BARBOTAJLI ABSORBER QURILMASINING GIDRAVLIK QARSHILIGINI TADQIQ ETISH
DOI:
https://doi.org/10.5281/zenodo.21718859Keywords:
barbotajli absorber, gidravlik qarshilik, bosim pasayishi, gidrodinamik rejim, gaz–suyuqlik tizimi, mahalliy qarshilik, suyuqlik oqimi tezligi, nazariy modellashtirish, eksperimental tadqiqot, laboratoriya stendi.Abstract
Ushbu tadqiqotda barbotajli absorbsiya qurilmasining gidravlik qarshiligi nazariy va eksperimental tahlil
qilindi. Tajribalar maxsus laboratoriya stendida suyuqlik tezligi va gaz yostigʻi dinamikasining tizim bosimiga taʼsirini oʻrganish
maqsadida oʻtkazildi. Gidrodinamik rejimlarni baholashda gidrostatik va dinamik tashkil etuvchilarni integratsiyalovchi
matematik model qoʻllanildi. Natijalar suyuqlik tezligi ortishi bilan bosim yoʻqotilishining oshishini, gaz yostigʻi parametri
kengayishi bilan esa qarshilikning kamayishini koʻrsatdi. Nazariy va eksperimental qiymatlar oʻrtasidagi nisbiy xatolik
1,8–3,7 % ni tashkil etib, modelning adekvatligini tasdiqladi. Tadqiqot xulosalari absorberlarni loyihalashda energiya sarfini
optimallashtirish va gidrodinamik barqarorlikni taʼminlash uchun nazariy asos boʻlib xizmat qiladi.
References
Karimov, I., & Halilov, I. (2021). Hydrodynamics of Absorption Bubbling Apparatus. Bulletin of Science and Practice,
(11), 210–219. https://doi.org/10.33619/2414-2948/72/26
Karimov, I. T., & Khursanov, B. J. (2023). Hydrodynamics of Fluid Transmission Capacity of Bubble Extractor Filter.
European Journal of Emerging Technology and Discoveries, 1(2), 80–85.
Karimov, I., & Ibrohimov, K. (2024). Theoretical Study of the Hydrodynamics of a Bubble Absorption Apparatus. BIO
Web of Conferences, 145, 03042. https://doi.org/10.1051/bioconf/202414503042
Karimov, I. T., & Ibrohimov, K. (2025). Experimental Studies on Determining Mass Transfer Between Gas and Liquid in
a Bubble Absorption Apparatus. Universum: Khimiya i biologiya, 8(134), 4–10.
Karimov, I. T., & Khalilov, I. L. (2025). Hydraulic Resistance in The Mixing Zones of An Absorption Apparatus. American
Journal of Applied Science and Technology, 5(10), 251–254. https://doi.org/10.37547/ajast/Volume05Issue10-43
Isomidinov, A., & Muidinov, A. (2025). Determination of Load Range for Gas and Liquid Phases in Rotor-Filter
Apparatus. Universum: Tekhnicheskie nauki, 5(134).
Isomidinov, A. S., Khoshimov, A. O., & Askarova, G. M. (2025). Hydrodynamic Performance Analysis of a Rotary Dust
Removal System. American Journal of Applied Science and Technology, 5(10), 240–245. https://doi.org/10.37547/
ajast/Volume05Issue10-41
Isomidinov, A., Abdulazizov, A., Yusupov, D., & Olimjonov, A. (2025). Theoretical Basis of Cascade Dryer Aerodynamics
and Evaluation of Variable Parameters. American Journal of Applied Science and Technology, 5(11), 63–67. https://doi.
org/10.37547/ajast/Volume05Issue11-12
Isomidinov, A., & Mullajonova, M. (2025). Aerodynamic Resistance of Basalt and Glass Fiber-Based Fabrics Used in
Baghouse Filters. Universum: Tekhnicheskie nauki, 4(133).
Kamolov, B. S., Kurbanov, A. A., & Sattorov, L. K. (2023). Features of Filtration of Industrial Gases from Dust with a
Basalt Filter. E3S Web of Conferences, 411, 01036. https://doi.org/10.1051/e3sconf/202341101036
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