Artículos Autores

Kryukov, Alexei P.

National Research University, Moscow Power Engineering Institute, Moscow 111250, Russia
Krasnokazarmennaya14, Moscow, 11120, Russia Moscow Moscow RUSSIA

Non-equilibrium effects

High, PhD, DrSci

Articles:

Evolution of a Vapor Cavity in Boiling of a Superfluid Helium(abrir en una nueva pestaña) - Vol. 32 '2001(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

Description of Heat and Mass Transfer in Film Boiling of Superfluid Helium in Microgravity in a Capillary-Porous Body(abrir en una nueva pestaña) - Vol. 34 '2003(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

Growth of a Vapor Film on the Heater Immersed into a Highly Conducting Liquid(abrir en una nueva pestaña) - Vol. 34 '2003(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

Study of Unsteady Evaporation-Condensation Processes on the Surface by the Methods of the Molecular-Kinetic Theory(abrir en una nueva pestaña) - Vol. 34 '2003(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

Special Features of Heat and Mass Transfer During Growth of a Vapor Film in a Porous Shell Filled with Helium II(abrir en una nueva pestaña) - Vol. 38 '2007(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

Distribution of Temperatures over a Spherical Heater Placed in He-II(abrir en una nueva pestaña) - Vol. 39 '2008(abrir en una nueva pestaña) - Heat Transfer Research(abrir en una nueva pestaña)

A NEW CONCEPT OF A SOLAR PROBE SHIELDING FROM INTENSE THERMAL RADIATION OF THE SUN(abrir en una nueva pestaña) - Vol. 0 '2017(abrir en una nueva pestaña) - ICHMT DIGITAL LIBRARY ONLINE(abrir en una nueva pestaña)

INFLUENCE OF NON−CONDENSABLE COMPONENT IN VAPOR-GAS MIXTURE ON THE INTENSITY OF LIQUID DROPLETS EVAPORATION(abrir en una nueva pestaña) - Vol. 4 '2018(abrir en una nueva pestaña) - International Heat Transfer Conference 16(abrir en una nueva pestaña)

THE INFLUENCE OF HOMOGENEOUS NUCLEATION ON THE FLOW OF VAPOR NEAR THE EVAPORATION SURFACE(abrir en una nueva pestaña) - Vol. 6 '2023(abrir en una nueva pestaña) - International Heat Transfer Conference 17(abrir en una nueva pestaña)

Mednikov, A. F.

Distribution of Temperatures over a Spherical Heater Placed in He-II

Reviznikov, Dmitry L.

A NEW CONCEPT OF A SOLAR PROBE SHIELDING FROM INTENSE THERMAL RADIATION OF THE SUN

Yastrebov, Arseniy K.

Study of Unsteady Evaporation-Condensation Processes on the Surface by the Methods of the Molecular-Kinetic Theory

Dergunov, I. M.

Evolution of a Vapor Cavity in Boiling of a Superfluid Helium

Growth of a Vapor Film on the Heater Immersed into a Highly Conducting Liquid

Selyaninova, Yu. Yu.

Special Features of Heat and Mass Transfer During Growth of a Vapor Film in a Porous Shell Filled with Helium II

Levashov, Vladimir Yu.

INFLUENCE OF NON−CONDENSABLE COMPONENT IN VAPOR-GAS MIXTURE ON THE INTENSITY OF LIQUID DROPLETS EVAPORATION

A NEW CONCEPT OF A SOLAR PROBE SHIELDING FROM INTENSE THERMAL RADIATION OF THE SUN

SIMPLE KINETIC MODEL FOR EVAPORATION OF WATER DROPLETS IN AMBIENT AIR

KINETIC APPROACH TO HOMOGENEOUS NUCLEATION AT INTENSIVE EVAPORATION

THE INFLUENCE OF HOMOGENEOUS NUCLEATION ON THE FLOW OF VAPOR NEAR THE EVAPORATION SURFACE

Khurtin, P. V.

Description of Heat and Mass Transfer in Film Boiling of Superfluid Helium in Microgravity in a Capillary-Porous Body

Gorbunov, A. A.

Evolution of a Vapor Cavity in Boiling of a Superfluid Helium

Growth of a Vapor Film on the Heater Immersed into a Highly Conducting Liquid

Mayorov , V.O.

THE INFLUENCE OF HOMOGENEOUS NUCLEATION ON THE FLOW OF VAPOR NEAR THE EVAPORATION SURFACE

Dombrovsky, Leonid A.

A NEW CONCEPT OF A SOLAR PROBE SHIELDING FROM INTENSE THERMAL RADIATION OF THE SUN

Shishkova, Irina N.

INFLUENCE OF NON−CONDENSABLE COMPONENT IN VAPOR-GAS MIXTURE ON THE INTENSITY OF LIQUID DROPLETS EVAPORATION

SIMPLE KINETIC MODEL FOR EVAPORATION OF WATER DROPLETS IN AMBIENT AIR

Study of Unsteady Evaporation-Condensation Processes on the Surface by the Methods of the Molecular-Kinetic Theory