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1.
#J12666251175 // Shengtai xuebao, 2014. Vol. 34, N 8.-С.2061-2067

2.
A regional-scale land surface parameterization based on areally-averaged hydrological conservation equations // Hydrol. Sci. J., 1998. Vol. 43, N 4.-С.611-631

3.
Larocque M. A simple model for estimating soil temperatures in northern climates // Can. J. Soil. Sci., 1993. Vol. 73, N 4.-С.635

4.
Hinkel Kenneth M. Active layer thaw rate at a boreal forest site in Central Alaska, USA // Arct. and Alp. Res., 1995. Vol. 27, N 1.-С.72-80

5.
Hinkel Kenneth M. Active layer thaw rate at a boreal forest site in Central Alaska, USA // Arct. and Alp. Res., 1995. Vol. 27, N 1.-С.72-80

6.
Paterson L. An investigation of soil heating by natural gas pipelines in Southern Ontario // Can. J. Soil Sci., 1999. Vol. 79, N 4.-С.647

7.
Gilichinsky David A. Classification of seasonally freezing soils by their thermal regime // Joint Russ.-Amer. Semin. Cryopedol. and Global Change, Pushchino, 15-16 Nov., 1992. -Pushchino, 1993.-С.38-58

8.
Bootsma A. Comparison of sampling and analysis procedures for classifying the soil thermal regime in Canada // Soil Sci., 1989. Vol. 147, N 2.-С.140-147

9.
Degradation of moist soil aggregates by rapid temperature rise under low intensity fire // Plant and Soil, 2013. Vol. 362, N 1-2.-С.335-344

10.
Balisky Allen C. Distinction of soil thermal regimes under various experimental vegetation covers // Can. J. Soil Sci., 1993. Vol. 73, N 4.-С.411-420

11.
Mowjood M.I.Mohammed Effect of convection in ponded water on the thermal regime of a paddy field // Soil Sci., 1997. Vol. 162, N 8.-С.583-587

12.
Mowjood M.I.Mohammed Effect of convection in ponded water on the thermal regime of a paddy field // Soil Sci., 1997. Vol. 162, N 8.-С.583-587

13.
Hayhoe H. Effect of site disturbance on the soil thermal regime near Fort Simpson, Northwest Territories, Canada // Arct. and Alp. Res., 1993. Vol. 25, N 1.-С.37-44

14.
Effects of bottom boundary placement on subsurface heat storage: Implications for climate model simulations // Geophys. Res. Lett., 2007. Vol. 34, N 2.-С.L02703, 2/1-L02702/5

15.
Davis J.G. Elevation and latitude impacts on soil temperature and duration and distribution of frost and snowfall in Colorado // Proceedings of the International Symposium on Physics, Chemistry, and Ecology of Seasonally Frozen Soils, Fairbanks, Alaska, June 10-12, 1997. -Hanover (N.H.), 1997.-С.42-48

16.
Soyer I. Etude experimentale de parametres thermiques du sol et comparaison de diverses methodes // Entropie, 1989. Vol. 25, N 152.-С.3-8

17.
Rautaray H.K. Evaluation of thermally promoted reaction products of some selected phosphate rocks from India // Fert. Res., 1994. Vol. 38, N 3.-С.189-197

18.
Pavlov A.V. Evolution of soil and ground thermal state in permafrost in connection with contemporary global changes of climate // Joint Russ.-Amer. Semin. Cryopedol. and Global Change, Pushchino, 15-16 Nov., 1992 Post-Semin. Proc.. -Pushchino, 1993.-С.170-178

19.
Heilman J.L. Fetch requirements for Bowen ratio measurements of latent and sensible heat fluxes // Agr. and Forest Meteorol., 1989. Vol. 44, N 3-4.-С.261-273

20.
Heat transfer in the soil during very low-intensity experimental fires: the role of duff and soil moisture content // Int. J. Wildland Fire, 1994. Vol. 4, N 4.-С.225-237

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