Dr
Aleksey SIDORCHUK
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Korotayev V., Sidorchuk A., Garrison L. 1987. Palaeogeomorphological analysis of river deltas in the Taz estuary. In: Palaeohydrology of the temperate zone. V.1. Rivers and lakes. Tallinn, 30-43. Sidorchuk A., Matveev B. 1994. Channel processes and erosion rates in the rivers of the Yamal Peninsula in western Siberia. In: Variability in Stream Erosion and Sediment Transport. IAHS Publ, N 224, 197-202. Matveev B., Panin A., Sidorchuk A. 1994. Rates of formation of forms in a river channel hierarchy: the case of the River Yana in northeast Russia. In.: Variability in Stream Erosion and Sediment Transport. IAHS Publ N 224, 181-186. Sidorchuk A. 1994. The effect of open cut mining on sediment transport and alluvium composition at the Omoloy River basin, Eastern Siberia. In: Variability in Stream Erosion and Sediment Transport. Spec. Publ, N 5, 60-63. Sidorchuk A., Golosov V. 1995. The history of erosion on the northern Ponto-Meotian during the period of intensive agriculture. In: Proc. of workshop on soil erosion in semi-arid Mediterranean areas. Taormina, Italy, 161-173. Alabyan A.M., Chalov R.S., Korotaev V.N., Sidorchuk A.Yu., Zaitsev A.A. 1995. Natural and Technogenic Water and Sediment Supply to the Laptev Sea. Berichte zur Polarforschung, N 176, 265-271. Sidorchuk A. 1996. The structure of river bed relief. In: P.J. Ashworth, S.J. Bennet, J.L. Best, S.T. McLelland (eds.) Coherent flow structures in open channels., Chichester, Wiley, 397-421. Sidorchuk, A. 1996: Gully thermoerosion on the Yamal peninsula. In: O. Slaymaker (ed.) Geomorphic Hazards. Chichester, Wiley, 141-153. A.Sidorchuk. 1996. Sediment Budget Change in the Fluvial System at the Central Part of the Russian Plain Due to Human Impact. In: Erosion and Sediment Yield: Global and Regional Perspectives. IAHS Publ 236, 445-452. A.Sidorchuk. 1997. Palaeohydrology in the Southern Russian Plain: methods and results. VI Congresso da Associacao Brasilera de Estudos do Quaternario e Reuniao sobre o Quaternario da America do Sul. Resumos Expandidos., Curitiba, Parana, Brasil, 479-482 A.Sidorchuk. 1998. Dynamic Model of Gully Erosion. In: J. Boardman, D. Favis-Mortlock (eds.). Modelling soil erosion by water. Springer, 451-460. Aleksey Sidorchuk and Anna Sidorchuk. 1998. The Model for Estimating of the Gully Morphology. In: Modelling Soil Erosion, Sediment Transport and Closely Related Hydrological Processes, IAHS Publ. 249, 333-344 Sidorchuk A., Grigor'ev V. 1998. Soil erosion on the Yamal peninsula (Russian Arctic) due to gas field exploitation. Advances in GeoEcology, 31: 805-811.
Panin A.V., Sidorchuk A. Yu., Chernov A.V. 1999. Historical
background to floodplain morphology: examples from the East European
Plain. In: Floodplains: Interdisciplinary Approaches. London,
Geological Society Special Publications, 163, 217-229 http://dx.doi.org/GSL.SP.1999.163.01.17
Sidorchuk, A. 1999: Static and Dynamic Models for Estimation of the
Gullies morphology. Catena 37 (3-4): 401-414. http://dx.doi.org/10.1016/S0341-8162(99)00029-6
Sidorchuk A., Borisova O., Panin A. 1999. Paleohydrology of East
European taiga. Boletin Goiano de Geografia. 19 (1): 98-102
Sidorchuk A.Yu., Panin A.V., Baslerov S.V., Borisova O.K.,Kovalyukh
N.N., Sheremetskaya E.D. 2000. Paleohydrological Studies of the Seim
River Valley. In: Paleogeography and Paleohydrology of the Lowland
River Basins (guide-book for field excursion within Seim river basin,
Russia, 24-26 August 2000), Moscow, 68-84
Sidorchuk A.Yu., Borisova O.K. 2000. Method of Paleogeographical
Analogues in Paleohydrological Reconstructions. Quaternary
International. 72 (1): 95-106 http://dx.doi.org/10.1016/S1040-6182(00)00025-2
Wasson, R.; Sidorchuk, A. 2000: History for soil conservation and
catchment management. In: Dovers, S. (ed.). Environmental History and
Policy. Still settling Australia. Canberra, Oxford Press, 97-117.
Sidorchuk A., Borisova O., Panin A. 2000. Fluvial Response to the
Late Valdai/Holocene Environmental Change on the East European Plain.
Journal of Global and Planetary Changes, 28: 303-318 http://dx.doi.org/10.1016/S0921-8181(00)00081-3
Sidorchuk A., Borisova O, Panin A. 2000. The river flow at the
north of East European Plain in the Late Glacial - Holocene.
International journal of Earth Science, 89: 541-549 http://dx.doi.org/10.1007/s005310000132
Wasson, B.; Sidorchuk, A. 2000: Land Use and Climate Impacts on
Fluvial System During the Period of Agriculture (LUCIFS). PAGES
Newsletter, 8 (3): 10.
Sidorchuk, A. 2000: Past Erosion and Sedimentation within Drainage
Basin on the Russian Plain. PAGES Newsletter, 8 (3): 19.
Sidorchuk, A. 2001: Stochastic Model to Predict Water Erosion of
Cohesive Soil. In: Proc. of Int. Symp Soil Erosion Research for the
21st Century, ASAE, 330-333.
Sidorchuk A., Borisova O., Kovalukh N., Panin A. 2001. Lateglacial
and Holocene palaeohydrology of the lower Vychegda river, western
Russia. In: D. Maddy, M. G. Macklin, J. C. Woodward. (Eds.) River Basin
Sediment Systems: Archives of Environmental Change. Swets &
Zeilinger B.V., 265-296.
Sidorchuk, A.; Marker, M.; Moretti, S.; Rodolfi G. 2001: Soil
Erosion Modelling in the Mbuluzi River Catchment (Swaziland, South
Africa). Part 1. Modelling of the dynamic evolution of gullies. Geogr.
Fis. Dinam. Quat. 24: 177-187.
Sidorchuk, A. 2001. GULTEM - The Model to Predict Gully
Thermoerosion and Erosion (Theoretical Framework). In: D.E.Stott, R.H.
Mohtar and G.C. Steinhardt (eds.). Sustaining the Global Farm. Selected
papers from the 10th International Soil Conservation Organization
Meeting. 966-972.(CD).
Trustrum N.A., Tate K. R., Page M.J., Sidorchuk A., Baisden W.T.
2002. Towards a national assessment of erosion-related soil carbon
losses in New Zealand. In: Proc. of. 12th ISCO conference. V. 3, 182-186
Sidorchuk A., Preston N., Basher L., Baisden T., Trustrum N., Tate
K. 2002. Process-based models for simulation and prediction of
erosion-related organic carbon losses on the national scale: an example
for New Zealand. In: Proc. of. 12th ISCO conference. V.4, 232-238
Sidorchuk A. Stochastic modelling of soil erosion and deposition.
2002. In: Proc. of. 12th ISCO conference. V.4, 136-142
Nachtergaele J, Poesen J, Sidorchuk A., Torri D. 2002. Prediction
of concentrated flow width in ephemeral gully channels. Hydrological
Processes 16: 1935-1953 http://dx.doi.org/10.1002/hyp.392
Sidorchuk A., Marker M., Moretti S. Rodolfi G. 2003. Gully erosion
modelling and landscape response in the Mbuluzi River catchment of
Swaziland, Catena, 50 (2-4), 507-525 http://dx.doi.org/10.1016/S0341-8162(02)00123-6
Marker, M., Sidorchuk, A. 2003. Assessment
of gully erosion process dynamics for water resources management in a
semiarid catchment of Swaziland (Southern Africa) IAHS-AISH Publication (279), pp. 188-198
Flugel W.-A, Marker M., Moretti S., Rodolfi G., Sidorchuk A. 2003.
Integrating GIS, Remote Sensing, Ground Trouthing and Modelling
Approaches for Regional Erosion Classification of semiarid catchments
in South Africa and Swaziland. Hydrological Processes 17, 929-942. http://dx.doi.org/10.1002/hyp.1171
Sidorchuk A., Panin A., Borisova O. 2003 The Late Glacial and the
Holocene palaeohydrology of the Northern Eurasia. In: K.J.Gregory,
G.Benito (eds.). Palaeohydrology: Understanding Global Change. Wiley
and Sons, Chichester, 61-76
Sidorchuk A., Walling D., Wasson R. 2003. A LUCIFS Strategy:
Modelling the Sediment Budgets of Fluvial Systems. In: A. Lang, K.
Hennrich, R. Dikau (eds.). Long Term Hillslope and Fluvial System
Modelling. Springer, Berlin, 19-36 http://dx.doi.org/10.1007/3-540-36606-7_2
Sidorchuk A. Floodplain Sedimentation: Inherited Memories. 2003.
Global and Planetary Change, 39 (1-2): 13 -29 http://dx.doi.org/10.1016/S0921-8181(03)00011-0
Litvin L. F., Zorina Ye. F., Sidorchuk A. Yu., Chernov A. V.,
Golosov V. N. 2003. Erosion and sedimentation on the Russian Plain,
Part I: Contemporary processes. Hydrological Processes, 17 (16):
3335-3346 http://dx.doi.org/10.1002/hyp.1390
Sidorchuk A. Yu., Golosov V. N. 2003. Erosion and sedimentation on
the Russian Plain, Part II: The history of erosion and sedimentation
during the period of intensive agriculture. Hydrological Processes 17
(16): 3347-3358 http://dx.doi.org/10.1002/hyp.1391
Belyaev V. R., Wallbrink P. J., Golosov V. N., Murray A. S.,
Sidorchuk A. Yu. 2004. Reconstructing the development of a gully in the
upper Kalaus basin, Stavropol region (southern Russia). Earth Surf.
Process. Landforms 29, 323-341 http://dx.doi.org/10.1002/esp.1025
Sidorchuk A., Smith A., Nikora V. 2004. Probability distribution
function approach in stochastic modelling of soil erosion In: Sediment
Transfer through the Fluvial System (Proceedings of a symposium held in
Moscow, August 2004). IAHS Publ. 288, 345-353
Korotaev V. N., Ivanov V. V., Sidorchuk A. Yu. 2004. Alluvial
relief structure and bottom sediments of the lower Volga River In:
Sediment Transfer through the Fluvial System (Proceedings of a
symposium held in Moscow, August 2004). IAHS Publ. 288, 300-307
Preston N.J., Trustrum N.A., Sidorchuk A.Y., Hicks D.M., Baisden
W.T., Giltrap D.J., Scott D.T., Page M.J, Tate K.R. 2004. Estimating
national erosion-related soil carbon losses in New Zealand: an
indicator for Kyoto compliance and sustainability assessment. pp. 1-11.
In: Francaviglia R. (Ed.) Agricultural Impacts on Soil Erosion and Soil
Biodiversity: Developing Indicators for Policy Analysis. Proceedings
from an OECD Expert Meeting -Rome, Italy, March 2003, 654 pp.
Belyaev V. R., Wallbrink P. J., Golosov V. N., Murray A. S.,
Sidorchuk A. Yu. 2005. Comparision of direct measurement,
USLE and caesium-137 based methods for Evaluating soil redistribution
from severe sheet and ephemeral gully erosion. Geomorphology 65 (3):
173-193 http://dx.doi.org/10.1016/j.geomorph.2004.09.001
Sidorchuk A. 2005. Stochastic components in the gully erosion
modelling. Catena 63 (2-3): 299-317 http://dx.doi.org/10.1016/j.catena.2005.06.007
Sidorchuk A. 2005. Stochastic modelling of erosion and deposition
in cohesive soils. Hydrological Processes, 19: 1399-1417. http://dx.doi.org/10.1002/hyp.5568
Borisova O., Sidorchuk A., Panin A. 2006. Palaeohydrology of the
Seim River basin, Mid-Russian Upland, based on palaeochannel morphology
and palynological data. Catena 66: 53 - 73 http://dx.doi.org/10.1016/j.catena.2005.07.010
Sidorchuk A., Nikora V., Smith A., Nokes R., Veale W., Popinnet S.,
Pinkney E., Jessen M., Cooper G. 2006. Stochastic Mechanics of Soil
Erosion. Procedings of 14th International Soil Conservation
Organization Conference.Water Management and Soil Conservation in
Semi-Arid Environments. Marrakech, Morocco, (CD).
Belyaev V.R., Sidorchuk A.Yu., Golosov V.N., Wallbrink P.J., Murray
A.S. 2006. Assessing the Contribution of Different Processes to Soil
Degradation within an Arable Catchment of the Stavropol Upland,
Southern European Russia. In: P.N. Owens, A.J. Collins (Eds.) Soil
Erosion and Sediment Redistribution in River Catchments Measurement,
Modelling and Management, 40-50 http://dx.doi.org/10.1079/9780851990507.0128
Sidorchuk A.Yu., Smith A., Nikora V. 2006. Double-averaging
Methodology in Stochastic Modelling of Soil Erosion. In: P.N. Owens,
A.J. Collins (Eds.) Soil Erosion and Sediment Redistribution in River
Catchments Measurement, Modelling and Management, 162-169. http://dx.doi.org/10.1079/9780851990507.0128
Sidorchuk A. 2006. Stages in gully evolution and self-organized
criticality. Earth Surface Processes and Landforms. 31(11): 1329-1344. http://dx.doi.org/10.1002/esp.1334 Sidorchuk A., Litvin L., Golosov V., Chernysh A. 2006. European Russia and Byelorus. In: J. Boarman, J. Poesen (Eds.). Soil Erosion in Europe. Chichester, Wiley, 73-93. http://dx.doi.org/10.1002/0470859202.ch8 Sidorchuk A. Y., Panin A. V., Borisova O. K. Climate-induced changes in surface runoff on the North-Eurasian plains during the Late Glacial and Holocene // Water Resources. — 2008. — Vol. 35, no. 4. — P. 386–396. http://dx.doi.org/10.1134/S0097807808040027
Golosov, V., Sidorchuk, A., Walling, D.E. 2008. Nikolay I.
Makkaveev and the development of Fluvial Geomorphology in Russia and
the former Soviet Union. Catena, 73 (1), p.146-150
Sidorchuk,
A., Schmidt,
J., Cooper G., 2008. Variability of shallow overland flow velocity and
soil
aggregate transport observed with digital videography. Hydrological
Processes
22, 4035-4048. http://dx.doi.org/10.1134/S106422930905010X Sidorchuk, A. 2009.
A third generation
erosion model: The combination of probabilistic and deterministic
components
, Geomorphology, 110 (1),
p.2-10 http://dx.doi.org/10.1016/j.geomorph.2008.12.019 Sidorchuk Aleksey Yu.,
Panin Andrei V.,
Borisova Olga K.
2009. Morphology of
river channels and surface runoff in the Volga River basin (East
European
Plain) during the Late Glacial period.
Geomorphology, Volume
113, Issues 3-4, Pages 137-157 http://dx.doi.org/10.1016/j.geomorph.2009.03.007 Sidorchuk Aleksey,
Andrey Panin, Olga Borisova (2011) Surface
runoff to the Black Sea from the East European Plain during the Last
Glaciation
Maximum - Late Glacial time. in Buynevich, I., Yanko-Hombach, V.,
Gilbert, A.S., and Martin, R.E., eds., Geology and Geoarchaeology of
the Black Sea Region: Beyond the Flood Hypothesis: Geological Society of America Special Paper 473, p. 1–25 http://dx.doi.org/10.1130/2011.2473(01) Sidorchuk Aleksey (2012) Large Alluvial River Channel Patterns and Complexity . In: Daniel A. Molina (ed) River Channels: Types, Dynamics and Changes pp. 51-110 Sidorchuk A. Y., Panin A. V., Borisova O. K. River runoff decrease in northeurasian plains during the Holocene optimum // Water Resources. — 2012. — Vol. 39, no. 1. — P. 69–81. http://dx.doi.org/10.1134/S0097807812010113 Aleksey Sidorchuk, Olga Borisova, Aleksey Chernov, and Andrey Panin. Three main stages of floodplain evolution in northern eurasia and their ecological significance. In Floodplains: Environmental Management, Restoration and Ecological Implications, Environmental Research Advances, pages 69–136. Nova Science Pub Hauppauge, N.Y., 2013. Sidorchuk A. Evaluating
bedload transport rate in a river bed taking into account data on the
active and passive bed-forms dynamics // Water Resources. — 2015. — Vol. 42, no. 1. — P. 38–51 http://dx.doi.org/10.1134/S009780781501011X Sidorchuk A. Soil erosion as the source of organic carbon deposited in the river valleys // Advances in Environmental research. — Vol. 60. — Nova Science Pub Hauppauge, N.Y., 2017. — P. 59–98.
Alekseevskii N. I., Sidorchuk A. Y. Morphology
and dynamics of active bed forms in the Terek River.
channel // Water Resources. — 2017. — Vol. 44, no. 2. — P. 226–236. http://dx.doi.org/10.1134/S0097807817010031
Sidorchuk A. The fluvial system on the East European plain: sediment source and sink // GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY. — 2018. — Vol. 11, no. 3. — P. 5–20. Sidorchuk A. Gully erosion and thermo-erosion modelling for the conditions of the modern and the late-glacial periglacial climate // Climate Change Impacts on Hydrological Processes and Sediment Dynamics: Measurement, Modelling and Management. — Springer Proceedings in Earth and Environmental Sciences. — Springer Nature Switzerland AG Cham, Switzerland, 2019. — P. 126–128. http://dx.doi.org/10.1007/978-3-030-03646-1/_24 Sidorchuk A. The emission of carbon dioxide from soils washed-out and buried by accelerated erosion in the chernozem belt of the European Russia // Climate Change Impacts on Hydrological Processes and Sediment Dynamics: Measurement, Modelling and Management. — Springer Proceedings in Earth and Environmental Sciences. — Springer Nature Switzerland AG Cham, Switzerland, 2019. — Ñ. 121–125. http://dx.doi.org/10.1007/978-3-030-03646-1/_23 Vandenberghe J., Sidorchuk A. Large palaeomeanders in Europe: Distribution, formation process, age, environments and significance // Palaeohydrology. — Geography of the Physical Environment. — Springer Cham, 2019. — P. 169–186. http://dx.doi.org/10.1007/978-3-030-23315-0/_9
Sidorchuk A. The potential of gully erosion on the Yamal peninsula, West Siberia // Sustainability. — 2020. — Vol. 12, no. 1. — P. 1–17. http://dx.doi.org/10.3390/su12010260
Sidorchuk A. Y., Matveeva T. A. Periglacial
gully erosion on the East European plain and its recent analog at the
Yamal peninsula // GEOGRAPHY, ENVIRONMENT, SUSTAINABILITY. — 2020. — Vol. 13, no. 1. — P. 183–194 http://dx.doi.org/10.24057/2071-9388-2019-01
Sidorchuk A. Yu. Assessing the gully potential of a territory (a case study of central Yamal // Geography and Natural Resources. — 2020. — Vol. 41, no. 2. — P. 178–186.
Matveeva T., Sidorchuk A. Modelling of surface runoff on
the Yamal peninsula, Russia, using ERA5 reanalysis // Water. — 2020. — Vol. 12, no. 8. — P. 2099 http://dx.doi.org/10.3390/w12082099 Sidorchuk A. Y. Morphology of dune-like relief in rivers // Water Resources. — 2020. — Vol. 47, no. 1. — P. 65–76. http://dx.doi.org/10.1134/s0097807820010133 A. Panin, O. Borisova, E. Konstantinov, Belyaev Y., Eremenko E., Zakharov A., Sidorchuk A..The Late Quaternary evolution of the upper reaches of fluvial systems in the southern East European plain / // Quaternary. — 2020. — no. 3. — P. 31. http://dx.doi.org/10.3390/quat3040031 V. N. Golosov, A. L. Collins, N. G. Dobrovolskaya, O. I. Bazhenova, Yu V. Ryzhov, and A. Yu Sidorchuk. Soil loss on the arable lands of the forest-steppe and steppe zones of European Russia and Siberia during the period of intensive agriculture. Geoderma, 381:114678, 2021. http://dx.doi.org/10.1016/j.geoderma.2020.114678 Sidorchuk A. Y.,
Ukraintsev V. Y., Panin A. V. Estimating
annual volga runoff in the late glacial epoch from the size of river
paleochannels // Water Resources. — 2021. —
Vol. 48, no. 6. — P. 864–876. Panin A. V.,
Sidorchuk A. Y., Ukraintsev V. Y. The
contribution of glacial melt water to annual runoff of river volga in
the last glacial epoch // Water Resources. — 2021.
— Vol. 48, no. 6. — P. 877–885. Sidorchuk A. Models of gully erosion by water // Water. — 2021. — Vol. 13, no. 22-3293. http://dx.doi.org/10.3390/w13223293 Sidorchuk A. The theoretical approach to the modelling of gully erosion in cohesive soil // Earth. — 2022. — Vol. 3, no. 1. — P. 228–244. http://dx.doi.org/10.3390/earth3010015 A. Panin, O. Borisova, V. Belyaev, Y. Belyaev, E. Eremenko, Y. Fuzeina, E. Sheremetskaya, and A. Sidorchuk. Evolution of the upper reaches of fluvial systems within the area of the East European plain glaciated during MIS 6. Quaternary, 5(1):13, 2022. https://doi.org/10.3390/quat5010013 |