Электронная библиотека (репозиторий) Томского государственного университета
Moiseeva, Ksenia M.

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Source: Combustion, explosion, and shock waves. 2022. Vol. 58, № 5. P. 602-609
Type: статьи в журналах
Date: 2022
Description: A conjugated physical and mathematical model for the combustion of a composite solid propellant with addition of a polydisperse boron powder is presented. This model accounts for gas-dynamic processes ... More
Source: Combustion, explosion, and shock waves. 2022. Vol. 58, № 2. P. 197-205
Type: статьи в журналах
Date: 2022
Description: The combustion of a metallized composite solid propellant containing boron particles is numerically studied. The mathematical model is based on the approaches of two-phase reacting medium mechanics fo ... More
Source: Journal of engineering physics and thermophysics. 2022. Vol. 95, № 6. P. 1604-1614
Type: статьи в журналах
Date: 2022
Description: The nonstationary burning of a solid propellant in the combustion chamber of a controllable solid-propellant propulsion system under the conditions where the pressure in this chamber changes was simul ... More
Source: Journal of engineering physics and thermophysics. 2021. Vol. 94, № 3. P. 753-764
Type: статьи в журналах
Date: 2021
Description: A mathematical model of combustion of an aerosol of an aluminum nanopowder suspension in kerosene is presented, in which the state parameters of aerosol are determined by solving the system of energy ... More
Source: Journal of engineering physics and thermophysics. 2021. Vol. 94, № 2. P. 345-356
Type: статьи в журналах
Date: 2021
Description: Based on a two-phase two-velocity model of a reacting gas-dispersed medium, a mathematical model of combustion of a boron powder gas suspension has been formulated. The results of numerical solution o ... More
Source: Journal of engineering physics and thermophysics. 2021. Vol. 94, № 1. P. 79-87
Type: статьи в журналах
Date: 2021
Description: A mathematical model of high-temperature oxidation of a nanosize aluminum particle has been presented. The model takes account of the diffusion of the oxidant and the aluminum vapor through a spherica ... More
Source: Nonequilibrium processes: recent accomplishments. M., 2020. P. 139-141
Type: статьи в сборниках
Date: 2020
Source: Nonequilibrium processes: recent accomplishments. M., 2020. P. 97-99
Type: статьи в сборниках
Date: 2020
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