Today, deep hydrological analysis has proven to be a straightforward and efficient method for conducting engineering calculations, research, and assessing the impacts of climate change scenarios. For example, it can be used to evaluate various control strategies for the functioning of specific hydrologic systems, such as river basins. Additionally, modeling is the only quantitative approach to estimate the influence of climate change on water resources and other natural processes. River flow modeling has become a crucial component in the planning and management of river basins, water supply systems, hydropower projects, and agriculture, as well as for short-term forecasting and flood warning.

1.
Nazaraliyev
,
D.
,
Mansurov
,
S. R.
, &
Sobirjon
,
M. K.
Assessment of the impact of global climate change on the surface runoff of the Chatkal River
. In
Mechanics, Materials Science & Engineering
. (
2022
).
2.
Kodirov
S. M.
,
Mansurov
S.R.
The Ahangaran River basin runoff features: which parameters are shifting in reality?
International journal of research culture society
. Vol.
4
(
6
), (
2020
).
3.
Kodirov
S. M.
,
Gapparov
F.A.
Change of hydrological regime of foothill small rivers of Uzbekistan
.
International journal of research culture society
. Vol.
4
(
4
), (
2020
).
4.
Kodirov
S.M.
Assessment of the impact of global climate change on the surface runoff of the upstream of The Chirchik River. 1 st International Conference
The Holistic Approach to Environment
” Sisak, Croatia, (
2018
).
5.
Kodirov
,
S.
, &
Zaitov
,
S.
Long-term forecasts of water availability in small foothill rivers of Uzbekistan
. In
IOP Conference Series: Materials Science and Engineering
, Vol.
883
, No.
1
, IOP Publishing. (
2020
).
6.
Kodirov
,
S.
, &
Gapparov
,
F.
Impact of global climate change on the surface runoff of the Chatkal River
. In
IOP Conference Series: Materials Science and Engineering
, Vol.
883
, No.
1
, IOP Publishing. (
2020
).
7.
Kodirov
S. M.
Assessment of Water Content in Hydrologic Time Series Using Difference Integral Curves (Example of The Pskem River)
.
Mechanics, Materials Science & Engineering
, Vol.
16
, (
2018
).
8.
Didovets
,
I.
,
Lobanova
,
A.
,
Krysanova
,
V.
,
Menz
,
C.
,
Babagalieva
,
Z.
,
Nurbatsina
,
A.
,
Hattermann
,
F. F.
Central Asian rivers under climate change: Impacts assessment in eight representative catchments
.
Journal of Hydrology: Regional Studies
,
34
,
100779
. (
2021
).
9.
Kodirov
,
S.
, &
Gapparov
,
F
. Impact of global climate change on the surface runoff of the Chatkal River
. In
IOP Conference Series: Materials Science and Engineering
, Vol.
883
, No.
1
, IOP Publishing. (
2020
).
10.
Sokolovskiy
D.L.
The river stream Theoretical basics and the methods of estimations
.
Leningrad
:
Publishing House of Hydrometeorology
. (
1968
).
11.
Sikan
А.V.
Statistical methods of analyzing Hydrometeorological information
.
Saint-Petersburg
:
Publishing House of RSHU
. (
2014
).
12.
Sikan
,
A. V.
,
Malysheva
,
N. G.
, &
Vinokurov
,
I. O.
Statistical methods for analyzing hydrometeorological information
. (
2014
).
13.
National Encyclopedia of Uzbekistan. State scientific publishing house
National Encyclopedia of Uzbekistan
”. Volume
1
. (Tashkent,
2000
).
14.
Gapparov
,
F.
, &
Mansurov
,
S.
Investigations on determination of changes in inactive volume of water reservoirs (case study of South Surkhan water reservoir)
. In
E3S Web of Conferences
, Vol.
401
, EDP Sciences. (
2023
).
15.
Gapparov
,
F.
, &
Mansurov
,
S.
Estimating Determinative Factors Of Reservoir Sedimentation Processes
.
European Scholar Journal
,
3
(
3
),
109
-
112
. (
2022
).
16.
Gapparov
F. A.
,
Mansurov
S. R.
,
Eshkuvatov
E.
Sh.
Assessment of southern red water reservoir sedimentation processes
.
Journal of “Sustainable Agriculture
”. Vol.
2
, pp.
41
-
45
, (Tashkent,
2021
).
17.
Gapparov
F. A.
,
Mansurov
S. R.
Studies on the mechanical composition of muddy sediments and soil type in the South Surkhan Reservoir
.
Journal of AGRO-ILM”
Vol.
2
. (
2022
).
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