Skip to main content
Have a personal or library account? Click to login
The role of snow in the thickening processes of lake ice at Lake Abashiri, Hokkaido, Japan Cover

The role of snow in the thickening processes of lake ice at Lake Abashiri, Hokkaido, Japan

Open Access
|Jan 2017

References

  1. Andreas , E. L. and Makshtas , A. P. 1985 . Energy exchange over Antarctic sea ice in the spring . J. Geophys. Res. 90 ( C4 ), 7199 7212 .
  2. Benson , B. J. , Magnuson , J. J. , Jensen , O. P. , Card , V. M. , Hodgkins , G. and co-authors. 2012 . Extreme events, trends, and variability in Northern Hemisphere lake-ice phenology (1855–2005) . Clim. Change 112 , 299 323 .
  3. Bonan , G. B. 1995 . Sensitivity of a GCM simulation to inclusion of inland water surfaces . J. Clim. 8 , 2691 2704 .
  4. Dai , A. 2006 . Recent climatology, variability, and trends in global surface humidity . J. Clim. 19 , 3589 3606 .
  5. Duguay , C. R. , Prowse , T. D. , Bonsal , B. R. , Brown , R. D. , Lacroix , M. P. and co-authors. 2006 . Recent trends in Canadian lake ice cover . Hydrol. Process. 20 , 781 801 .
  6. Ellis , A. W. and Johnson , J. J. 2004 . Hydroclimatic analysis of snowfalls trends associated with the North American Great Lakes . J. Hydrometeorol. 5 , 471 486 .
  7. Grenfell , T. C. and Maykut , G. A. 1977 . The optical properties of ice and snow in the Arctic basin . J. Glaciol. 18 ( 80 ), 445 463 .
  8. IPCC . 2013 . Climate Change 2013. The physical science basis . In: Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (IPCC) (eds. T. F. Stocker , D. Qin , G. K. Plattner , M. M. B. Tignor , S. K. Allen and co-authors ) Cambridge, UK , Cambridge University Press .
  9. Kawamura , T. and Ono , N. 1978 . A study of ice on Lake Tofutsu . Low Temp. Sci. Ser. A 37 , 85 91 . (In Japanese with English summary) .
  10. Kirillin , G. , Leppäranta , M. , Terzhevik , A. , Granin , N. , Bernhardt , J. and co-authors. 2012 . Physics of seasonally ice-covered lakes: a review . Aquat. Sci. 74 , 659 682 . DOI: 10.1007/s00027-012-0279-y .
  11. Leppäranta , M. 1983 . A growth model for black ice, snow ice and snow thickness in subarctic basins . Nordic Hydrol. 14 , 59 70 .
  12. Leppäranta , M. and Kosloff , P. 2000 . The structure and thickness of Lake Pääjärvi ice . Geophysica 36 , 233 248 .
  13. Leppäranta , M. 2009 . Modelling the formation and decay of lake ice . In: The Impact of Climate Change on European Lakes (ed. D.G. George ) Aquatic Ecology Series , Vol. 4 , Springer , Berlin Heidelberg , pp. 63 83 .
  14. Leppäranta , M. 2015 . Structure and properties of lake ice . Freezing of Lakes and the Evolution of their Ice Cover . Springer , Berlin Heidelberg , pp. 51 90 . DOI: 10.1007/978-3-642-29081-7_3 .
  15. Livingstone , D. M. , Adrian , R. , Blenckner , T. , Geoge , D. G. and Weyhenmeyer , G. A. 2010 . Lake ice phenology . In: The Impact of Climate Change on European Lakes (ed. D. G. George ) Aquatic Ecology Series , Vol. 4 , Springer , Berlin, Heidelberg , pp. 51 61 . DOI: 10.1007/978-90-481-2945-4_4 .
  16. Magnuson , J. J. , Robertson , D. M. , Benson , B. J. , Wynne , R. H. , Livingstone , D. M. and co-authors. 2000 . Historical trends in lake and river ice cover in the Northern Hemisphere . Science 289 , 1743 1746 . DOI: 10.1126/science.289.5485.1743 .
  17. Maksym , T. and Jeffries , M. O. 2000 . A one-dimensional percolation model of flooding and snow ice formation on Antarctic sea ice . J. Geophys. Res. 105 , 26313 26331 .
  18. Maykut , G. A. and Untersteiner , N. 1971 . Some results from a time-dependent, thermodynamic model of sea ice . J. Geophys. Res. 76 , 1550 1575 .
  19. Maykut , G. A. 1982 . Large-scale heat exchange and ice production in the central Arctic . J. Geophys. Res. 87 ( C10 ), 7971 7984 .
  20. Michel , B. and Ramseier , R. O. 1971 . Classification of river and lake ice . Can. Geotech. J. 8 ( 1 ), 36 45 .
  21. Muguruma , J. and Kikuchi , K. 1963 . Lake ice investigation at Peters Lake, Alaska . J. Glaciol. 4 , 689 708 .
  22. Ohata , Y. , Toyota , T. and Shiraiwa , T. 2016 . Lake ice formation processes and thickness evolution at Lake Abashiri, Hokkaido, Japan . J. Glaciol. 62 ( 233 ), 563 578 . DOI: 10.1017/jog.2016.57 .
  23. Omstedt , A. 1990 . A coupled one-dimensional sea ice–ocean model applied to a semi-enclosed basin . Tellus 42A , 568 582 .
  24. Perovich , D. K. 1998 . The optical properties of sea ice . In: Physics of Ice-Covered Seas (ed. M. Leppäranta ). Helsinki University Press , Helsinki, pp. 195 230 .
  25. Pirazzini , R. , Vihma , T. , Granskog , M. A. and Cheng , B. 2006 . Surface albedo measurements over sea ice in the Baltic Sea during the spring snowmelt period . Ann. Glaciol. 44 , 7 14 .
  26. Rouse , W. R ., Binyamin , J . , Blanken , P. D ., Bussieres , N . , Duguay , C. R . and co-authors . 2008 . The Influence of Lakes on the Regional Energy and Water Balance of the Central Mackenzie River Basin . In: Cold Region Atmospheric and Hydrogic Studies. The Mackenzie GEWEX Experience (ed. M. K. Woo), Vol 1. Springer , Berlin, Heidelberg , pp. 309–325 . DOI: 10.1007/978-3-540-73936-4_18 .
  27. Saloranta , T. M. 2000 . Modeling the evolution of snow, snow ice and ice in the Baltic Sea . Tellus 52A , 93 108 .
  28. Simmons , A. J. , Willett , K. M. , Jones , P. D. , Thorne , P. W. and Dee , D. P. 2010 . Low-frequency variations in surface atmospheric humidity, temperature, and precipitation: Inferences from reanalyses and monthly gridded observational data sets . J. Geophys. Res. Atmos. 115 , D01110 . DOI: 10.1029/2009JD012442 .
  29. Thiery , W. , Davin , E. L. , Panitz , H.-J. , Demuzere , M. , Lhermitte , S. and co-author. 2015 . The impact of the African Great Lakes on the regional climate . J. Clim. 28 , 4061 4085 .
  30. Toyota , T. , Massom , R. , Tateyama , K. , Tamura , T. and Fraser , A. D. 2011 . Properties of snow overlying the sea ice off East Antarctica in late winter 2007 . Deep Sea Res. II 58 ( 9–10 ), 1137 1148 .
  31. Toyota , T. , Takatsuji , S. , Tateyama , K. , Naoki , K. and Ohshima , K. 2007 . Properties of sea ice and overlying snow in the Southern Sea of Okhotsk . J. Oceanogr. 63 , 393 411 .
  32. Toyota , T. and Wakatsuchi , M. 2001 . Characteristics of the surface heat budget during the ice-growth season in the southern Sea of Okhotsk . Ann. Glaciol. 33 , 230 236 .
  33. Vavrus , S. J. , Wynne , R. H. and Foley , J. A. 1996 . Measuring the sensitivity of southern Wisconsin lake ice to climate variations and lake depth using a numerical model . Limnol. Oceanogr. 41 ( 5 ), 822 831 .
  34. Weyhenmeyer , G. A. , Meili , M. and Livingstone , D. M. 2004 . Nonlinear temperature response of lake ice breakup . Geophys. Res. Lett. 31 , L07203 . DOI: 10.1029/2004GL019530 .
  35. Willett , K. M. , Williams , C. N. Jr , Dunn , R. J. H. , Thorne , P. W. , Bell , S. and co-authors. 2012 . HadlSDH: an updated land surface specific humidity product for climate monitoring . Clim. Past D 8 , 5133 5180 .
  36. Williams , G. , Layman , K. L. and Stefan , H. G. 2004 . Dependence of lake ice covers on climatic, geographic and bathymetric variables . Cold Reg. Sci. Technol. 40 , 145 164 .
  37. Yang , Y. , Leppäranta , M. , Cheng , B. and Li , Z. 2012 . Numerical modelling of snow and ice thickness in Lake Vanajavesi, Finland . Tellus 64A , 1 12 .
  38. Yen , Y. C. 1981 . Review of thermal properties of snow, ice, and sea ice . Cold Reg. Res. Eng. Lab. Rep. 81–10 , 1 27 .
Language: English
Page range: 1391655 - 1391655
Submitted on: Dec 22, 2016
Accepted on: Oct 3, 2017
Published on: Jan 1, 2017
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2017 Yu Ohata, Takenobu Toyota, Alexander D. Fraser, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.