Papers by Leonard Vasiliev
Journal of engineering physics and thermophysics, Sep 1, 2021
AIAA Journal, 1979
This work is devoted to the experimental study of fluid evaporation and boiling heat transfer in ... more This work is devoted to the experimental study of fluid evaporation and boiling heat transfer in grooved thin-film evaporators, with heating under the third-order boundary conditions. Acetone is used as the test fluid. Evaporators with triangular and rectangular grooves are tested. The finite-difference calculations show that heat removal along the groove is similar to hyperbolic. As a result, the analytical
Revue Générale de Thermique, 1999
Archives of Thermodynamics, 2004
Revue Générale de Thermique, 1999
NATO Science Series II: Mathematics, Physics and Chemistry, 2005
Proceeding of Heat Pipe Technology: Volume 1. Fundamentals and Experimental Studies, 2023
Proceeding of Heat Pipe Technology: Volume 1. Fundamentals and Experimental Studies
Proceeding of Heat Pipe Technology: Volume 1. Fundamentals and Experimental Studies, 2023
Thermal processes in engineering
Proceeding of International Heat Transfer Conference 5, 1974
Journal of Applied Mechanical Engineering, 2018
Heat Pipe Science and Technology, An International Journal, 2012
Heat Pipes and Solid Sorption Transformations, 2013
Journal of Engineering Physics and Thermophysics, 2012
Heat management is the design bottleneck in creation of rational gas storage sorption systems. In... more Heat management is the design bottleneck in creation of rational gas storage sorption systems. Inefficient heat transfer in sorption bed is connected with relatively low thermal conductivity (0.1-0.5 W/m/K) and appreciable sorption heat of activated gas storage materials. This work is devoted to development and research of the thermally regulated onboard system of hydrogenous gas (methane, and hydrogen) storage applying the novel carbon sorbents. We suggested the hydrogenous gas storage based on combined gas adsorption and compression at moderates pressures (3-6 MPa) and low temperatures (from the temperature of liquid nitrogen about 77 K to 273 K).
Proceeding of Advances in Heat Transfer Engineering
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Papers by Leonard Vasiliev