Author Details

Gubaidullin, D. A.

Issue Section Title File
Vol 54, No 6 (2016) Heat and Mass Transfer and Physical Gasdynamics Spherical particle dynamics at oscillations in tubes in the shock wave field
Vol 55, No 1 (2017) Heat and Mass Transfer and Physical Gasdynamics Interaction of the acoustic signal with motionless discretely layered medium containing a layer of bubbly liquid
Vol 55, No 3 (2017) Short Communications Experimental study of coagulation and sedimentation of gas-particle suspension in closed tube under transfer to the shock-wave regime
Vol 56, No 1 (2018) Heat and Mass Transfer and Physical Gasdynamics Numerical Simulation of the Turbulent Upward Flow of a Gas-Liquid Bubble Mixture in a Vertical Pipe: Comparison with Experimental Data
Vol 56, No 1 (2018) Short Communications The Dynamics of an Aerosol in an Open Tube under Oscillations of Various Intensities near Resonance
Vol 56, No 2 (2018) Short Communications Effect of Phase Transitions on the Reflection of Acoustic Waves from the Boundary of a Vapor-Gas-Liquid Mixture
Vol 57, No 1 (2019) Short Communications Acoustic Waves in Viscoelastic Bubbly Media
Vol 56, No 5 (2018) Heat and Mass Transfer and Physical Gasdynamics Acoustic Waves in Multifraction Gas Suspensions in the Presence of Phase Transformations
Vol 57, No 2 (2019) Short Communications Dynamics of Tobacco Smoke under Resonant Oscillations in a Closed Tube
Vol 57, No 3 (2019) Heat and Mass Transfer and Physical Gasdynamics Reflection of Acoustic Wave Incident Normal to the Interface between Two Multifraction Gas Suspensions
Vol 57, No 3 (2019) Short Communications Acoustic Waves in Multifraction Gas Suspensions with Polydisperse Inclusions
Vol 57, No 4 (2019) Short Communications Propagation of Spherical and Cylindrical Waves in Multifraction Polydisperse Gas Suspensions
Vol 57, No 5 (2019) Short Communications Smoke Deposition upon Nonlinear Oscillations in an Open Tube near Resonance
Vol 57, No 6 (2019) Heat and Mass Transfer and Physical Gasdynamics Numerical Study of the Influence of the Breakup of Dispersed Phase on the Distribution of a Shock Wave from Pure Gas into Aerosol