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Land-Ocean Systems in the Siberian Arctic: Dynamics and History
References
Boike, J. and K. Roth (1997) Time Domain Reflectometry as a field method for measuring water content and
soil water electrical conductivity at a continuous permafrost site. Permafrost and Periglacial Processes 8 (in
press).
Boike, 1., W.K.P. van Loon, P.P. Overduin and H.-W. Hubberten (1997) Solute movement in the active layer,
Taymyr, Siberia. In: Proceedings of Int. Symp. on Physics, Chemistry, and Ecology of Seasonally Frozen
Soils, Fairbanks, Alaska, June 10-12, 1997, 127-132.
Boike, J., K. Roth and P.P. Overduin (1998) Thermal and hydrologic dynamics of the active layer at a
continuous permafrost site (Taymyr Peninsula, Siberia). Water Resources Research (in press).
Ershov, E.D., Yu.P. Lebedenko, E.M. Chuvilin and N.S. Naumova. (1992) Mass transfer in freezing saline
soils. In: Proceedings, 1st International Conference on cryopedology, November 10-14, Pushchino, Russia,
115-122.
Hallet, B. (1990) Self-organization in freezing soils: From microscopic ice lenses to patterned ground. Canadian
Journal of Physics 68, 842-852.
Hinkel, K.M. and S.l. Outcalt (1994) Identification of heat transfer processes during soil cooling, freezing, and
thaw in central Alaska. Permafrost and Periglacial Processes 5, 217-235.
Lee, D.R. and J.A. Cherry (1978) A field exercise on groundwater flow using seepage meters and minipiezometers, J. of Geological Education, 27, 6-10.
Ohmura, A. (1982) Climate and energy balance of the arctic tundra. J. of Climatology 2, 65-84.
Outcalt, S.l., F.E. Nelson and K.M. Hinkel (1990) The zero-curtain effect: heat and mass transfer across an
isothermal region in freezing soil. Water Resources Research 26 (7),1509-1516.
Overduin, P. and K.L. Young, (1997) The Effect of Freezing on Soil Moisture and Nutrient Distribution at
Levinson-Lessing Lake, Taymyr Peninsula, Siberia. In: Proceedings of Int. Symp. on Physics, Chemistry,
and Ecology of Seasonally Frozen Soils, Fairbanks, Alaska, June 10-12, 1997,327-333.
Ray, R.J., W.B. Krantz, T.N. Caine and R.D. Gunn (1983) A model for sorted patterned-ground regularity. J.
Glaciol. 29, 317-337.
Pfeiffer, E.-M., A. Gundelwein, T. Nitthen, H. Becker and G. Guggenberger (1996) Characterization of the
organic matter in permafrost soils and sediments of the Taymyr Peninsula/Siberia and Severnaya
Zemlya/Arctic Region. In: Russian German Cooperation: The expedition Taymyr 1995 and the expedition
Kolyma 1995 of the ISSP Pushino group, Bolshiyanov, D.Y. and H.-W. Hubberten (eds.). Reports on Polar
Res. 211, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 46-63.
Smith, M. (1986) The significance of climate change for the permafrost environment. Proceedings of the
Canadian Climate Program Workshop, March 3-5, Geneva Park, Ontario, 67-81.
Washburn, A. (1973) Periglacial processes and environments. St. Martin's Press, New York, 406pp.
Land-Ocean Systems in the Siberian Arctic: Dynamics and History
References
Boike, J. and K. Roth (1997) Time Domain Reflectometry as a field method for measuring water content and
soil water electrical conductivity at a continuous permafrost site. Permafrost and Periglacial Processes 8 (in
press).
Boike, 1., W.K.P. van Loon, P.P. Overduin and H.-W. Hubberten (1997) Solute movement in the active layer,
Taymyr, Siberia. In: Proceedings of Int. Symp. on Physics, Chemistry, and Ecology of Seasonally Frozen
Soils, Fairbanks, Alaska, June 10-12, 1997, 127-132.
Boike, J., K. Roth and P.P. Overduin (1998) Thermal and hydrologic dynamics of the active layer at a
continuous permafrost site (Taymyr Peninsula, Siberia). Water Resources Research (in press).
Ershov, E.D., Yu.P. Lebedenko, E.M. Chuvilin and N.S. Naumova. (1992) Mass transfer in freezing saline
soils. In: Proceedings, 1st International Conference on cryopedology, November 10-14, Pushchino, Russia,
115-122.
Hallet, B. (1990) Self-organization in freezing soils: From microscopic ice lenses to patterned ground. Canadian
Journal of Physics 68, 842-852.
Hinkel, K.M. and S.l. Outcalt (1994) Identification of heat transfer processes during soil cooling, freezing, and
thaw in central Alaska. Permafrost and Periglacial Processes 5, 217-235.
Lee, D.R. and J.A. Cherry (1978) A field exercise on groundwater flow using seepage meters and minipiezometers, J. of Geological Education, 27, 6-10.
Ohmura, A. (1982) Climate and energy balance of the arctic tundra. J. of Climatology 2, 65-84.
Outcalt, S.l., F.E. Nelson and K.M. Hinkel (1990) The zero-curtain effect: heat and mass transfer across an
isothermal region in freezing soil. Water Resources Research 26 (7),1509-1516.
Overduin, P. and K.L. Young, (1997) The Effect of Freezing on Soil Moisture and Nutrient Distribution at
Levinson-Lessing Lake, Taymyr Peninsula, Siberia. In: Proceedings of Int. Symp. on Physics, Chemistry,
and Ecology of Seasonally Frozen Soils, Fairbanks, Alaska, June 10-12, 1997,327-333.
Ray, R.J., W.B. Krantz, T.N. Caine and R.D. Gunn (1983) A model for sorted patterned-ground regularity. J.
Glaciol. 29, 317-337.
Pfeiffer, E.-M., A. Gundelwein, T. Nitthen, H. Becker and G. Guggenberger (1996) Characterization of the
organic matter in permafrost soils and sediments of the Taymyr Peninsula/Siberia and Severnaya
Zemlya/Arctic Region. In: Russian German Cooperation: The expedition Taymyr 1995 and the expedition
Kolyma 1995 of the ISSP Pushino group, Bolshiyanov, D.Y. and H.-W. Hubberten (eds.). Reports on Polar
Res. 211, Alfred Wegener Institute for Polar and Marine Research, Bremerhaven, 46-63.
Smith, M. (1986) The significance of climate change for the permafrost environment. Proceedings of the
Canadian Climate Program Workshop, March 3-5, Geneva Park, Ontario, 67-81.
Washburn, A. (1973) Periglacial processes and environments. St. Martin's Press, New York, 406pp.
