Results of full-scale and laboratory studies of the spillway of HPP No. 2
In the article, based on the results of field measurements and calculations, recommendations are given for determining the roughness coefficient of the channel of the spillway. Based on the analysis of the literature and field research data, it was recommended to take the roughness coefficient of th...
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EDP Sciences
2021-01-01
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doaj-23de24aee3314777a0445cae04ce991b2021-06-11T07:17:19ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012640302810.1051/e3sconf/202126403028e3sconf_conmechydro2021_03028Results of full-scale and laboratory studies of the spillway of HPP No. 2Khusankhudzaev Ulmas0Kadirov Odil1Jakhonov Azizjon2Tashkent Institute of Architecture and Civil EngineeringTashkent Institute of Irrigation and Agricultural Mechanization EngineersTashkent Institute of Irrigation and Agricultural Mechanization EngineersIn the article, based on the results of field measurements and calculations, recommendations are given for determining the roughness coefficient of the channel of the spillway. Based on the analysis of the literature and field research data, it was recommended to take the roughness coefficient of the channel of the spillway (canal) equal to n = 0.02 - for areas with steep slopes and without sediment deposits, and in areas with the worst condition of concrete surfaces and sediment deposits, take n = 0.0225. According to the results of field surveys of the canal, it was found that the hydraulic regime at the turning section No. 2 in the plan is characterized by an uneven distribution of depths in its cross-sections. This is due to the curvilinearity of the turning section of the channel, which has an unacceptably small radius of curvature in the plan causing centrifugal forces and rising levels along the concave wall, which led to an overflow of water over the top of the channel walls. As a result of the conducted experimental - laboratory studies of the turning section of the outflow tract (channel), recommendations are given for reducing the water incursion on the banks, the height of the walls.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_03028.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Khusankhudzaev Ulmas Kadirov Odil Jakhonov Azizjon |
spellingShingle |
Khusankhudzaev Ulmas Kadirov Odil Jakhonov Azizjon Results of full-scale and laboratory studies of the spillway of HPP No. 2 E3S Web of Conferences |
author_facet |
Khusankhudzaev Ulmas Kadirov Odil Jakhonov Azizjon |
author_sort |
Khusankhudzaev Ulmas |
title |
Results of full-scale and laboratory studies of the spillway of HPP No. 2 |
title_short |
Results of full-scale and laboratory studies of the spillway of HPP No. 2 |
title_full |
Results of full-scale and laboratory studies of the spillway of HPP No. 2 |
title_fullStr |
Results of full-scale and laboratory studies of the spillway of HPP No. 2 |
title_full_unstemmed |
Results of full-scale and laboratory studies of the spillway of HPP No. 2 |
title_sort |
results of full-scale and laboratory studies of the spillway of hpp no. 2 |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2021-01-01 |
description |
In the article, based on the results of field measurements and calculations, recommendations are given for determining the roughness coefficient of the channel of the spillway. Based on the analysis of the literature and field research data, it was recommended to take the roughness coefficient of the channel of the spillway (canal) equal to n = 0.02 - for areas with steep slopes and without sediment deposits, and in areas with the worst condition of concrete surfaces and sediment deposits, take n = 0.0225. According to the results of field surveys of the canal, it was found that the hydraulic regime at the turning section No. 2 in the plan is characterized by an uneven distribution of depths in its cross-sections. This is due to the curvilinearity of the turning section of the channel, which has an unacceptably small radius of curvature in the plan causing centrifugal forces and rising levels along the concave wall, which led to an overflow of water over the top of the channel walls. As a result of the conducted experimental - laboratory studies of the turning section of the outflow tract (channel), recommendations are given for reducing the water incursion on the banks, the height of the walls. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/40/e3sconf_conmechydro2021_03028.pdf |
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AT khusankhudzaevulmas resultsoffullscaleandlaboratorystudiesofthespillwayofhppno2 AT kadirovodil resultsoffullscaleandlaboratorystudiesofthespillwayofhppno2 AT jakhonovazizjon resultsoffullscaleandlaboratorystudiesofthespillwayofhppno2 |
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