Derleme
BibTex RIS Kaynak Göster

A Review on Geological View of Svalbard with its Infrastructure and Strategies

Yıl 2022, Cilt: 9 Sayı: 4, 24 - 34, 25.12.2022
https://doi.org/10.30897/ijegeo.1081659

Öz

Arctic Region (AR); Its role in global climate change, recently opened commercial sea routes, unexploited industrial resources, unique polar ecosystem and international geopolitical balance making it a strategic area that attracts the attention of many countries. In this aspect, the Arctic Council carries out various studies and international cooperation, especially interdisciplinary scientific research in the AR. Apart from the Council, many institutions, organizations and societies come to the AR to conduct scientific studies. When these studies examined from a geological point of view, it seen that they classified as glacial science, marine geology, geomorphology, microbial ecology, permafrost, biogeochemistry and geochemistry. Svalbard is geologically salient as well as being the place where most scientific studies are conducting in AR. In line with the geological significance of Svalbard, many institutions are engaged in educational studies, science strategies, international projects, etc. In this study, the geological structure, geological infrastructure and scientific strategy for geological researches of the Svalbard Region are examined. Moreover, projects that can be done within the scope of scientific researches of Turkey in AR, are evaluated as a recommendation.

Teşekkür

This study was carried out during the internship period at TÜBİTAK MAM Polar Research Institute within the scope of the Presidency Internship Mobilization of Turkey. The first outcomes of this study was presented as a poster in the 5th National Polar Science Workshop.

Kaynakça

  • Allaart, L., Müller, J., Schomacker, A., Rydningen, T. A., Håkansson, L., Kjellman, S. E., ... & Forwick, M. (2020). Late Quaternary glacier and sea‐ice history of northern Wijdefjorden, Svalbard. Boreas, 49(3), 417-437.
  • Arctic Council / Working groups, Retrieved 17 August 2021 from: https://arctic-council.org/search/?q=geology&submit=
  • Arctic Council Strategic Plan 2021-2030, (2021). Retrieved 2021 from https://oaarchive.arctic-council.org/handle/11374/2601
  • Arctic Council, Retrieved 17 August 2021 from https://arctic-council.org/
  • Arctic Office. Retrieved 12 July 2021 from https://www.arctic.ac.uk/uk-arctic-research-station/
  • Bednorz, E., & Kolendowicz, L. (2010). Summer 2009 thermal and bioclimatic conditions in Ebba Valley, central Spitsbergen. Polish Polar Research, 327-348.
  • Bp, (2021). Statistical Review of World Energy Retrieved 2021 from https://www.bp.com/en/global/corporate/energy-economics/statistical-review-of-world-energy.html
  • Bryhn, R. (2016). "Kings Bay AS". https://snl.no/Kings_Bay_AS
  • Burzyński, M., Michalski, K., Manby, G., & Nejbert, K. (2018). Mineralogical, rock-magnetic and palaeomagnetic properties of metadolerites from Central Western Svalbard. Minerals, 8(7), 279.
  • Canturk, I.U., Atvur, S. (2021). “Environmental Degradation, Strategy and Competition in the Arctic Region: An Evaluation in the Context of Environmental Security”. International Journal of Politics and Security (IJPS), 3 (1), 180-217.
  • Centre for Polar Ecology (2013). Polar Ecology Course Svalbard 2013, Faculty of Science, University of South Bohemia in České Budějovice, Czech Republic.
  • Choudhary S, Nayak GN, Khare N. (2020). Source, mobility, and bioavailability of metals in fjord sediments of Krossfjord-Kongsfjord system, Arctic, Svalbard. Environ Sci Pollut Res Int. 2020 May; 27(13):15130-15148.
  • Cianfarra, P., & Salvini, F. (2013). Evidences for Neogene-Quaternary tectonics in Svalbard. In EGU General Assembly Conference Abstracts (pp. EGU2013-10471).
  • Cianfarra, P., & Salvini, F. (2016). Quantification of fracturing within fault damage zones affecting Late Proterozoic carbonates in Svalbard. Rendiconti Lincei, 27(1), 229-241.
  • Calik, A.G. (2021). “Current Issues and Bilateral Disputes in the Arctic Region”. International Journal of Politics and Security (IJPS), 3(1), 99-128.
  • Cetin, O., & Buyuksagnak, Y. B. (2021). Turkey's Interest in the Arctic Region: the Possible Effects of being a Party to the Svalbard Treaty. International Journal of Environment and Geoinformatics, 8(3), 350-358.
  • Dallmann, W. K., Sigmond, E., & Roberts, D. (2007). Geology of Svalbard. Geology of the land and sea areas of northern Europe. Norges Geologiske Undersøkelse Special Publication, 10, 87-89.
  • Denstadli, J. M., & Jacobsen, J. K. S. (2014). More clouds on the horizon Polar tourists' weather tolerances in the context of climate change. Scandinavian Journal of Hospitality and Tourism, 14(1), 80-99.
  • Doveri, M., Lelli, M., Baneschi, I., & Provenzale, (2016). A. Isotopic and physical-chemical monitoring of glacial drainages and sea water in the Ny-Ålesund area, Svalbard.
  • Dowdeswell, J. (1989). On The Nature of Svalbard Icebergs. Journal of Glaciology, 35(120), 224-234.
  • Dragon, K., & Marciniak, M. (2010). Chemical composition of groundwater and surface water in the Arctic environment (Petuniabukta region, central Spitsbergen). Journal of Hydrology, 386(1-4), 160-172.
  • Energy Portlet, Retrieved 2 August 2021 from https://portlets.arcticportal.org/renewable-energy
  • European Commission, (2021). Joınt communication to the european parliament, the council, the european economic and social committee and the committee of the regions.
  • Friend, P. F. (1961). The Devonian stratigraphy of North and central Vestspitsbergen. Proc. Yorks. Geol. Soc. 33: 77-118.
  • Gibas, J., Rachlewicz, G., & Szczuciński, W. (2005). Application of DC resistivity soundings and geomorphological surveys in studies of modern Arctic glacier marginal zones, Petuniabukta, Spitsbergen. Polish Polar Research, 239-258.
  • Gjelsvik, T., Elverhoı, A., Hjelle, A., Laurıtzen, O., & Salvigsen, O. (1986). Status of the geological research in Svalbard and the Barents Sea. Bulletin of the Geological Society of Finland 58(1):131-147.
  • Goncharov, A. G., Nikitina, L. P., Borovkov, N. V., Babushkina, M. S., & Sirotkin, A. N. (2015). Thermal and redox equilibrium conditions of the upper-mantle xenoliths from the Quaternary volcanoes of NW Spitsbergen, Svalbard Archipelago. Russian Geology and Geophysics, 56(11), 1578-1602.
  • Hanssen-Bauer, I., Førland, E. J., Hisdal, H., Mayer, S., Sandø, A. B., & Sorteberg, A. (2019). Climate in Svalbard 2100. A knowledge base for climate adaptation. NCCS report.
  • Harland, W. B., Anderson, L. M., Manasrah, D., Butterfield, N. J., Challinor, A., Doubleday, P. A., ... & Stephens, C. F. (1997). The geology of Svalbard Vol. 17, p. 521. London: Geological Society.
  • Hodson, A., Nowak, A., Hornum, M. T., Senger, K., Redeker, K. R., Christiansen, H. H., ... & Marca, A. (2020). Open system pingos as hotspots for sub-permafrost methane emission in Svalbard. Cryosphere.
  • Holtedahl, O. (1926). Notes on the geology of northwestern Spitsbergen. Result from Norske Statsunderstøt. Spitsbergenekspedisjone 8.5(8) 28.
  • Hornsund Polska Stacja Polaarna (2014). https://hornsund.igf.edu.pl/about-the-station/scope-of-research/
  • Ingólfsson, Ó. (2004). “Outline of the geography and geology of Svalbard.” UNIS course packet.
  • INTERACT (2020). INTERACT Station Catalogue – 2020. Eds.: Arndal, M.F. and Topp-Jørgensen, E. DCE – Danish Centre for Environment and Energy, Aarhus University, Denmark. 190.
  • INTER-ACT, (2017). Retrieved 17 August 2021 from https://eu-interact.org/project/
  • International Arctic Science Committee (IASC) / Working groups, Retrieved 13 July 2021 from https://iasc.info/our-work/working-groups
  • International Arctic Science Committe (IASC) / Geology Study Topics, Retrieved 14 July 2021 from https://iasc.info/search?searchword=geology&searchphrase=all
  • International Arctic Science Committee (IASC), (2018). Strategic Plan 2018-2023. Enhancing Knowledge and Understanding of the Arctic.
  • International Arctic Science Committee, (2015). Strategic Plan 2018-2023 Enhancing Knowledge and Understanding of the Arctic https://iasc.info/about/publications-documents/organisational-and-strategic/703-iasc-strategic-plan-2018-2023
  • Johnsen, S., O., Mork, A., Dypvik, H., Nagy, J. (2001). Outline of the Geology of Svalbard in 7th ESF IMPACT Workshop.
  • Jørgensen, B. B., Laufer, K., Michaud, A. B., & Wehrmann, L. M. (2021). Biogeochemistry and microbiology of high Arctic marine sediment ecosystems—Case study of Svalbard fjords. Limnology and Oceanography, 66, 273-292.
  • Kalinowska, A., Szopińska, M., Chmiel, S., Kończak, M., Polkowska, Ż., Artichowicz, W., ... & Łuczkiewicz, A. (2020). Heavy metals in a high arctic fiord and their introduction with the wastewater: A case study of adventfjorden-longyearbyen system, Svalbard. Water, 12(3), 794.
  • Kurt, S. (2021). “Importance of the Arctic in the Framework of Air Power Theory”. International Journal of Politics and Security (IJPS), 3(1), 51-73.
  • Labrousse, L., Elvevold, S., Lepvrier, C., & Agard, P. (2008). Structural analysis of high-pressure metamorphic rocks of Svalbard: Reconstructing the early stages of the Caledonian orogeny. Tectonic. 27 (5).
  • Larssen, G., B., Johannessen, E., P., Henningsen, T., Rafaelsen, B. (2008). Svalbard (Spitsbergen) round trip; Post Caledonian Tectonostratigraphic and Paleogeographic Development, Polar Research, 27(3): 298 – 317.
  • Lindholt, L., & Glomsrød, S. (2011). The role of the Arctic in future global petroleum supply (No. 645). Discussion Papers.
  • Majka, J., & Kośmińska, K. (2017). Magmatic and metamorphic events recorded within the Southwestern Basement Province of Svalbard. Arktos, 3(1), 1-7.
  • Marchenko, A. (2014). Experiments on waves in oil and ice, Reseach Council of Norway.
  • Midttomme, K. (2017). Energy Needs of Longyearbyen. 15.
  • Moholdt, G., & Kääb, A. (2012). A new DEM of the Austfonna ice cap by combining differential SAR interferometry with ICESat laser altimetry. Polar Research, 31(1), 18460.
  • Norwegian Ministry of Justice and the Police (2009). Report No. 22 (2008–2009) to the Storting: Svalbard
  • Norwegian Polar Institute / Retrieved 16 August 2021 from https://www.npolar.no/historie/
  • Norwegian Polar Institute / Research. Retrieved 16 August 2021 from https://www.npolar.no/en/research/
  • Nuth, C., Kohler, J., König, M., Von Deschwanden, A., Hagen, J. O., Kääb, A., ... & Pettersson, R. (2013). Decadal changes from a multi-temporal glacier inventory of Svalbard. The Cryosphere, 7(5), 1603-1621.
  • Ny-Ålesund Research Station, (2019). The Research Council of Norway, Oslo, May, 2019 ISBN 978-82-12-03761-8.
  • Ohta, Y. (1992). Recent understanding of the Svalbard basement 1n the light of new radiometric age determinations. Norsk Geologisk Tidsskrift, 72,1-5.
  • Ostreng, W. (2010). Geopolitics and Big Power Interests. Access address: http://www.arctis-search.com/Geopolitics+and+Big+Power+Interests
  • Pedersen, T., (2021). The politics of research presence in Svalbard, The Polar Journal, 413-426.
  • Petrov, O., Morozov, A., Shokalsky, S., Kashubin, S., Artemieva, I. M., Sobolev, N., ... & Smelror, M. (2016). Crustal structure and tectonic model of the Arctic region. Earth-Science Reviews, 154, 29-71.
  • Petrov, O. V., Shokalsky, S. P., Kashubin, S. N., Morozov, A. F., Sobolev, N. N., Pospelov, I. I., ... & Vernikovsky, V. А. (2019). Explanation of the tectonic map of the Arctic. Scientific contributions to the Tectonic Map of the Arctic/eds. OV Petrov, М. Pubel, 8.
  • Piepjohn, K., and W. K. Dallmann. (2014). Stratigraphy of the uppermost Old Red Sandstone of Svalbard (Mimerdalen Subgroup). Polar Res. 33: 19998
  • Piepjohn, K., von Gosen, W., & Tessensohn, F. (2016). The Eurekan deformation in the Arctic: an outline. Journal of the Geological Society, 173(6), 1007-1024.
  • Piepjohn, K., von Gosen, W., Tessensohn, F., Reinhardt, L., McClelland, W. C., Dallmann, W., ... & Harrison, J. C. (2015). Tectonic map of the Ellesmerian and Eurekan deformation belts on Svalbard, north Greenland, and the Queen Elizabeth Islands (Canadian Arctic). arktos, 1(1), 1-7.
  • Research in Svalbard Database. Retrieved 12 August 2021 from https://www.researchinsvalbard.no/about
  • Schlager, U., Jokat, W., Weigelt, E., & Gebhardt, C. (2021). Submarine landslides along the Siberian termination of the Lomonosov Ridge, Arctic Ocean. Geomorphology, 382, 107679.
  • Shubin, D. (2020). Future of Great Power Competition in the Arctic. Journal of Governance and Politics, (1), 13-13.
  • Squire, R., Dodds, K. (2020). Introduction to the Special Issue: Subterranean Geopolitics, Geopolitics, 25(1) 4-16.
  • Statictics Norway (2021). Population of Svalbard. Retrieved 12 July 2021 from https://www.ssb.no/en/befolkning/folketall/statistikk/befolkningen-pa-svalbard
  • Stauffer, P. (2009). US Geological Survey (USGS) Circum-Arctic Resource Appraisal: Estimates of Undiscovered Oil and Gas North of the Arctic Circle.
  • Stolpmann, L., Coch, C., Morgenstern, A., Boike, J., Fritz, M., Herzschuh, U., ... & Grosse, G. (2021). First pan-Arctic assessment of dissolved organic carbon in lakes of the permafrost region. Biogeosciences, 18(12), 3917-3936.
  • Svalbard Treaty, (1920). Retrieved 10 August 2021 from https://arctic-council.org/en/search/?q=svalbard+treaty&submit=
  • Svalbard Integrated Artic Earth Observing System. Retrieved 11 August 2021 from sios-svalbard.org
  • Svalbard Science Forum / Barentsburg. Retrieved 11 August 2021 from www.forskningsradet.no/en/svalbard-science-forum/svalbard-research-planning/research-communities/barentsburg/
  • Svalbard Science Forum. Retrieved 11 August 2021, from www.forskningsradet.no/en/svalbard-science-forum/ssf-info/about-ssf/
  • Sağbansua, L., & Biskek, K. (2006). Strategy, competition and competitiveness relations. Academic Perspective, International Refereed E-Journal of Social Sciences, 9, 1-14.
  • Svalbard Science Forum. Retrieved 12 August 2021 from https://www.forskningsradet.no/en/svalbard-science-forum/ssf-info/about-ssf/
  • Yimibesoglu, S., Oktar, O., Ozsoy, B. (2019). First Turkish Arctic Scientific Expediton, TÜBİTAK Bilim ve Teknik.
  • The University Centre in Svalbard (UNIS). Retrieved 23 August 2021 from https://research.unis.no/
  • The World Factbook, (2022). Svalbard. https://www.cia.gov/the-world-factbook/countries/svalbard/
  • Winsnes, T. S., Heintz, A., & Heintz, N. (1962). Aspects of the geology of Svalbard.
  • Wunder, L. C., Aromokeye, D. A., Yin, X., Richter-Heitmann, T., Willis-Poratti, G., Schnakenberg, A., ... & Friedrich, M. W. (2021). Iron and sulfate reduction structure microbial communities in (sub-) Antarctic sediments. The ISME Journal, 1-18.
  • The Antarctic Treaty, (1959). https://www.scar.org/policy/antarctic-treaty-system/
  • The Research Council of Norway. Retrieved 9 August 2021 from https://www.forskningsradet.no/en/about-the-research-council/what-we-do/
Yıl 2022, Cilt: 9 Sayı: 4, 24 - 34, 25.12.2022
https://doi.org/10.30897/ijegeo.1081659

Öz

Kaynakça

  • Allaart, L., Müller, J., Schomacker, A., Rydningen, T. A., Håkansson, L., Kjellman, S. E., ... & Forwick, M. (2020). Late Quaternary glacier and sea‐ice history of northern Wijdefjorden, Svalbard. Boreas, 49(3), 417-437.
  • Arctic Council / Working groups, Retrieved 17 August 2021 from: https://arctic-council.org/search/?q=geology&submit=
  • Arctic Council Strategic Plan 2021-2030, (2021). Retrieved 2021 from https://oaarchive.arctic-council.org/handle/11374/2601
  • Arctic Council, Retrieved 17 August 2021 from https://arctic-council.org/
  • Arctic Office. Retrieved 12 July 2021 from https://www.arctic.ac.uk/uk-arctic-research-station/
  • Bednorz, E., & Kolendowicz, L. (2010). Summer 2009 thermal and bioclimatic conditions in Ebba Valley, central Spitsbergen. Polish Polar Research, 327-348.
  • Bp, (2021). Statistical Review of World Energy Retrieved 2021 from https://www.bp.com/en/global/corporate/energy-economics/statistical-review-of-world-energy.html
  • Bryhn, R. (2016). "Kings Bay AS". https://snl.no/Kings_Bay_AS
  • Burzyński, M., Michalski, K., Manby, G., & Nejbert, K. (2018). Mineralogical, rock-magnetic and palaeomagnetic properties of metadolerites from Central Western Svalbard. Minerals, 8(7), 279.
  • Canturk, I.U., Atvur, S. (2021). “Environmental Degradation, Strategy and Competition in the Arctic Region: An Evaluation in the Context of Environmental Security”. International Journal of Politics and Security (IJPS), 3 (1), 180-217.
  • Centre for Polar Ecology (2013). Polar Ecology Course Svalbard 2013, Faculty of Science, University of South Bohemia in České Budějovice, Czech Republic.
  • Choudhary S, Nayak GN, Khare N. (2020). Source, mobility, and bioavailability of metals in fjord sediments of Krossfjord-Kongsfjord system, Arctic, Svalbard. Environ Sci Pollut Res Int. 2020 May; 27(13):15130-15148.
  • Cianfarra, P., & Salvini, F. (2013). Evidences for Neogene-Quaternary tectonics in Svalbard. In EGU General Assembly Conference Abstracts (pp. EGU2013-10471).
  • Cianfarra, P., & Salvini, F. (2016). Quantification of fracturing within fault damage zones affecting Late Proterozoic carbonates in Svalbard. Rendiconti Lincei, 27(1), 229-241.
  • Calik, A.G. (2021). “Current Issues and Bilateral Disputes in the Arctic Region”. International Journal of Politics and Security (IJPS), 3(1), 99-128.
  • Cetin, O., & Buyuksagnak, Y. B. (2021). Turkey's Interest in the Arctic Region: the Possible Effects of being a Party to the Svalbard Treaty. International Journal of Environment and Geoinformatics, 8(3), 350-358.
  • Dallmann, W. K., Sigmond, E., & Roberts, D. (2007). Geology of Svalbard. Geology of the land and sea areas of northern Europe. Norges Geologiske Undersøkelse Special Publication, 10, 87-89.
  • Denstadli, J. M., & Jacobsen, J. K. S. (2014). More clouds on the horizon Polar tourists' weather tolerances in the context of climate change. Scandinavian Journal of Hospitality and Tourism, 14(1), 80-99.
  • Doveri, M., Lelli, M., Baneschi, I., & Provenzale, (2016). A. Isotopic and physical-chemical monitoring of glacial drainages and sea water in the Ny-Ålesund area, Svalbard.
  • Dowdeswell, J. (1989). On The Nature of Svalbard Icebergs. Journal of Glaciology, 35(120), 224-234.
  • Dragon, K., & Marciniak, M. (2010). Chemical composition of groundwater and surface water in the Arctic environment (Petuniabukta region, central Spitsbergen). Journal of Hydrology, 386(1-4), 160-172.
  • Energy Portlet, Retrieved 2 August 2021 from https://portlets.arcticportal.org/renewable-energy
  • European Commission, (2021). Joınt communication to the european parliament, the council, the european economic and social committee and the committee of the regions.
  • Friend, P. F. (1961). The Devonian stratigraphy of North and central Vestspitsbergen. Proc. Yorks. Geol. Soc. 33: 77-118.
  • Gibas, J., Rachlewicz, G., & Szczuciński, W. (2005). Application of DC resistivity soundings and geomorphological surveys in studies of modern Arctic glacier marginal zones, Petuniabukta, Spitsbergen. Polish Polar Research, 239-258.
  • Gjelsvik, T., Elverhoı, A., Hjelle, A., Laurıtzen, O., & Salvigsen, O. (1986). Status of the geological research in Svalbard and the Barents Sea. Bulletin of the Geological Society of Finland 58(1):131-147.
  • Goncharov, A. G., Nikitina, L. P., Borovkov, N. V., Babushkina, M. S., & Sirotkin, A. N. (2015). Thermal and redox equilibrium conditions of the upper-mantle xenoliths from the Quaternary volcanoes of NW Spitsbergen, Svalbard Archipelago. Russian Geology and Geophysics, 56(11), 1578-1602.
  • Hanssen-Bauer, I., Førland, E. J., Hisdal, H., Mayer, S., Sandø, A. B., & Sorteberg, A. (2019). Climate in Svalbard 2100. A knowledge base for climate adaptation. NCCS report.
  • Harland, W. B., Anderson, L. M., Manasrah, D., Butterfield, N. J., Challinor, A., Doubleday, P. A., ... & Stephens, C. F. (1997). The geology of Svalbard Vol. 17, p. 521. London: Geological Society.
  • Hodson, A., Nowak, A., Hornum, M. T., Senger, K., Redeker, K. R., Christiansen, H. H., ... & Marca, A. (2020). Open system pingos as hotspots for sub-permafrost methane emission in Svalbard. Cryosphere.
  • Holtedahl, O. (1926). Notes on the geology of northwestern Spitsbergen. Result from Norske Statsunderstøt. Spitsbergenekspedisjone 8.5(8) 28.
  • Hornsund Polska Stacja Polaarna (2014). https://hornsund.igf.edu.pl/about-the-station/scope-of-research/
  • Ingólfsson, Ó. (2004). “Outline of the geography and geology of Svalbard.” UNIS course packet.
  • INTERACT (2020). INTERACT Station Catalogue – 2020. Eds.: Arndal, M.F. and Topp-Jørgensen, E. DCE – Danish Centre for Environment and Energy, Aarhus University, Denmark. 190.
  • INTER-ACT, (2017). Retrieved 17 August 2021 from https://eu-interact.org/project/
  • International Arctic Science Committee (IASC) / Working groups, Retrieved 13 July 2021 from https://iasc.info/our-work/working-groups
  • International Arctic Science Committe (IASC) / Geology Study Topics, Retrieved 14 July 2021 from https://iasc.info/search?searchword=geology&searchphrase=all
  • International Arctic Science Committee (IASC), (2018). Strategic Plan 2018-2023. Enhancing Knowledge and Understanding of the Arctic.
  • International Arctic Science Committee, (2015). Strategic Plan 2018-2023 Enhancing Knowledge and Understanding of the Arctic https://iasc.info/about/publications-documents/organisational-and-strategic/703-iasc-strategic-plan-2018-2023
  • Johnsen, S., O., Mork, A., Dypvik, H., Nagy, J. (2001). Outline of the Geology of Svalbard in 7th ESF IMPACT Workshop.
  • Jørgensen, B. B., Laufer, K., Michaud, A. B., & Wehrmann, L. M. (2021). Biogeochemistry and microbiology of high Arctic marine sediment ecosystems—Case study of Svalbard fjords. Limnology and Oceanography, 66, 273-292.
  • Kalinowska, A., Szopińska, M., Chmiel, S., Kończak, M., Polkowska, Ż., Artichowicz, W., ... & Łuczkiewicz, A. (2020). Heavy metals in a high arctic fiord and their introduction with the wastewater: A case study of adventfjorden-longyearbyen system, Svalbard. Water, 12(3), 794.
  • Kurt, S. (2021). “Importance of the Arctic in the Framework of Air Power Theory”. International Journal of Politics and Security (IJPS), 3(1), 51-73.
  • Labrousse, L., Elvevold, S., Lepvrier, C., & Agard, P. (2008). Structural analysis of high-pressure metamorphic rocks of Svalbard: Reconstructing the early stages of the Caledonian orogeny. Tectonic. 27 (5).
  • Larssen, G., B., Johannessen, E., P., Henningsen, T., Rafaelsen, B. (2008). Svalbard (Spitsbergen) round trip; Post Caledonian Tectonostratigraphic and Paleogeographic Development, Polar Research, 27(3): 298 – 317.
  • Lindholt, L., & Glomsrød, S. (2011). The role of the Arctic in future global petroleum supply (No. 645). Discussion Papers.
  • Majka, J., & Kośmińska, K. (2017). Magmatic and metamorphic events recorded within the Southwestern Basement Province of Svalbard. Arktos, 3(1), 1-7.
  • Marchenko, A. (2014). Experiments on waves in oil and ice, Reseach Council of Norway.
  • Midttomme, K. (2017). Energy Needs of Longyearbyen. 15.
  • Moholdt, G., & Kääb, A. (2012). A new DEM of the Austfonna ice cap by combining differential SAR interferometry with ICESat laser altimetry. Polar Research, 31(1), 18460.
  • Norwegian Ministry of Justice and the Police (2009). Report No. 22 (2008–2009) to the Storting: Svalbard
  • Norwegian Polar Institute / Retrieved 16 August 2021 from https://www.npolar.no/historie/
  • Norwegian Polar Institute / Research. Retrieved 16 August 2021 from https://www.npolar.no/en/research/
  • Nuth, C., Kohler, J., König, M., Von Deschwanden, A., Hagen, J. O., Kääb, A., ... & Pettersson, R. (2013). Decadal changes from a multi-temporal glacier inventory of Svalbard. The Cryosphere, 7(5), 1603-1621.
  • Ny-Ålesund Research Station, (2019). The Research Council of Norway, Oslo, May, 2019 ISBN 978-82-12-03761-8.
  • Ohta, Y. (1992). Recent understanding of the Svalbard basement 1n the light of new radiometric age determinations. Norsk Geologisk Tidsskrift, 72,1-5.
  • Ostreng, W. (2010). Geopolitics and Big Power Interests. Access address: http://www.arctis-search.com/Geopolitics+and+Big+Power+Interests
  • Pedersen, T., (2021). The politics of research presence in Svalbard, The Polar Journal, 413-426.
  • Petrov, O., Morozov, A., Shokalsky, S., Kashubin, S., Artemieva, I. M., Sobolev, N., ... & Smelror, M. (2016). Crustal structure and tectonic model of the Arctic region. Earth-Science Reviews, 154, 29-71.
  • Petrov, O. V., Shokalsky, S. P., Kashubin, S. N., Morozov, A. F., Sobolev, N. N., Pospelov, I. I., ... & Vernikovsky, V. А. (2019). Explanation of the tectonic map of the Arctic. Scientific contributions to the Tectonic Map of the Arctic/eds. OV Petrov, М. Pubel, 8.
  • Piepjohn, K., and W. K. Dallmann. (2014). Stratigraphy of the uppermost Old Red Sandstone of Svalbard (Mimerdalen Subgroup). Polar Res. 33: 19998
  • Piepjohn, K., von Gosen, W., & Tessensohn, F. (2016). The Eurekan deformation in the Arctic: an outline. Journal of the Geological Society, 173(6), 1007-1024.
  • Piepjohn, K., von Gosen, W., Tessensohn, F., Reinhardt, L., McClelland, W. C., Dallmann, W., ... & Harrison, J. C. (2015). Tectonic map of the Ellesmerian and Eurekan deformation belts on Svalbard, north Greenland, and the Queen Elizabeth Islands (Canadian Arctic). arktos, 1(1), 1-7.
  • Research in Svalbard Database. Retrieved 12 August 2021 from https://www.researchinsvalbard.no/about
  • Schlager, U., Jokat, W., Weigelt, E., & Gebhardt, C. (2021). Submarine landslides along the Siberian termination of the Lomonosov Ridge, Arctic Ocean. Geomorphology, 382, 107679.
  • Shubin, D. (2020). Future of Great Power Competition in the Arctic. Journal of Governance and Politics, (1), 13-13.
  • Squire, R., Dodds, K. (2020). Introduction to the Special Issue: Subterranean Geopolitics, Geopolitics, 25(1) 4-16.
  • Statictics Norway (2021). Population of Svalbard. Retrieved 12 July 2021 from https://www.ssb.no/en/befolkning/folketall/statistikk/befolkningen-pa-svalbard
  • Stauffer, P. (2009). US Geological Survey (USGS) Circum-Arctic Resource Appraisal: Estimates of Undiscovered Oil and Gas North of the Arctic Circle.
  • Stolpmann, L., Coch, C., Morgenstern, A., Boike, J., Fritz, M., Herzschuh, U., ... & Grosse, G. (2021). First pan-Arctic assessment of dissolved organic carbon in lakes of the permafrost region. Biogeosciences, 18(12), 3917-3936.
  • Svalbard Treaty, (1920). Retrieved 10 August 2021 from https://arctic-council.org/en/search/?q=svalbard+treaty&submit=
  • Svalbard Integrated Artic Earth Observing System. Retrieved 11 August 2021 from sios-svalbard.org
  • Svalbard Science Forum / Barentsburg. Retrieved 11 August 2021 from www.forskningsradet.no/en/svalbard-science-forum/svalbard-research-planning/research-communities/barentsburg/
  • Svalbard Science Forum. Retrieved 11 August 2021, from www.forskningsradet.no/en/svalbard-science-forum/ssf-info/about-ssf/
  • Sağbansua, L., & Biskek, K. (2006). Strategy, competition and competitiveness relations. Academic Perspective, International Refereed E-Journal of Social Sciences, 9, 1-14.
  • Svalbard Science Forum. Retrieved 12 August 2021 from https://www.forskningsradet.no/en/svalbard-science-forum/ssf-info/about-ssf/
  • Yimibesoglu, S., Oktar, O., Ozsoy, B. (2019). First Turkish Arctic Scientific Expediton, TÜBİTAK Bilim ve Teknik.
  • The University Centre in Svalbard (UNIS). Retrieved 23 August 2021 from https://research.unis.no/
  • The World Factbook, (2022). Svalbard. https://www.cia.gov/the-world-factbook/countries/svalbard/
  • Winsnes, T. S., Heintz, A., & Heintz, N. (1962). Aspects of the geology of Svalbard.
  • Wunder, L. C., Aromokeye, D. A., Yin, X., Richter-Heitmann, T., Willis-Poratti, G., Schnakenberg, A., ... & Friedrich, M. W. (2021). Iron and sulfate reduction structure microbial communities in (sub-) Antarctic sediments. The ISME Journal, 1-18.
  • The Antarctic Treaty, (1959). https://www.scar.org/policy/antarctic-treaty-system/
  • The Research Council of Norway. Retrieved 9 August 2021 from https://www.forskningsradet.no/en/about-the-research-council/what-we-do/
Toplam 83 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Çevre Bilimleri, Beşeri Coğrafya
Bölüm Review Articles
Yazarlar

Şevval Yalçınkaya 0000-0003-2138-9513

Sinan Yirmibeşoğlu 0000-0002-2328-5243

Nurgül Çelik Balcı 0000-0002-4772-2348

Burcu Ozsoy 0000-0003-4320-1796

Yayımlanma Tarihi 25 Aralık 2022
Yayımlandığı Sayı Yıl 2022 Cilt: 9 Sayı: 4

Kaynak Göster

APA Yalçınkaya, Ş., Yirmibeşoğlu, S., Çelik Balcı, N., Ozsoy, B. (2022). A Review on Geological View of Svalbard with its Infrastructure and Strategies. International Journal of Environment and Geoinformatics, 9(4), 24-34. https://doi.org/10.30897/ijegeo.1081659