logo
calendar17 Mart 2022
view28
Main language:English

THREE-DIMENSIONAL (3-D) SPATIAL-TEMPORAL ANALYSIS OF THE HYDROCHEMICAL MODE OF THE SYRDARIA RIVER

Field of Science:
pdf

6232de349b630.pdf

PDF

ARTICLE ANNOTATION

quote
The analysis of the hydrochemical regime of the rivers feeding the irrigated territories of agricultural land in the river basin is essential to develop scientifically based recommendations on the rational use of water and land resources. Anthropogenic influence on water and land resources in the basins of the rivers inevitably affects the change of surface water quality. A new method is proposed for analyzing the hydrochemical regime of the rivers based on three-dimensional (3-D) modelling of the spatio-temporal distribution of water mineralization along the length of the main river. This method allows to analyze the flow of pollutants into the river, identify the main causes of pollution and the formation of the hydrochemical regime of rivers.

AUTHORS

S.Myagkov

Gidrometeorologiya ilmiy-tekshirish instituti, O‘zgidromet

Tags

# моделирование# irrigation# суғориш# моделлаштириш# modeling# орошение# ифлосланиш# pollution# минерализация# mineralization# загрязнение# гидрокимёвий режим# гидрохимический режим# hydrochemical regime# бассейн реки# river basin# дарё ҳавзаси

OTHER ARTICLES IN THIS JOURNAL

Rate Article

0
0 ratings
5
4
3
2
1

Article Identifiers

References

Drainage Manual: A Guide to Integrating Plant, Soil, and Water Relationships for Drainage of Irrigated Lands // Interior Dept., Bureau of Reclamation. – 1993. – ISBN 978-0-16-061623-5.

Ganiev A.M. Graph-analytical method for assessing and predicting the interaction of the irrigated territory with the river // On Sat articles of the conference AuzIUWR. – T., 2000. – Рp. 41-42.

Hukkinen J., Roe Е., Rochlin G.I. A salt on the land: A narrative analysis of the controversy over irrigation-related salinity and toxicity in California’s San Joaquin Valley // Policy Sciences 23.4. – 1990. – Pp. 307–329.

Konovalov V.G., Karandaeva L.M. Methods and Experience of forecasting of an annual runoff on the basic rivers of Central Asia until year 2000 // Proceedings of the International Conference on World Water Resources at the Beginning of the 21-st Century. – UNESCO, Paris, France. – 3-6 June, 1998. – IHP-V Technical Documents in Hydrology. – No 18.

Merchant C. American Environmental History: An Introduction // Columbia University Press. – 2007. – ISBN 978-0231140355.

Myagkov S.V., Sokolov V.I. Features of the formation of drainage and waste waters and the methodology for their prediction in the Syrdarya river basin. – Tr. SANIIRI, 1986. – Pp. 114-123.

Nijland H.J., Guindy S.E. Crop production and topsoil // surface-water salinity in farmer’s rice-fields, the Nile Delta // Smith, KVH and DW Rycroft (eds.), Hydraulic Design in Water Resources. Engineering: Land Drainage. Proceedings of the 2nd International Conference. – Southampton University. – Springer Verlag, Berlin. – 1986. – Pp. 75-84.

Oosterbaan R.J. The study of effects of drainage on agriculture // International Institute for Land Reclamation and Improvement. – 2009.

Rodda J.C; Ubertini L. The Basis of Civilization – water Science // International Association of Hydrological Science. – 2004. – ISBN 9781901502572.

Snedecor G.W., Cochran W.G. Statistical methods // Lowa State University Press. – 8-th ed. – 1986. – 593 p.

Vandewiele G.l., Elias A. Monthly water balance model including deep infiltration and canal losses // HydrolSci. Bull. – No 22 (3). – Pp. 341-351.

Williamson R.E.. Kriz G.J. Response of agricultural crops to flooding, depth of water table, and soil gaseous composition. – 1970.

Yakubov M.A. Features of reclamation-hydrological processes in the river basins of the Syrdarya and Amudarya rivers and regulation of their water quality: Abstract of a DSc dissertation. – T.: NPO SANIIRI, 1997. – 49 p.