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engineering, mechanical (3) 3
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International Journal of Heat and Mass Transfer, ISSN 0017-9310, 09/2013, Volume 64, pp. 817 - 828
The experimental results of the influence of different net structures on the dynamics of wall-free non-stationary air vortices are presented. These vortices... 
Wall-free vortices | Vortex–net interaction | Non-stationary vortices | Experimental modeling | Buoyancy driven air vortices | Vortex-net interaction | MECHANICS | TORNADO-LIKE VORTEX | THERMODYNAMICS | GENERATION | MODEL | SIMULATION | ENGINEERING, MECHANICAL | Dust devils | Turbulence | Analysis
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 11/2012, Volume 55, Issue 23-24, pp. 6567 - 6572
The purpose of the paper is to find the heating rates of underlying surface and air temporal and spatial temperature shear which lead to the stable genesis of... 
Wall-free vortices | Natural convection | Non-stationary vortices | Unstable air stratification | BUOYANT-THERMOCAPILLARY INSTABILITIES | HEAT-TRANSFER | FIELD | MODEL | VORTEX | FLOW | ENGINEERING, MECHANICAL | SIMULATED TORNADO | MECHANICS | LIQUID LAYERS | THERMODYNAMICS | THERMAL-CONVECTION | LABORATORY CONDITIONS | Heating | Vortices | Fluid flow | Aerodynamics | Devices | Stratification | Temporal logic | Mass transfer
Journal Article
Herald of the Bauman Moscow State Technical University, Series Natural Sciences, ISSN 1812-3368, 2018, Volume 2018, Issue 1, pp. 84 - 94
Journal Article
International Journal of Heat and Mass Transfer, ISSN 0017-9310, 07/2017, Volume 110, pp. 890 - 897
•The possibility of wall-free non-stationary fire whirls generation due to axisymmetric flames instability is demonstrated.•The first data on the fire whirls... 
Fire whirls | Wall-free fire whirls | Non-stationary whirls generation | MECHANICS | VORTICES | THERMODYNAMICS | AIR | ENGINEERING, MECHANICAL | Combustion
Journal Article
Tuijin Jishu = Journal of Propulsion Technology, ISSN 1001-4055, 01/2019, Issue 2, p. 267
To alleviate the laminar separation on high loaded low pressure turbine cascade of PAKB that operating at low Reynolds number of 2.5×104,a dynamic hump was... 
Suction | Separation | Computational fluid dynamics | Computer simulation | Reynolds number | Fluid flow | Upstream | Sine waves | Laminar flow | Vortices | Low pressure | Wall flow | Flow control | Pressure loss | Free flow | Active control | Turbines
Journal Article
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