismic Olenek Fault Zone and another 13 stations as a seismological array close to Tiksi. Over a period of nine months, these instruments continuously recorded seismic data, to investigate the geodynamic processes of the Laptev Sea Rift by analysing the local seismicity. Furthermore, new data recently collected by members of the project and expand the existing data base. We will report the progress of the project and show some data and preliminary results.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 9
    Publication Date: 2019-04-09
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 10
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    In:  EPIC319. Arbeitstreffen im Rahmen der Fachvereinbarung über die Zusammenarbeit auf dem Gebiet der Meeres- und Polarforschung zwischen dem Ministerium für Bildung und Wissenschaft der Russischen Föderation und dem BMBF der Bundesrepublik Deutschland, GEOMAR, Kiel, 2014-11-19-2014-11-21
    Publication Date: 2014-12-01
    Description: We want to study one of only very few examples of transition between oceanic and continental rifting, the Laptev Sea, because it is unusual. Generally, rifting processes are associated with focused earthquake and also magmatic activity, whereas the Laptev Sea shows diffuse seismicity and is amagmatic. This project will study the recent geodynamics and reconstruct Cenozoic rift evolution based on existing seismic data.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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