The forces acting on the teeth of catching machine

Republic of Uzbekistan, pumping stations are used in very difficult conditions. The presence of various particles and effluents in the water has a negative effect on the operating modes of the pumping equipment. Special grilles are installed to prevent the catching devices from entering the advance...

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Main Authors: Ergashev Rustam, Bekchanov Fakhriddin, Rashidov Jaloliddin, Kholbutaev Boybek
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/50/e3sconf_stcce2021_03009.pdf
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spelling doaj-3a7d847170a543f193b3986ec3bc9bb52021-06-21T07:49:59ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012740300910.1051/e3sconf/202127403009e3sconf_stcce2021_03009The forces acting on the teeth of catching machineErgashev Rustam0Bekchanov Fakhriddin1Rashidov JaloliddinKholbutaev Boybek2Tashkent Institute of Irrigation and Agricultural Mechanization EngineersTashkent Institute of Irrigation and Agricultural Mechanization EngineersJizzakh Polytechnic InstituteRepublic of Uzbekistan, pumping stations are used in very difficult conditions. The presence of various particles and effluents in the water has a negative effect on the operating modes of the pumping equipment. Special grilles are installed to prevent the catching devices from entering the advance chamber of the pump station. The shape and length of the device covers are of great importance so that they are caught in front of the grilles and completely cover the accumulated debris. In the article, the laws of mechanics were used to determine the shape and size of the working device of the device for cleaning the effluent flowing into the pump station as water and accumulated in front of the grids. In doing so, the condition of ensuring complete removal of the leaks covered by the device was taken into account. It was argued that the angle γ between the working surfaces and velocities of the covers should be less than 90-φ over its entire working surface in order to fully cover the device shafts. It was found that when the working surface of the device is flat, the time of interaction with the catching device pieces is minimal. Studies and literature have shown that the angle of friction on the working surfaces of the device covers should be φ=20°, the angle between the working surface of the device cover and the rotational speed γ=70°.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/50/e3sconf_stcce2021_03009.pdfpump stationfore chambercagemouthdevicesuction pipecavitation
collection DOAJ
language English
format Article
sources DOAJ
author Ergashev Rustam
Bekchanov Fakhriddin
Rashidov Jaloliddin
Kholbutaev Boybek
spellingShingle Ergashev Rustam
Bekchanov Fakhriddin
Rashidov Jaloliddin
Kholbutaev Boybek
The forces acting on the teeth of catching machine
E3S Web of Conferences
pump station
fore chamber
cage
mouth
device
suction pipe
cavitation
author_facet Ergashev Rustam
Bekchanov Fakhriddin
Rashidov Jaloliddin
Kholbutaev Boybek
author_sort Ergashev Rustam
title The forces acting on the teeth of catching machine
title_short The forces acting on the teeth of catching machine
title_full The forces acting on the teeth of catching machine
title_fullStr The forces acting on the teeth of catching machine
title_full_unstemmed The forces acting on the teeth of catching machine
title_sort forces acting on the teeth of catching machine
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description Republic of Uzbekistan, pumping stations are used in very difficult conditions. The presence of various particles and effluents in the water has a negative effect on the operating modes of the pumping equipment. Special grilles are installed to prevent the catching devices from entering the advance chamber of the pump station. The shape and length of the device covers are of great importance so that they are caught in front of the grilles and completely cover the accumulated debris. In the article, the laws of mechanics were used to determine the shape and size of the working device of the device for cleaning the effluent flowing into the pump station as water and accumulated in front of the grids. In doing so, the condition of ensuring complete removal of the leaks covered by the device was taken into account. It was argued that the angle γ between the working surfaces and velocities of the covers should be less than 90-φ over its entire working surface in order to fully cover the device shafts. It was found that when the working surface of the device is flat, the time of interaction with the catching device pieces is minimal. Studies and literature have shown that the angle of friction on the working surfaces of the device covers should be φ=20°, the angle between the working surface of the device cover and the rotational speed γ=70°.
topic pump station
fore chamber
cage
mouth
device
suction pipe
cavitation
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/50/e3sconf_stcce2021_03009.pdf
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