Abstract
This work summarizes the archived data of geocryological and hydrogeological conditions in the west of Nordenskiold Land on the Spitsbergen Archipelago. The historical data obtained in the Soviet period during coal exploration are reviewed together with the results of our own studies performed as part of the Russian Scientific Arctic Expedition on Spitsbergen (RAE-S) in 2016–2020. With respect to geocryology, the region is assigned to the zone of continuous permafrost. The thickness of rocks and sediments with temperatures below zero is about 100 m near the coast and increases to 540 m on watersheds. The mean annual ground temperature near the zero-amplitude depth varies from –3.6 to –2.2°C. Below this layer, the temperature curve in the top part of the section tends to deviate toward positive temperatures, reflecting the modern cycle of climate warming. From the hydrogeological point of view, the area belongs to the marginal zone of the West Spitsbergen cryoadartesian basin. Seawater intrusions near the coast form saline subpermafrost aquifers, including those with temperatures below zero, reflecting the seawater (sodium chloride) composition and hydraulic heads close to sea level. Fresh and slightly saline (sodium bicarbonate on the east coast of Grønfjorden and magnesium–calcium sulfate in gypsum-bearing deposits on the west coast) subpermafrost water with hydraulic heads reaching 100 m above sea level is fed by water-saturated ice in the deep layers of large glaciers.
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REFERENCES
Akerman, J. and Boardman, J., Periglacial forms of Svalbard: a review, in Periglacial Processes and Landforms in Britain and Ireland, Cambridge, UK: Cambridge Univ. Press, 1987, pp. 9–25.
Antsiferova, A.R., Analytical review of hydrometeorological characteristics of the West Spitsbergen (as reported by Barentsburg SMO), in Sovremennoe sostoyanie prirodnoi sredy arkhipelaga Shpitsbergen (Present State of the Environment on the Spitsbergen Archipelago), Siekkinen, E.D. and Chaus, O.M., Eds., St. Petersburg: AANII, 2020, pp. 135–149.
Belousov, K.N., Tsurikova, N.M., Gradin, B.E., and Shishlov, S.B., The role of relief in the formation of the modern natural landscapes of the Spitsbergen Archipelago (on the example of the West Spitsbergen Island), Gidrogeologiya, inzhenernaya geologiya, geomorfologiya arkhipelaga Shpitsbergen (Hydrogeology, Engineering Geology, and Geomorphology of the Spitsbergen Archipelago), Neizvestnii, Ya.V. and Semevskii, D.V., Eds., Leningrad: Sevmorgeologiya, 1983, pp. 34–40.
Biskaborn, B.K., Smith, S.L., Noetzli, J., Matthes, H., Vieira, G., Streletskiy, D.A., Schoeneich, P., Romanovsky, V.E., Lewkowicz, A.G., Abramov, A., Allard, M., Boike, J., Cable, W.L., Christiansen, H.H., Delaloye, R., Diekmann, B., Drozdov, D., Etzelmüller, B., Grosse, G., Guglielmin, M., Ingeman-Nielsen, T., Isaksen, K., Ishikawa, M., Johansson, M., Johannsson, H., Joo, A., Kaverin, D., Kholodov, A., Konstantinov, P., Kröger, T., Lambiel, C., Lanckman, J.-P., Luo, D., Malkova, G., Meiklejohn, I., Moskalenko, N., Oliva, M., Phillips, M., Ramos, M., Britta, A., Sannel, K., Sergeev, D., Seybold, C., Skryabin, P., Vasiliev, A., Wu, O., Yoshikawa, K., Zheleznyak, M., and Lantuit, H., Permafrost is warming at a global scale, Nat. Commun., 2019, vol. 10, no. 1, p. 264. https://doi.org/10.1038/s41467-018-08240-4
Blott, S.J. and Pye, K., GRADISTAT: a grain size distribution and statistics package for the analysis of unconsolidated sediments, Earth Surf. Processes Landforms, 2001, vol. 26, no. 11, pp. 1237–1248. https://doi.org/10.1002/esp.261
Brown, J., Hinkel, K.M., and Nelson, F.E., The circumpolar active layer monitoring (CALM) program: historical perspectives and initial results, Polar Geogr., 2000, vol. 24, no. 3, pp. 165–258. https://doi.org/10.1080/10889370009377698
Chernov, R.A. and Murav’ev, A.Ya., Current changes of glacier area in the western part of the Nordenskiöld Land (Spitsbergen Archipelago), Led Sneg. 2018, vol. 58, no. 4, pp. 462–472. https://doi.org/10.15356/2076-6734-2018-4-462-472
Demidov, N.E., Karaevskaya, E.S., Verkulich, S.R., Nikulina, A.L., and Savatyugin, L.M., The first results of permafrost observation on the cryosphere of the test site of the Russian Research Center at the Spitsbergen Archipelago (RRCSp), Probl. Arkt. Antarkt., 2016, vol. 1, no. 4 (110), pp. 67–79.
Demidov, V.E. and Demidov, N.E., Cryogenic processes and phenomena and the related hazards in the vicinity of the Russian Barentsburg mine on the Spitsbergen Archipelago, Georisk, 2019, vol. 8, no. 4, pp. 48–62.
Demidov, N., Wetterich, S., Verkulich, S., Ekaykin, A., Meyer, H., Anisimov, M., Schirrmeister, L., Demidov, V., and Hodson, A.J., Geochemical signatures of pingo ice and its origin in Grøndalen, West Spitsbergen, The Cryosphere, 2019, vol. 13, no. 11, pp. 3155–3169. https://doi.org/10.5194/tc-13-3155-2019
Førland, E.J., Hanssen-Bauer, I., and Nordli, P.Ø., Climate statistics and longterm series of temperature and precipitation at Svalbard and Jan Mayen, in Det Norske Meteorol. Inst. Klima Rep., 1997, no. 21.
Glyatsiologiya Shpitsbergena (The Glaciology of Spitsbergen), Kotlyakov, V.M., Ed., Moscow: Nauka, 1985.
Gramberg, I.S., Shkola, I.V., Bro, E.G., Shekhodanov, V.A., and Armishev, A.M., Parametric boreholes on the Barents and Kara Sea islands, Sov. Geol., 1985, no. 1, pp. 95–98.
Hodson, A.J., Nowak, A., Senger, K., Redeker, K.R., Christiansen, H.H., Jessen, S., Hornum, T.M., Betlem, P., Thornton, S.F., Turchyn, A., Olaussen, S., and Marca, A., Open system pingos as hotspots for sub-permafrost methane emission in Svalbard, The Cryosphere Discus., 2020, pp. 1–21.
Humlum, O., Instanes, A., and Sollid, J.L., Permafrost in Svalbard: a review of research history, climatic background and engineering challenges, Polar Res., 2003, vol. 22, pp. 191–215.
Kasatkin, A.D. and Neizvestnov, Ya.V., Problems of water supply to the Soviet mines on the West Spitsbergen Island, in Gidrogeologiya, inzhenernaya geologiya, geomorfologiya arkhipelaga Shpitsbergen (Hydrogeology, Engineering Geology, and Geomorphology of the Spitsbergen Archipelago), Neizvestnii, Ya.V. and Semevskii, D.V., Eds., Leningrad: Sevmorgeologiya, 1983, pp. 67–82.
Koshurnikov, A.V., Demidov, N.E., Gunar, A.Yu., Zheltenkova, N.V., Krivosheya, K.V., Pogorelov, A.A., and Zykov, Yu.D., Information potential of geophysical prospecting methods in tackling geocryological problems of the land and sea shelf, Ross. Polyar. Issled., 2019, no. 2, pp. 17–22.
Krasil’shchikov, A.A., Stratigrafiya i paleotektonika dokembriya - rannego paleozoya Shpitsbergena (Stratigraphy and Paleotectonics of the Precambrian – Early Paleozoic of Spitsbergen) Sokolov, V.N., Ed., Leningrad: Nedra, 1973.
Kurkov, A.V. and Neizvestnov, Ya.V., Water-bearing systems of the Spitsbergen Archipelago, in Gidrogeologiya, inzhenernaya geologiya, geomorfologiya arkhipelaga Shpitsbergen (Hydrogeology, Engineering Geology, and Geomorphology of the Spitsbergen Archipelago), Neizvestnii, Ya.V. and Semevskii, D.V., Eds., Leningrad: Sevmorgeologiya, 1983, pp. 41–53.
Lavrent’ev, I.I., Structure and dynamics changes of the Frithiof glacier (Spitsbergen) during the past 70 years according to remote study data, Vestn. Mosk. Univ., Ser. 5: Geogr., 2008, no. 6, pp. 45–50.
Livshits, Yu.Ya., Paleogenovye otlozheniya i platformennaya struktura Shpitsbergena (Paleogen Deposits and Platform Structutre of Spitsbergen). Leningrad: Nedra, 1973.
Lotsiya Barentseva morya. Ch. I. Ostrova Shpitsbergen i ostrov Medvezhii (Sailing Directions for the Barents Sea. Pt. 1. Spitsbergen Islands and Medvezhii Island), St.-Petersburg: Gl. upr. navigatsii i okeanog. MO RF, 2001.
Matsuoka, N., Sawaguchi, S., and Yoshikawa, K., Present-day periglacial environments in Central Spitsbergen, Svalbard, Geogr. Rev. Jpn., 2004, vol. 77, no. 5, pp. 276–300.
Mavlyudov, B.R., Studies of the Tavle glacier and its internal drainage canals, Nordenskiöld Land, Spitsbergen, in Kompleksnye issledovaniya prirody Shpitsbergena (Comprehensive Studies of Spitsbergen Nature), Apatity: KNTs RAN, 2007, vol. 7, pp. 187–201.
Mavlyudov, B.R., Savatyugin, L.M., and Solov’yanova, I.Yu., The reaction of Nordenskiöld Land glaciers (Spitsbergen) to climate change, Probl. Arkt. Antarkt., 2012, no. 1, pp. 67–77.
Misnik, I.Yu. and Belousov, K.N., Distinctive engineering geological conditions of the Soviet mine area on the West Spitsbergen Island, in Gidrogeologiya, inzhenernaya geologiya, geomorfologiya arkhipelaga Shpitsbergen (Hydrogeology, Engineering Geology, and Geomorphology of the Spitsbergen Archipelago), Neizvestnii, Ya.V. and Semevskii, D.V., Eds., Leningrad: Sevmorgeologiya, 1983, pp. 16–33.
Nelson, F.E., Shiklomanov, N.I., Christiansen, H.H., and Hinkel, K.M., The circumpolar-active-layer-monitoring (CALM) workshop: introduction, Permafrost Periglacial Proc., 2004, vol. 15, no. 2, pp. 99–101.
Obidin, N.I., New data on groundwater and permafrost of the Soviet mines on the Spitsbergen Island revealed by studies of 1952–1954, Tr. NIIGA, 1958, vol. 85, no. 9, pp. 129–140.
Obshchaya geokriologiya (General Geocriology), Ershov, E.D., Ed., Moscow: MGU, 2002, pt. 3, pp. 182–203.
Oledenenie Shpitsbergena (Sval’barda) (The Glaciation of Spitsbergen (Svalbard)), Troitskii, L.S., Zinger, E.M., Koryakin, V.S., et al., Moscow: Nauka, 1975.
Postnov, I.S., Mineralized waters of Spitsbergen, in Gidrogeologiya, inzhenernaya geologiya, geomorfologiya arkhipelaga Shpitsbergen (Hydrogeology, Engineering Geology, and Geomorphology of the Spitsbergen Archipelago), Neizvestnii, Ya.V. and Semevskii, D.V., Eds., Leningrad: Sevmorgeologiya, 1983, pp. 5–15.
Romanovskii, N.N., Podzemnye vody kriolitozony (Cryolithozone Groundwater), Vsevolozhskii, V.A, Eds., Moscow: MGU, 1983.
Romashova, K.V., Chernov, R.A., and Vasilevich, I.I., Studies of glacial river runoff in the Grøn-fjord Bay basin (West Spitsbergen) Probl. Arkt. Antarkt., 2019, vol. 65, no. 1, pp. 34–45. https://doi.org/10.30758/0555-2648-2019-65-1-34-45
Rossiiskie geologicheskie issledovaniya na Shpitsbergene 1962–1996 gg. (Russian Geological Research on Spitsbergen in 1962–1996), Krasil’shchikov, A.A, Ed., St. Petersburg: VNII Okeanologiya, 1998.
Salvigsen, O. and Elgersma, A., Large-scale karst features and open taliks at Vardeborgsletta, Outer Isfjorden, Svalbard, Polar Res, 1985, vol. 3, no. 2, pp. 145–153.
Sharin, V.V., Okunev, A.S., and Lazareva, E.I., Geomorfologicheskaya karta tsentral’noi chasti ostrova Zapadnyi Shpitsbergen (Zemlya Nordenshel’da, Arkhipelag Spitsbergen) (Geomorphological Map of the Central Part of the West Spitsbergen Island (Nordenskiöld Land, Spitsbergen Archipelago)), Gusev, E.A, Ed., St. Petersburg: Renova, 2012.
Sirotkin, A.N., Marin, Yu.B., Kuznetsov, N.B., Korobova, G.A., and Romanyuk, T.V., The age of Spitsbergen basement consolidation: U–Pb dating of detrital zircons from the Upper Precambrian and Lower Carboniferous clastic rocks of the northwestern part of Nordenskiöld Land, Dokl. Earth Sci., 2017, vol. 477, pp. 1282–1286. https://doi.org/10.1134/S1028334X17110253
Terekhov, A.V., Tarasov, G.V., Sidorova, O.R., Demidov, V.E., Anisimov, M.A., and Verkulich, S.R., Estimate of the mass balance for the Aldegonda glacier (West Spitsbergen) in 2015–2018 based on Arctic DEM model, geodesic and glaciological data, Led Sneg. 2020, vol. 60, no. 2, pp. 192–200. https://doi.org/10.31857/S207667342002003
Tret’yakov, M.V., Distinctive features of river runoff at the Spitsbergen Archipelago, in Geograficheskie i ekologicheskie aspekty gidrologii: Tr. Nauch. sessii, posv. 90-letiyu kafedry gidrologii sushi SPbGU, g. Sankt-Peterburg, 26–27 marta 2008 g. (Geographic and Ecologic Aspects of Hydrology. Proc. Sci. Session on the 90th Anniversary of the Chair of Land Hydrology, St. Petersburg State Univ., St. Petersburg, 26–27 March 2008), St. Petersburg: Izd-vo SPbGU, 2010, pp. 217–221.
Vasilenko, E.V., Glazovskii, A.F., Macheret, Yu.Ya., Navarro, F.Kh., Tokarev, M.Yu., Kalashnikov, A.Yu., Miroshnichenko, D.E., and Reznikov, D.S., Radiophysical studies of the Aldegonda glacier in 1999, in Materialy glyatsiologicheskikh issledovanii (Materials of Glaciological Research), 2001, no. 99, pp. 86–99.
Verba, M.L., Collector properties of the sediment shield rocks of the Spitsbergen Archipelago, Neftegaz. Geol. Teor. Prakt., 2013, vol. 8, no. 1.
Verba, M.L., Manifestations of natural hydrocarbons in the sediment shield of Spitsbergen, Neftegaz. Geol. Teor. Prakt., 2007, vol. 2.
Vtyurin, B.I., Cryogenic structure of the loose deposits of Spitsbergen, in Materialy glyatsiologicheskikh issledovanii (Materials of Glaciological Research), 1990, no. 70, pp. 43–49.
Vtyurin, B.I., Underground ice of Spitsbergen, in Materialy glyatsiologicheskikh issledovanii (Materials of Glaciological Research), 1989, no 65, pp. 69–75.
ACKNOWLEDGMENTS
We thank the heads of the RAE-S for organizing field works and laboratory studies at the Laboratory for Chemical Analysis in Barentsburg and to A.S. Paramzin for aerial photography.
Funding
This work was supported by the Russian Scientific Foundation, project no. 19-77-10066. N.E. Demidov’s trip to the Alfred Wegener Institute (Potsdam, Germany) was supported by a project of the Geo-X Network. The participation of S. Wetterich was supported by the German Research Society (DFG), project no. WE4390/7-1.
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Translated by I. Bel’chenko
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Demidov, N.E., Borisik, A.L., Verkulich, S.R. et al. Geocryological and Hydrogeological Conditions of the Western Part of Nordenskiold Land (Spitsbergen Archipelago). Izv. Atmos. Ocean. Phys. 56, 1376–1400 (2020). https://doi.org/10.1134/S000143382011002X
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DOI: https://doi.org/10.1134/S000143382011002X