estimation in Altai-Sayan mountainous country. Sustain Dev Mt Territ 2(8):51–56 (in Russian)
Kirsta YB, Puzanov AV (2015) System-analytical modeling of mountain rivers runoff. In: Fundamental
Problems of Water and Water Resources: Proceedings
of IV Russian Scientific Conference – Water Problems
Institute RAS, Moscow, pp 73–76 (in Russian)
Kirsta YB, Puzanov AV (2016) Modeling of hydrochemical composition of mountain river runoff: runoff of
nitrogen mineral forms. News of the Samara scientific
center of RAS 18(2):96–100 (in Russian)
Kirsta YB, Puzanov AV, Lovtskaya OV, Lubenets LF,
Kuznyak YE, Pakhotnova AY (2012) Simulation
mathematical model of runoff for mid-size and small
rivers in mountain territories. News of the Samara
Scientific Center of RAS 14(1):2334–2342 (in Russian)
KochÁM, Cherie N (2013) SWAT-modeling of the impact
of future climate change on the hydrology and the water
resources in the upper Blue Nile river basin, Ethiopia.
In: Proceedings of the 6th International Conference on
Water Resources and Environment Research, ICWRER
2013, Koblenz, Germany, 428–523
Konovalova NV, Korobov VB, Vasil’ev LU (2006)
Interpolation of climatic data using GIS technologies.
Russ Meteorol Hydrol 5:35–40 (in Russian)
Koren V, Reed S, Smith M, Zhang Z, Seo DJ (2004)
Hydrology laboratory research modeling system (HLRMS) of the US National Weather Service. J Hydrol
291:297–318
Loucks DP, van Beek E, with contributions from
Stedinger JR, Dijkman JPM, Villars MT (2005) Water
Resources Systems. An Introduction to Methods,
Models and Applications. UNESCO Publishing, Paris,
Planning and Management, p 680
Moriasi DN, Arnold JG, Van Liew MW, Bingner RL,
Harmel RD, Veith TL (2007) Model evaluation guidelines for systematic quantification of accuracy in
watershed simulation. Trans ASABE 50(3):885–900
Refsgaard J (1996) Terminology, modelling protocol and
classification of hydrological model codes. In: Water
Science and Technology Library, Vol. 22. Distributed
hydrological modeling / M.B. Abbott and J.C.
Refsgaard (Eds.). Kluwer Academic Publishers, Dordrecht, The Netherlands, pp 17–39
Revyakin VS, Galakhov VP, Goleshchikhin VP (1979)
Mountain-glacial basins of Altai. Tomsk State University Press, Tomsk, p 310 (in Russian)
Rumynin VG (2013) Subsurface solute transport models
and case histories, with applications to radionuclide
migration. Springer, Dordrecht, Heidelberg, London,
New York, p 840
Selegey VV, Selegey TS (1978) Teletskoye Lake.
Gidrometeoizdat, Leningrad, p 143 (in Russian)
Sene K (2008) Flood warning, forecasting and emergency
response. Springer, Berlin, London, p 303
Sevast'yanov VV (1998) Climate of high-mountain
regions of Altai and Sayan. Publishing house of
Tomsk University, Tomsk, p 201 (in Russian)
Singh J, Knapp HV, Demissie M (2004) Hydrologic
modeling of the Iroquois River watershed using HSPF
and SWAT / ISWS CR 2004–08. Champaign, Ill.:
Illinois State Water Survey, 2004. URL: https://swat.
tamu.edu/media/90101/singh.pdf
Singh M, Singh RB, Hasan MI (eds) (2014) Landscape
ecology and water management: proceedings of IGU
Rohtak conference, vol 2, Springer, Tokyo
Tardy Y, Bustillo V, Boeglin JL (2004) Geochemistry
applied to the watershed survey: hydrograph separation,
erosion and soil dynamics. A case study: the basin of the
Niger River, Africa. Appl Geochem 19:469–518
Todorovski L, Dzeroski S, Langley P, Potter C (2003)
Using equation discovery to revise an Earth ecosystem
model of the carbon net production. Ecol Model
170:141–154
Tsimbaley YM (2011) Landscape map of Altai Krai.
Maps / Y.M. Tsimbaley using the materials from L.N.
Purdik, V.I. Bulatov, A.A. Kovanova, and with the
participation of D.V. Chernykh, S.B. Smirnov and O.
M. Vinokurova. Library materials of IWEP SB RAS
(in Russian)
Vinogradov YB, Vinogradova TA (2010) Mathematical
modeling in hydrology. “ACADEMIA” Publisher,
Moscow, p 304 (in Russian)
100
Y. Kirsta and A. Puzanov
Kirsta YB, Puzanov AV (2015) System-analytical modeling of mountain rivers runoff. In: Fundamental
Problems of Water and Water Resources: Proceedings
of IV Russian Scientific Conference – Water Problems
Institute RAS, Moscow, pp 73–76 (in Russian)
Kirsta YB, Puzanov AV (2016) Modeling of hydrochemical composition of mountain river runoff: runoff of
nitrogen mineral forms. News of the Samara scientific
center of RAS 18(2):96–100 (in Russian)
Kirsta YB, Puzanov AV, Lovtskaya OV, Lubenets LF,
Kuznyak YE, Pakhotnova AY (2012) Simulation
mathematical model of runoff for mid-size and small
rivers in mountain territories. News of the Samara
Scientific Center of RAS 14(1):2334–2342 (in Russian)
KochÁM, Cherie N (2013) SWAT-modeling of the impact
of future climate change on the hydrology and the water
resources in the upper Blue Nile river basin, Ethiopia.
In: Proceedings of the 6th International Conference on
Water Resources and Environment Research, ICWRER
2013, Koblenz, Germany, 428–523
Konovalova NV, Korobov VB, Vasil’ev LU (2006)
Interpolation of climatic data using GIS technologies.
Russ Meteorol Hydrol 5:35–40 (in Russian)
Koren V, Reed S, Smith M, Zhang Z, Seo DJ (2004)
Hydrology laboratory research modeling system (HLRMS) of the US National Weather Service. J Hydrol
291:297–318
Loucks DP, van Beek E, with contributions from
Stedinger JR, Dijkman JPM, Villars MT (2005) Water
Resources Systems. An Introduction to Methods,
Models and Applications. UNESCO Publishing, Paris,
Planning and Management, p 680
Moriasi DN, Arnold JG, Van Liew MW, Bingner RL,
Harmel RD, Veith TL (2007) Model evaluation guidelines for systematic quantification of accuracy in
watershed simulation. Trans ASABE 50(3):885–900
Refsgaard J (1996) Terminology, modelling protocol and
classification of hydrological model codes. In: Water
Science and Technology Library, Vol. 22. Distributed
hydrological modeling / M.B. Abbott and J.C.
Refsgaard (Eds.). Kluwer Academic Publishers, Dordrecht, The Netherlands, pp 17–39
Revyakin VS, Galakhov VP, Goleshchikhin VP (1979)
Mountain-glacial basins of Altai. Tomsk State University Press, Tomsk, p 310 (in Russian)
Rumynin VG (2013) Subsurface solute transport models
and case histories, with applications to radionuclide
migration. Springer, Dordrecht, Heidelberg, London,
New York, p 840
Selegey VV, Selegey TS (1978) Teletskoye Lake.
Gidrometeoizdat, Leningrad, p 143 (in Russian)
Sene K (2008) Flood warning, forecasting and emergency
response. Springer, Berlin, London, p 303
Sevast'yanov VV (1998) Climate of high-mountain
regions of Altai and Sayan. Publishing house of
Tomsk University, Tomsk, p 201 (in Russian)
Singh J, Knapp HV, Demissie M (2004) Hydrologic
modeling of the Iroquois River watershed using HSPF
and SWAT / ISWS CR 2004–08. Champaign, Ill.:
Illinois State Water Survey, 2004. URL: https://swat.
tamu.edu/media/90101/singh.pdf
Singh M, Singh RB, Hasan MI (eds) (2014) Landscape
ecology and water management: proceedings of IGU
Rohtak conference, vol 2, Springer, Tokyo
Tardy Y, Bustillo V, Boeglin JL (2004) Geochemistry
applied to the watershed survey: hydrograph separation,
erosion and soil dynamics. A case study: the basin of the
Niger River, Africa. Appl Geochem 19:469–518
Todorovski L, Dzeroski S, Langley P, Potter C (2003)
Using equation discovery to revise an Earth ecosystem
model of the carbon net production. Ecol Model
170:141–154
Tsimbaley YM (2011) Landscape map of Altai Krai.
Maps / Y.M. Tsimbaley using the materials from L.N.
Purdik, V.I. Bulatov, A.A. Kovanova, and with the
participation of D.V. Chernykh, S.B. Smirnov and O.
M. Vinokurova. Library materials of IWEP SB RAS
(in Russian)
Vinogradov YB, Vinogradova TA (2010) Mathematical
modeling in hydrology. “ACADEMIA” Publisher,
Moscow, p 304 (in Russian)
100
Y. Kirsta and A. Puzanov
