O‘ZGARUVCHAN TEXNOLOGIK REJIMLAR SHAROITIDA KOMPRESSOR VA VENTILYATOR ELEKTROMEXANIK TIZIMLARINING ENERGIYA SAMARADORLIGINI OSHIRISH

Maqolaning asosiy mazmuni

A.A. Shavazov
I.B. Ilekerova
Sh.Sh. Turaxanov

Abstrak

Ushbu maqolada turli texnologik sharoitlarda ishlaydigan kompressor va ventilyatorli elektromexanik tizimlarning energiya samaradorligini oshirishning zamonaviy usullari ko'rib chiqiladi. Asinxron elektr yuritmalarning energetik xarakteristikalariga o'zgaruvchan yuklama, o'tish jarayonlari, qisman yuklama rejimlari va to'xtab turish vaqtlarining ta'siri tahlil qilindi. Chastotaviy boshqariladigan yuritma, adaptiv boshqarish algoritmlari va intellektual boshqarish usullarini qo'llash orqali energiya yo'qotishlarini kamaytirishga alohida e'tibor qaratilmoqda. Energiya samaradorligiga erishish uchun ventilyatsiya tizimlarini dinamik modellashtirish va kompressor qurilmalarini boshqarishning zamonaviy yondashuvlari ko'rib chiqilgan. Ish rejimini optimallashtirish tizimlari va rostlanuvchi elektr yuritmalardan foydalanish energiya sarfini 20–40 foizga, ba'zan esa undan ham ko'proq tejash mumkinligi ko'rsatilgan. O'zgaruvchan texnologik sharoitlarda elektromexanik tizimlarning samaradorligini oshirish bo'yicha tavsiyalar so'nggi ilmiy tadqiqotlar tahlili asosida ishlab chiqilgan.

Maqola tafsilotlari

Bo'lim

05.00.00 – Texnik fanlar

Qanday iqtibos keltirish kerak

O‘ZGARUVCHAN TEXNOLOGIK REJIMLAR SHAROITIDA KOMPRESSOR VA VENTILYATOR ELEKTROMEXANIK TIZIMLARINING ENERGIYA SAMARADORLIGINI OSHIRISH. (2026). Research Focus International Scientific Journal, 5(5), 20-27. https://doi.org/10.66073/researchfocus.v5i5.2242

Adabiyotlar

Dinolova P., Ruseva V., Dinolov O. Energy Efficiency of Induction Motor Drives: State of the Art, Analysis and Recommendations // Energies. – 2023. – Vol. 16(20). – 7136.

Turkeri C., Kiselychnyk O. Dynamical Modelling of a Centrifugal Fan Driven by an Induction Motor and Experimental Validation // Energies. – 2023. – Vol. 16(18). – 6658.

Cheng Z., Tao L., Huang L., Yu Z. Modeling and Experimental Verification of the Electrical Efficiency for Variable-Frequency Rolling Piston Compressor under Variable Suction Conditions // Applied Sciences. – 2023. – Vol. 13(24). – 12992.

Exergy analysis of pressure reduction, back pressure and intermittent air supply configuration of utilization/expansion stage in compressed air systems // Energy. – 2023. – Vol. 285. – 129419.

Load sharing energy savings methodology for systems with multiple centrifugal compressors // Journal of Cleaner Production. – 2023. – Vol. 433. – 139630.

Abduazizov N., Juraev R., Xatamova D. Improving the efficiency of mine compressor units based on the improvement of their cooling system // E3S Web of Conferences. – 2023. – Vol. 417.

Pretorius J.P., Van der Spuy S.J. Enhancing Axial Flow Fan Performance in Air-Cooled Condensers // arXiv. – 2023.

Fernando, M.T.-O.; Navarro-Peris, E.; Barceló-Ruescas, F.; Gonzálvez-Maciá, J. Semi- empirical model of scroll compressors and its extension to describe vapor-injection compressors. Model description and experimental validation. Int. J. Refrig. 2019, 106, 308– 326.

Byrne, P.; Ghoubali, R.; Miriel, J. Scroll compressor modeling for heat pumps using hydrocarbons as refrigerants. Int. J. Refrig. 2014, 41, 1–