The article examines the theoretical foundations of ventilation system operation in underground mine workings. Based on mathematical models proposed by I.I. Medvedev, D.I. Alimenko, and N.N. Mohirev, an analysis of the dependence of air flow rate Q on resistance R and air density ρ has been carried out. It has been shown that as resistance increases, the air flow decreases, while an increase in density leads to a higher flow rate. It has also been established that flow mixing, wall friction, and energy losses have a significant impact on ventilation efficiency.
| Mualliflar | Ravshanov, Avaz Aliugli, Nurkhonov, Khusan Almirzaugli, Nizomov, Tulkin Najimovich, Eshtilov, Salohiddin Adilovich, Равшанов, Аваз Алиугли, Нурхонов, Хусан Алмирзаугли, Низомов, Тулкин Нажимович, Эштилавов, Салохиддин Адилович, Ravshanov, Avaz Alio‘g‘li, Nurxonov, Xusan Almirzao‘g‘li, Nizomov, To‘lqin Najimovich, Eshtilavov, Salohiddin Adilovich |
|---|---|
| Jurnal | Саноатда рақамли технологиялар |
| Nashr sanasi | 2025-10-08 |
| Jild | 3 |
| Son | 3 |
| Betlar | 99-102 |
| Til | O‘zbek |
| DOI | 10.70769/3030-3214.srt.3.3.2025.32 |
DOI: 10.70769/3030-3214.srt.3.3.2025.32 · Maqolaning asl sahifasi
Toxic gases, air movement, air density, flow, local fan, underground mine working, mine walls, law of energy conservation, explosion, mine, static pressure, kinetic energy, impact forces, air flow mixing, Вредные газы, движение воздуха, плотность воздуха, поток, местный вентилятор, подземная горная выработка, стенки выработок, закон сохранения энергии, взрыв, шахта, статическое давление, кинетическая энергия, ударные силы, смешивание воздушных потоков, zaharli gazlar, havo harakati, zichlik, oqim, mahalliy ventilyator, yer osti kon lahimi, devor, energiya saqlanish qonuni, portlashportlash, shaxta, statik bosim, kenetik energiya, zarba, havo aralashishi
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