Abstract
The article discusses one of the tasks of designing a mobile installation for cleaning and disinfecting mine wells – the development of design documentation for the manufacture of a new, effective type of experimental mobile installation based on a high-terrain vehicle, which will perform all technological processes using progressive hydraulic and grappling methods for removing sediments and foreign objects.
The authors have prepared a schematic diagram of an experimental sample of a mobile installation for cleaning and disinfection of mine wells and maintenance of water-lifting equipment ОДШК-30 and basic diagrams of the main components performing technological operations during cleaning of mine wells from sediments and foreign objects and prevention (disinfection) of a water source, watering point and maintenance of water-lifting equipment, as well as the device and technological process.
The article was prepared as part of a grant financing project in a priority area of science development: Sustainable development of the agro-industrial complex.
The stages and stages of development of design documentation for an experimental sample of a mobile installation for cleaning and disinfection of mine wells and maintenance of water lifting equipment correspond to the tasks set. Control over the manufacture and acceptance of design documentation for a mobile installation for cleaning and disinfection of mine wells and maintenance of ОДШК-30 water lifting equipment was carried out according to the act of completed work.
01 Introduction
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02 References
- Abdreshov Sh & Aldiyarova A. & Kaypbaev E. (2020). Research results of the improved hydraulic jet pumping unit. news of National Academy of Sciences of the Republic of Kazakhstan. 6. 14-22. DOI: 10.32014/2020.2518-170X.125 . [in Eng.]
- Әуелбек Е., Саркынов Е. Радзевичус А., Қапар Ш., & Oңласын Ұ. (2023). Методика расчета и определение параметров всасывающих устройств передвижной установки для очистки шахтных колодцев. Izdenister Natigeler, (1 (97), 173–180. https://doi.org/10.37884/1-2023/20 [in Russ.]
- El-Bayoumi M., Abouel-Fotouh A.M., Berry A.E. (2023). Lab-scale system for small ram pump’s testing and performance evaluation. Frontiers in Heat and Mass Transfer, 20(1), 1–6. https://doi.org/10.5098/hmt.20.8 [in Eng.]
- Evangelista, Stefania, Giuseppe Tortora, and Giacomo Viccione (2023). “Experimental and Numerical CFD Modelling of the Hydrodynamic Effects Induced by a Ram Pump Waste Valve” Sustainability 15, no. 17: 13104. https://doi.org/10.3390/su151713104 [in Eng.]
- Kassymbekov Zhuzbay Kozhabaevich, Atamanova Olga Viktorovna, Alimova Kulyash Kapbasovna, & Kassymbekov Galymzhan Zhuzbaevich (2020). Protection of centrifugal pumps from abrasive wear using a vacuum hydrocyclone. Scientific Journal of Pedagogy and Economics, (1), 6–13. https://journals.nauka-nanrk.kz/bulletin-science/article/view/676. [in Eng.]
- Piñon-Flores L.F., Gutiérrez-Ruiz M.E., González-Chávez J.L. et al. (2024). Removal of Metal (Loids) from Acid Mine Drainage Using Manganese Oxide Wastes from a Mining-Metallurgical Process. Mine Water Environ 43, 449–462 (2024). https://doi.org/10.1007/s10230-024-01003-2 [in Eng.]
- Sarkynov Y., Yakovlev A., Trofimov G., Zhakupova Z., Ryskulbekova L., Zhanymkhan K., & Yussupov Z. (2024). Calculation to determine the technical and economic efficiency of pumping units for lifting water from watercourses powered by water energy for watering pastures and irrigation of land. Izdenister Natigeler, (3(103). Retrieved from https://journal.kaznaru.edu.kz/index.php/research/article/view/645 [in Eng.]
- Тлеш Д., Халхабай Б., Хойшиев А. & Байарыстанов М. (2025). Шахта суларын тиімді тазартудың технологиялық негіздері. Izdenister Natigeler, (2 (106), 401–409. https://doi.org/10.37884/2-2025/40 [in Kaz.]
- V.A. Tumlert, Zh.K. Kasymbekov, R.A. Dzhaisambekova, E.V. Tumlert, B.Sh. Amanbayeva (2023). Influence of the hydrogeological mode of operation on the character of collating of the filter and the filter zone of seasonal wells. news of the National Academy of Sciences of the Republic of Kazakhstan. Series of geology and technical sciences issn 2224-5278. Volume 3. Number 459 (2023), 295–304. https://doi.org/10.32014/2023.2518-170X.314 [in Eng.]
- Zhurinov M., Kassymbekov Zh., Kassymbekov G. Zh. (2019). Mastering and development hydropower in Kazakhstan. The National Academy of Sciences of the Republic of Кazakhstan, Series of Geology and Technical Sciences, 3(435), 219–224 https://doi.org/10.32014/2019.2518-170X.88 [in Eng.]