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  1. Rapakivi Granites and Associating Magmatism during the Aptian Development Phase of the Siberian Craton Active Continental Margin (Northeast Asia)

    Abstract

    New data on the U–Th–Pb geochronology, mineralogy, geochemistry, and Sm–Nd and Rb–Sr isotopes for granitoids and the associated subalkaline...

    A. E. Vernikovskaya, V. Yu. Fridovsky, ... Ya. A. Tarasov in Doklady Earth Sciences
    Article 20 January 2024
  2. Tectonic Framework of the Eurasian Arctic Continental Margin

    Abstract

    Modern ideas about the tectonics of the Eurasian continental margin are considered. Cratons, fold belts, platforms, and sedimentary basins...

    E. A. Gusev, D. E. Artemieva, ... E. A. Zykov in Geotectonics
    Article 01 December 2023
  3. The Sosva–Lozva Graben: A Devonian–Carboniferous Extensional Structure at the Rear of an Active Continental Margin on the Eastern Slope of the Northern Urals

    Abstract

    Within the northern part of the Tagil paleo-island-arc structure in the Northern Urals, the Sosva–Lozva graben is identified. The graben is...

    G. A. Petrov, A. V. Maslov in Doklady Earth Sciences
    Article Open access 20 July 2023
  4. Reconstruction of the Lateral Series of the Late Cambrian and Early Ordovician Active Continental Margin Structures in the Paleozoides of Northern Kazakhstan

    Abstract

    A comprehensive study of the Upper Cambrian and Lower Ordovician rock complexes of Northern Kazakhstan was carried out; their ages were...

    K. E. Degtyarev, A. A. Tretyakov, ... Yu. V. Plotkina in Geotectonics
    Article 01 February 2023
  5. Growth of continental crust in intra-oceanic and continental-margin arc systems: Analogs for Archean systems

    Earth’s continental crust has grown and been recycled throughout geologic history along convergent plate margins. The main locus of continental...

    Timothy Kusky, Lu Wang in Science China Earth Sciences
    Article 15 August 2022
  6. Structure of the Earth’s Crust of the Continental Margin of the Laptev Sea and the Adjacent Part of the Eurasian Basin

    Abstract

    A 3D model of the Earth’s crust for the continental margin of the Laptev Sea and the adjacent part of the Eurasian Basin was developed using...

    A. L. Piskarev, V. D. Kaminsky, ... O. E. Smirnov in Doklady Earth Sciences
    Article 18 July 2023
  7. Architectural element variations across the offshore basin of Tanzania continental margin: influence of local factors in sedimentary processes and their implications for petroleum prospectivity

    Significant gas discoveries have been made in the southern offshore basin of Tanzania continental margin while no gas accumulation has been found in...

    Emily Barnabas Kiswaka, Dicky Harishidayat, ... Abdullatif Al-Shuhail in Marine Geophysical Research
    Article 28 March 2023
  8. Large-scale submarine landslide in the Cochin offshore region, southwestern continental margin of India: a preliminary geophysical understanding

    Analysis of high-resolution multibeam bathymetry, sub-bottom profiles, and multichannel seismic reflection data provides a novel understanding of a...

    C. M. Bijesh, D. Twinkle, ... P. John Kurian in Landslides
    Article 01 October 2022
  9. High-K calc-alkaline to shoshonitic intrusions in SE Tibet: implications for metasomatized lithospheric mantle beneath an active continental margin

    High-K calc-alkaline to shoshonitic suites are widespread and generally volumetrically small but provide key information on magmatic mantle-crust...

    Ren-Zhi Zhu, Ewa Słaby, ... Mike Fowler in Contributions to Mineralogy and Petrology
    Article 07 October 2021
  10. Assessment of continental margin clinoform systems in the Sørvestsnaget Basin, western Barents Sea: from clinoform parameters towards paleo-water depth

    2D seismic reflection data from the western Barents Sea are used to map and date the Plio–Pleistocene shelf edge clinoforms. The mapped clinoforms...

    Dicky Harishidayat, Benjamin Udo Emmel, ... Ståle Emil Johansen in Marine Geophysical Research
    Article 02 June 2022
  11. Erratum to: The Sosva–Lozva Graben: A Devonian–Carboniferous Extensional Structure at the Rear of an Active Continental Margin on the Eastern Slope of the Northern Urals

    An Erratum to this paper has been published: https://doi.org/10.1134/S1028334X23070218

    G. A. Petrov, A. V. Maslov in Doklady Earth Sciences
    Article Open access 01 January 2024
  12. Schistes Lustrés in a hyper-extended continental margin setting and reinterpretation of the limit between the Mont Fort and Tsaté nappes (Middle and Upper Penninics, Western Swiss Alps)

    The Schistes Lustrés form a large and complex unit at the top of the Penninic nappe stack of the Alpine belt. Calcschists, partly of Late Cretaceous...

    Adrien Pantet, Jean-Luc Epard, ... Lukas Baumgartner in Swiss Journal of Geosciences
    Article Open access 20 March 2023
  13. The sedimentary record of the Sanshui Basin: Implication to the Late Cretaceous tectonic evolution in the northern margin of South China Sea

    Whether the South China continental margin had shifted from active subduction to passive extension in the Late Cretaceous remains controversial....

    Zhe Zhang, Nianqiao Fang, Zhen Sun in Journal of Oceanology and Limnology
    Article 20 February 2023
  14. Neotectonics at the SE Continental Margin of the Korean Peninsula: Implications for the Back-Arc Region Behind the SW Japan Arc

    The geological evolution of the SE continental margin of the Korean Peninsula resulted from crustal extension with back-arc rifting to spreading...

    Han-Joon Kim, Seonghoon Moon, ... Gwang Hoon Lee in Pure and Applied Geophysics
    Article 10 March 2022
  15. Gas Hydrate and Free Gas Along the Chilean Continental Margin

    The Chilean continental margin has been extensively investigated over the last few decades to better characterize the complex geological setting...
    Iván Vargas-Cordero, Michela Giustiniani, ... Giulia Alessandrini in World Atlas of Submarine Gas Hydrates in Continental Margins
    Chapter 2022
  16. Heat Flow at the Eurasian Margin: A Case Study for Estimation of Gas Hydrate Stability

    Abstract

    Regional-scale geothermal maps are the basis for calculations and map** of the thermobaric stability zone of submarine gas hydrates. Global...

    A. V. Bochkarev, Yu. Yu. Smirnov, T. V. Matveeva in Geotectonics
    Article 01 December 2023
  17. Gas Hydrate Systems on the Brazilian Continental Margin

    The existence of gas hydrate systems along Brazil’s vast continental margin has been known since the 1980s, based on observations of bottom...
    Marcelo Ketzer, Adriano Viana, ... Alberto Malinverno in World Atlas of Submarine Gas Hydrates in Continental Margins
    Chapter 2022
  18. Tectono-Geodynamic Settings in the Conjugation Zone of the Lomonosov Ridge, Eurasian Basin, and Eurasian Continental Margin

    Abstract

    Interpretational analysis of new seismic data allowed us to reconstruct the geodynamic settings that led to the formation of an ensemble of...

    E. V. Shipilov, L. I. Lobkovsky, ... T. A. Kirillova in Geotectonics
    Article 01 September 2021
  19. Pleistocene Sediments of the Submarine Continental Margin of Southwestern Africa

    The lithological-facies zoning of the Neo- and Eopleistocene sediments of submarine continental margin of Southwestern Africa was described for the...

    M. A. Levitan, T. A. Antonova, ... K. V. Syromyatnikov in Geochemistry International
    Article 17 June 2021
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