Articles
| Open Access |
https://doi.org/10.37547/ajast/Volume05Issue11-20
Studying The Importance Of Processes Performing A Useful Function Due To Movement-Based Vibratory Movement
Abstract
This article studies the physical and mathematical models of technological processes based on induced vibrational motions and their significance in industrial sectors. The influence of vibrational (vibrational) action on mass transfer, energy distribution and structure stabilization in liquid, solid and mixed media is analyzed. Also, the energy-saving and eco-technological advantages of using vibrating systems in chemical and building materials production processes are shown.
Keywords
Vibrating motion, vibration, energy saving
References
Rahmonov, B., & Karimov, D. (2023). Analysis of the application of vibration technologies in industrial processes. Uzbekistan Chemical Journal.
Seader, J. D., & Henley, E. J. (2019). Separation Process Principles. Wiley.
Khodzhaev, N. A. (2021). Fundamentals of Chemical Technology. Tashkent.
Tojiev, B. (2022). Mathematical modeling of mass transfer processes in vibrating systems. Fergana.
Smith, R. (2016). Chemical Process Design and Integration. Wiley.
Макарова, В. И., & Бобренева, К. Л. (2009). Инновационно-инвестиционная деятельность стратегического развития предприятия. Машиностроитель, (8), 45–52.
Минко, И. С. (2018). Инновационность производства и развитие кластеров. Вестник ИНЖЕКОНа. Экономика, 3(16), 63–67.
Национальный доклад «Организационно-управленческие инновации: развитие экономики, основанной на знания». (2018). Москва: Ассоциация Менеджеров.
Яковлев, А. А. (2009, June 30). Технические инновации – это не только космос и ИТ. Независимая газета.
Mamarizayev, I., & Abdunazarov, A. (2022). Multi-stage bubble extractor with increased contact time. Eurasian Journal of Academic Research, 2(7), 112–116.
Komilova, K. (2022). Texnologik jarayonda qo‘llaniladigan qurilmalar tahlili. Eurasian Journal of Academic Research, 2(7), 106–111.
Хурсанов, Б. Ж., & Алиматов, Б. А. (2020). Экстракционное извлечение редких металлов из отвалов ГОК. Universum: технические науки, (6-1 (75)), 42–45.
Khursanov, B. J., & Abdullaev, N. Q. (2022). Influence on efficiency of gas quantity extraction process. Eurasian Journal of Academic Research, 2(6), 321–324.
Khursanov, B. J., & Honkeldiev, M. A. (2022). Energy-saving bubble extractor with extended contact time. Eurasian Journal of Academic Research, 2(6), 115–117.
Khursanov, B. J. (2022). Methods for calculating the economic efficiency of new technology. World Economics and Finance Bulletin, 10, 112–116.
Khursanov, B. J. (2022). Extraction of rare metals from mining dumps in bubbling extractors. American Journal of Applied Science and Technology, 2(05), 35–39.
Хурсанов, Б. Ж., & Алиматов, Б. А. (2022). Исследование взаимного уноса фаз в барботажном экстракторе с увеличенным временем контакта. Central Asian Journal of Theoretical & Applied Sciences, 3(5), 28–33.
Дусматов, А. Д., Ахмедов, А. Ў., Абдуллаев, З. Ж., & Гапаров, К. Г. (2022). Междуслоевые сдвиги двухслойных комбинированных пластин и оболочек с учетом усадки композитных слоев. Oriental Renaissance: Innovative, Educational, Natural and Social Sciences, 2(4), 133–141.
Xursanov, B., Latifjonov, A., & Abdulhakov, U. (2021). Application of innovative pedagogical technologies to improve the quality of education. Scientific Progress, 2(7), 689–693.
Xursanov, B., & Abdullaev, N. (2021). Fundamentals of equipment of technological processes with optimal devices. Scientific Progress, 2(7), 679–684.
Xursanov, B., & Akbarov, O. (2021). Calculation of gas volume in the mixing zones of extended contact time barbotage extractor. Scientific Progress, 2(7), 685–688.
Алиматов, Б. А., Соколов, В. Н., Салимов, З. С., & Хурсанов, Б. Ж. (2003). Исследование распределения капель по размерам в многоступенчатом барботажном экстракторе. Журнал прикладной химии, 76(8), 1309–1311.
Karimov, I., Boykuzi, K., & Madaliyev, A. (2021). Volume-surface diameters of drops in barbotage extractor. International Journal of Innovative Analyses and Emerging Technology, 1(5), 94–99.
Xursanov, B. J., Mamarizayev, I. M. O., & Akbarov, O. D. O. (2021). Operation of mixing zones of barbotage extractor in stable hydrodynamic regime. Scientific Progress, 2(8), 170–174.
Xursanov, B. J., Mamarizayev, I. M. O., & Akbarov, O. D. O. (2021). Application of constructive and technological relationships in machines. Scientific Progress, 2(8), 164–169.
Xursanov, B. J., Mamarizayev, I. M. O., & Abdullayev, N. Q. O. (2021). Application of interactive methods in improving the quality of education. Scientific Progress, 2(8), 175–180.
Isomidinov, A., Boykuzi, K., & Khonnazarov, R. (2021). Effect of rotor-filter device operation parameters on cleaning efficiency. International Journal of Innovative Analyses and Emerging Technology, 1(5), 100–105.
Isomidinov, A., Boykuzi, K., & Madaliyev, A. (2021). Study of hydraulic resistance and cleaning efficiency of gas cleaning scrubber. International Journal of Innovative Analyses and Emerging Technology, 1(5), 106–110.
Алиматов, Б. А., & Хурсанов, Б. Ж. (1998). Расчет величины отстойной зоны барботажного экстрактора. Научно-технический журнал ФерПИ, 1(2), 86–89.
Alimatov, B., & Khursanov, B. (2020). Analysis of droplets size distribution and interfacial surface during pneumatic mixing. Asian Journal of Multidimensional Research, 9(6), 165–171.
Алиматов, Б. А., Соколов, В. Н., & Хурсанов, Б. Ж. (2001). Влияние газосодержания на производительность барботажного экстрактора по тяжелой жидкости. Научно-технический журнал ФерПИ, 2, 93–94.
Ахунбаев, А. А., Туйчиева, Ш. Ш., & Хурсанов, Б. Ж. (2020). Учет диссипации энергии в процессе сушки дисперсных материалов. Universum: технические науки, (12-1), 35–39.
Дусматов, А. Д., Хурсанов, Б. Ж., Ахроров, А. А., & Сулаймонов, А. (2019). Исследование напряженно деформированного состояния двухслойных пластин и оболочек с учетом поперечных сдвигов. В Энерго-ресурсосберегающие технологии и оборудование в дорожной и строительной отраслях (стр. 48–51).
Мирзахонов, Ю. У., Хурсанов, Б. Ж., Ахроров, А. А., & Сулаймонов, А. (2019). Применение параметров натяжного ролика при теоретическом изучении динамики транспортирующих лент. В Энерго-ресурсосберегающие технологии и оборудование в дорожной и строительной отраслях (стр. 134–138).
Алиматов, Б. А., Садуллаев, Х. М., Каримов, И. Т., & Хурсанов, Б. Ж. (2008). Методы расчета и конструирования жидкостных экстракторов с пневмоперемешиванием.
Khursanov, B. J. (2022). An innovative approach to the design of technical and technological processes of production. Eurasian Research Bulletin, 11, 15–19.
Khursanov, B. J. (2022). The factors of ensuring sustaining manufacturing competitiveness. Eurasian Journal of Engineering and Technology, 9, 93–100.
Yusupova, N. X., & Nomoanjonova, D. B. (2022). Innovative technologies and their significance. Central Asian Journal of Mathematical Theory and Computer Sciences, 3(7), 11–16.
Khursanov, B. J. (2023). Factors of preparation of high-quality clinker in rotary kilns. Eurasian Research Bulletin, 17, 73–77.
Khursanov, B. J., & Mirzaev, D. B. (2023). Use of digital technologies in improving educational processes of technological machines and equipment specialists. Science and Innovation, 2(Special Issue 3), 565–567.
Khursanov, B. J. (2023). An innovative approach to the design of technical and technological processes of agricultural products production and increasing the technical level. European Journal of Emerging Technology and Discoveries, 1(2), 93–100.
Tojimatovich, K. I., & Jurakuziyevich, K. B. (2023). Hydrodynamics of fluid transmission capacity of bubble extractor filter. European Journal of Emerging Technology and Discoveries, 1(2), 80–85.
Khursanov, B. J. (2023). Improvement of educational processes in specialized subjects based on digital technologies. European Science Methodical Journal, 1(3), 18–23.
Хурсанов, Б. Ж. (2023). Методы анализа технологических систем переработки энергии. Евразийский исследовательский вестник, 21, 87–92.
Хурсанова, Б. Ж. (2023). Гидродинамика перемешивания жидкостей в барботажных экстракторах. European Journal of Interdisciplinary Research and Development, 21, 161–166.
Khursanov, B. J. (2023). Natural geographical and geoecological problems and their solution. International Journal of Advance Scientific Research, 3(11), 296–301.
Khursanov, B. J. (2025). Analysis of process intensification methods in shell tube heat exchangers. Modern American Journal of Engineering, Technology, and Innovation, 1(6), 66–74.
Khursanov, B. J. (2025). Analysis of intensification of heat exchange using a spiral spring. Modern American Journal of Engineering, Technology, and Innovation, 1(6), 75–82.
Khursanov, B. J. (2025). Fixed tube grate heat exchanger repair problems. European Journal of Emerging Technology and Discoveries, 3(9), 12–19.
Khursanov, B. J. (2025). Analysis of indicators of learning new technologies and technical level and efficiency. International Journal of Advance Scientific Research, 5(10), 44–55.
Khursanov, B. J. (2025). Analysis of technological innovations and advanced technologies. American Journal of Applied Science and Technology, 5(10), 89–94.
Khursanov, B. J. (2025). New technology for development – the importance of technology implementation. Western European Journal of Modern Experiments and Scientific Methods, 3(10), 76–85.
Xursanov, B. J. (2025). Neftni qayta ishlash zavodidagi oqava suvlarning ekologiyaga ta’siri va ularni bartaraf etish. Сборник тезисов, 465.
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