Саноатда рақамли технологиялар Ҷилди 4 № 1 (2026) · Саҳифаҳои 237-241

METHODS FOR ASSESSING RIVERBED STABILITY

Gaimnazarov, Israil Kholikovich, Mamarasulov, Sobir Rakhmonkulovich, Toshmurodov, Jomurod Jahongirugli, Гайимназаров, Исраил Холикович, Мамарасулов, Собир Рахмонкулович, Тошмуродов, Жомурод Жахонгиругли, G‘ayimnazarov, Israil Xoliqovich, Mamarasulov, Sobir Raxmonqulo‘g‘li, Toshmurodov, Jomurod Jahongiro‘g‘li

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Аннотатсия

To date, extensive field observations and laboratory experiments on the formation and movement of bedforms in channels with alluvial beds have been conducted in various scientific centers worldwide. These studies have yielded a large volume of experimental data. Although some researchers have attempted to generalize these data and present them as unified computational relationships, fully reliable and universal results on this issue have not yet been obtained. Analysis of the existing scientific literature shows that the problem of bedform movement in channels with alluvial beds remains one of the most complex and relevant challenges in open channel hydraulics. The results of analyzing the obtained experimental data and observations indicate that changes in wave parameters directly affect the geometric and kinematic characteristics of the bedforms. In particular, it has been observed that bedforms formed under the influence of wind waves have larger dimensions compared to those formed in steady-state channel flow. This is primarily attributed to the increase in shear stresses occurring at the channel bottom as a result of wave action. The increase in these stresses leads to the enlargement of bedform parameters. Based on the theory of bedform sediment transport in open channels, methods for calculating sediment transport in channels under steady and unsteady flow conditions have been improved. This approach allows for a more accurate description of the complex morphodynamic processes occurring at the channel bottom and enhances the reliability of the calculated results.

unsteady flowbedformsbedform steepnesssedimentssediment transportdeformationriverbedroughnesshydraulic resistancedynamic velocity

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Иқтибос гирифтан

APA 7
Gaimnazarov, Israil Kholikovich, Mamarasulov, Sobir Rakhmonkulovich, Toshmurodov, Jomurod Jahongirugli, Гайимназаров, Исраил Холикович, Мамарасулов, Собир Рахмонкулович, Тошмуродов, Жомурод Жахонгиругли, G‘ayimnazarov, Israil Xoliqovich, Mamarasulov, Sobir Raxmonqulo‘g‘li & Toshmurodov, Jomurod Jahongiro‘g‘li (2026). METHODS FOR ASSESSING RIVERBED STABILITY. Саноатда рақамли технологиялар, 4(1), 237-241.
GOST R 7.0.5
Gaimnazarov, Israil Kholikovich, Mamarasulov, Sobir Rakhmonkulovich, Toshmurodov, Jomurod Jahongirugli, Гайимназаров, Исраил Холикович, Мамарасулов, Собир Рахмонкулович, Тошмуродов, Жомурод Жахонгиругли, G‘ayimnazarov, Israil Xoliqovich, Mamarasulov, Sobir Raxmonqulo‘g‘li, Toshmurodov, Jomurod Jahongiro‘g‘li METHODS FOR ASSESSING RIVERBED STABILITY // Саноатда рақамли технологиялар. 2026. Т. 4. № 1. С. 237-241.
BibTeX
@article{kholikovich2026,
  author  = {Gaimnazarov, Israil Kholikovich and Mamarasulov, Sobir Rakhmonkulovich and Toshmurodov, Jomurod Jahongirugli and Гайимназаров, Исраил Холикович and Мамарасулов, Собир Рахмонкулович and Тошмуродов, Жомурод Жахонгиругли and G‘ayimnazarov, Israil Xoliqovich and Mamarasulov, Sobir Raxmonqulo‘g‘li and Toshmurodov, Jomurod Jahongiro‘g‘li},
  title   = {METHODS FOR ASSESSING RIVERBED STABILITY},
  journal = {Саноатда рақамли технологиялар},
  year    = {2026},
  volume  = {4},
  number  = {1},
  pages   = {237-241}
}
RIS
TY  - JOUR
AU  - Gaimnazarov, Israil Kholikovich
AU  - Mamarasulov, Sobir Rakhmonkulovich
AU  - Toshmurodov, Jomurod Jahongirugli
AU  - Гайимназаров, Исраил Холикович
AU  - Мамарасулов, Собир Рахмонкулович
AU  - Тошмуродов, Жомурод Жахонгиругли
AU  - G‘ayimnazarov, Israil Xoliqovich
AU  - Mamarasulov, Sobir Raxmonqulo‘g‘li
AU  - Toshmurodov, Jomurod Jahongiro‘g‘li
TI  - METHODS FOR ASSESSING RIVERBED STABILITY
JO  - Саноатда рақамли технологиялар
PY  - 2026
VL  - 4
IS  - 1
SP  - 237
EP  - 241
ER  -