| BENEFICIATION | |
| Название | Development of energy-efficient geometry of the submersible horizontal mixer |
| DOI | 10.17580/tsm.2026.05.01 |
| Автор | Grigorieva А. N., Anufriev А. V. |
| Информация об авторе | Elma-Asterion Group of Companies, Saint Petersburg, Russia А. N. Grigorieva, General Director, Candidate of Technical Sciences, an@td-elma.ru |
| Реферат | The metallurgical industry, including non-ferrous metallurgy enterprises, is one of the largest water consumers and sources of wastewater generation. The discharges contain heavy metal ions (copper, nickel, zinc, lead), suspended solids, petroleum products, and flotation reagents, which requires the use of multi-stage and energy-intensive purification schemes. A key factor in the effectiveness of physical and chemical and biological methods of water treatment is high-quality mixing, ensuring an even distribution of reagents, maintaining floccules in suspension and preventing siltation of containers. One of the most effective means of creating directional circulation in largecapacity tanks and aerotanks is submersible horizontal mixers (SHM), performance of which is directly determined by the amount of axial thrust generated. Optimization of the geometry of the SHM blades to maximize thrust with minimal energy consumption is an urgent scientific and technical task. The main purpose of this article is to define criteria for creating an energy-efficient mixer geometry based on the recommendations of the propeller design theory, taking into account the global experience of well-known manufacturers. The efficiency parameters have been determined experimentally on a special stand that allows measuring the thrust and productivity of the mixer to calculate key indicators. |
| Ключевые слова | Submersible horizontal mixer, blade geometry, thrust load, mixing efficiency, water treatment, aerotank, energy efficiency |
| Библиографический список | 1. Bocharov V. A., Ignatkina V. A., Kayumov A. A. Theory and practice ofmine ral separation of massive refractory polymetallic ores of non-ferrous metals : monograph. Moscow : Gornaya kniga, 2019. 510 p. |
| Language of full-text | русский |
| Полный текст статьи | Получить |


