GROWTH OF LANDFAST ICE AND ITS THERMAL INTERACTION WITH BOTTOM SEDIMENTS IN THE BRAGANZAVÄGEN GULF (WEST SPITSBERGEN)
Abstract and keywords
Abstract (English):
The results of ice and hydrological studies of the shallow Bay of Braganzav{å}gen (Van Mayen Fjord Bay, West Spitsbergen Island) in March 2016 and 2018, supplemented with model calculations using a thermodynamic model, are presented. The model uses both known methods of localizing the phase transition region - the classical (frontal) for fast ice and in an extended area (two-phase zone) for bottom sediments. For real atmospheric conditions of winter 2015-2016, the new qualitative features of the process of ice formation in the adjacent layers of sea water and bottom soil are revealed. However, due to insufficient knowledge of the heat and mass transfer properties of bottom sediments, the question of quantitative estimates of the process remains open and can be clarified in special field experiments.

Keywords:
West Spitsbergen, bottom sediments, energy and mass transport, ice formation, shallow-water zone, sub-ice water layer
References

1. Bergh, J. (2004) , Measured and modelled tidally driven mean circulation under ice cover in Van Mijenfjorden, M.Sc. thesis, Thesis, Department of Oceanography, Göteburg University, Göteburg, Sweden

2. Bogorodskii, P. V., A. V. Marchenko, et al. (2010) , Formation of fast ice and its impact on the coastal zone of the Arctic seas, Oceanology, 50, no. 3, p. 345-354, https://doi.org/10.1134/S0001437010030033 (in Russian)

3. Bogorodskii, P. V., A. S. Grubiy, V. Y. Kustov, et al. (2018) , Growth of the fast ice and its influence on the freezing of bottom sediments in the Buor-Khaya Bay (Laptev Sea) coastal zone, Ice and Snow, 58, no. 2, p. 213-224, https://doi.org/10.15356/2076-6734-2018-2-213-224

4. Cheverov, V. G., I. Yu. Vidyapin, V. E. Tumskoj (2007) , The composition and properties of thermokarst lagoons deposits at the Bykovsky Peninsula, Earth Cryosphere, 11, no. 3, p. 44-50

5. Chuvilin, E. M., B. A. Buhanov, V. E. Tumskoj, et al. (2013) , Thermal conductivity of bottom sediments in the region of Buor-Haya Bay (shelf of the Laptev Sea), Earth Cryosphere, 17, no. 2, p. 32-40

6. Cottier, F. R., F. Nilsen, R. Skogseth, et al. (2010) , Arctic fjords: a review of the oceanographic environment and dominant physical processes, Fjord Systems and Archives, Geological Society Special Publication, J. A. Howe, W. E. N. Austin, M. Forwick, M. Paetzel (Eds.), no. 344, p. 35-50, https://doi.org/10.1144/SP344.4

7. Foreman, M. G. G. (1977) , Manual for tidal heights analysis and prediction. Pacific Marine Science Report 77-10, 97 pp., Institute of Ocean Sciences, Patricia Bay, Sidney, BC

8. Gerland, S., R. Hall (2006) , Variability of fast ice thickness in Spitsbergen fjords, Ann. Glaciology, 44, p. 231-239, https://doi.org/10.3189/172756406781811367

9. Grishin, P. A. (1963) , The freezing temperature of saline soils, The works of the SOYUZMORNIIproekt, 3, no. 9, p. 84-91 (in Russian)

10. Hoyland, K. (2009) , Ice thickness, growth and salinity in Van Mijenfjorden, Svalbard, Norway, Polar Research, 28, p. 339-352, https://doi.org/10.1111/j.1751-8369.2009.00133.x

11. Khimenkov, A. N., A. V. Brushkov (2003) , Oceanic Cryolithogenesis, 336 pp., Nauka, Moscow (in Russian)

12. Kowalik, Z., A. Marchenko, et al. (2015) , Tidal currents in the western Svalbard Fjords, Oceanologia, 57, p. 318-327, https://doi.org/10.1016/j.oceano.2015.06.003

13. Makshtas, A. P. (1984) , Heat Balance of Arctic Ice in the Winter Period, 66 pp., Hydrometeoizdat, Leningrad (in Russian)

14. Marchenko, A., Z. Kowalik (2017) , Investigation of ocean currents in Navigational Straits of Spitsbergen, Proc. of 12th International Conference on Marine Navigation and Safety of Sea Transportation, TransNav 2017, 21-23 June 2017, p. 267-272, CRC Press, London, https://doi.org/10.1201/9781315099132-33

15. Marchenko, A. V., E. G. Morozov (2013) , Asymmetric tide in Lake Vallunden (Spitsbergen), Nonlinear Processes in Geophysics, 20, p. 935-944, https://doi.org/10.5194/npg-20-935-2013

16. Marchenko, A., I. Langen, A. Shestov (2009) , Hydrological characteristics of a narrow and shallow part of Van Mijen Fjord on Spitsbergen, Proc. Int. Offshore & Polar Eng. Conf., Osaka, Japan, 21-26 June 2009, p. 649-657, ISOPE, Osaka, Japan

17. Marchenko, A., A. Shestov, et al. (2011) , Field studies of sea water and ice properties in Svalbard fjords, Proc. 21th Int. Conf. on Port and Ocean under Arctic Conditions, p. POAC11-148, POAC, Montreal, Canada (ISSN 2077-7841)

18. Nazintsev, Yu. L., V. V. Panov (2000) , Phase Composition and Thermal Characteristics of the Sea Ice, 83 pp., Leningrad, Gidrometeoizdat (in Russian)

19. Nazintsev, Yu. L., V. V. Panov (2000) , Phase Composition and Thermal Characteristics of the Sea Ice, 83 pp., Leningrad, Gidrometeoizdat (in Russian)

20. Shestov, A., D. Wrangborg, A. Marchenko (2015) , Hydrology of Braganzav{å}gen under ice-covered conditions, Proc. 23rd Int. Conf. on Port and Ocean Eng. under Arctic Conditions (POAC) June 14-18, 2015 Trondheim, Norway, p. 11, POAC15-00181, Trondheim, Norway

21. Stoylen, E., I. Fer (2014) , Tidally induced inertial motion in an Arctic fjord, Nonlinear Processes in Geophysics, 21, p. 87-100, https://doi.org/10.5194/npg-21-87-2014

22. Vasiliev, V. I., A. M. Maksimov, et al. (1997) , Heat and Mass Transfer in Freezing and Thawing Grounds, 224 pp., Nauka, Moscow (in Russian)

23. Vasiliev, A. A., I. D. Streletskaya, et al. (2011) , Coastal permafrost evolution of western Yamal in context of climate change, Earth Cryosphere, XV, no. 2, p. 56-64 (in Russian)

24. Yurik, Ya. V. (1976) , Main Physical and Mechanical Characteristics of Deposits Properties. Calculation Tables, 216 pp., Budivel'nik Publ., Kiev

25. Zhigarev, L. A. (1997) , The Cryolitosperic Zone of Ocean, 320 pp., Publishing of Moscow State University, Moscow (in Russian)

Login or Create
* Forgot password?