Mathematical modeling and the study of exchange processes in disperse boundary layer control actions

A significant interest of researchers is attracted to the effective management and forecasting of exchange processes in the boundary layer, which are key for the implementation of effective and reliable equipment. Modeling of exchange processes occurring in a high-speed dispersed boundary layer with...

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Main Authors: A. A. Bondarenko, V. N. Kovalnogov, R. V. Fedorov, A. V. Chukalin
Format: Article
Language:Russian
Published: Moscow State Technical University of Civil Aviation 2019-10-01
Series:Научный вестник МГТУ ГА
Subjects:
Online Access:https://avia.mstuca.ru/jour/article/view/1525
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author A. A. Bondarenko
V. N. Kovalnogov
R. V. Fedorov
A. V. Chukalin
author_facet A. A. Bondarenko
V. N. Kovalnogov
R. V. Fedorov
A. V. Chukalin
author_sort A. A. Bondarenko
collection DOAJ
description A significant interest of researchers is attracted to the effective management and forecasting of exchange processes in the boundary layer, which are key for the implementation of effective and reliable equipment. Modeling of exchange processes occurring in a high-speed dispersed boundary layer with external influences is a very difficult task. Mathematical modeling allows us to develop reliable devices and engines for the fields of aircraft, energy, shipbuilding with minimal costs for its creation. Despite the interest of numerous groups of researchers around the scientific projects and a large number of works, the current theory of the boundary layer is imperfect. This may be due to several circumstances: firstly, the theory of single-phase turbulent flows of continuous media is far from being completed, secondly, turbulent flows with dispersed impurities in the form of particles greatly complicate the already intricate flow pattern. Interest in dispersed flows is particularly relevant due to the fact that almost all gas-dynamic flows contain a certain concentration of particles, and their impact can provoke significant changes in the structure of the boundary layer and affect the intensity of exchange processes. The article proposes a two-fluid mathematical model describing the motion of a high-speed dispersed boundary layer on a surface with hemispherical damping cavities. The use of hemispherical damping cavities allows to reduce turbulent exchange in the boundary layer, which makes it possible to control the intensity of metabolic processes. The possibility of a significant reduction of turbulent heat transfer and friction in the dispersed boundary layer is established. The proposed method of impact on the turbulent transport in the boundary layer will improve the equipment and installations, including GTU and GTE used in various industries of our country, such as energy, aircraft, shipbuilding.
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spelling doaj.art-4603713f41064996a0cf5146704e4e852023-03-13T07:19:20ZrusMoscow State Technical University of Civil AviationНаучный вестник МГТУ ГА2079-06192542-01192019-10-0122581810.26467/2079-0619-2019-22-5-8-181320Mathematical modeling and the study of exchange processes in disperse boundary layer control actionsA. A. Bondarenko0V. N. Kovalnogov1R. V. Fedorov2A. V. Chukalin3Ульяновский институт гражданской авиации имени Главного маршала авиации Б.П. Бугаева»Ульяновский государственный технический университетУльяновский государственный технический университетУльяновский государственный технический университетA significant interest of researchers is attracted to the effective management and forecasting of exchange processes in the boundary layer, which are key for the implementation of effective and reliable equipment. Modeling of exchange processes occurring in a high-speed dispersed boundary layer with external influences is a very difficult task. Mathematical modeling allows us to develop reliable devices and engines for the fields of aircraft, energy, shipbuilding with minimal costs for its creation. Despite the interest of numerous groups of researchers around the scientific projects and a large number of works, the current theory of the boundary layer is imperfect. This may be due to several circumstances: firstly, the theory of single-phase turbulent flows of continuous media is far from being completed, secondly, turbulent flows with dispersed impurities in the form of particles greatly complicate the already intricate flow pattern. Interest in dispersed flows is particularly relevant due to the fact that almost all gas-dynamic flows contain a certain concentration of particles, and their impact can provoke significant changes in the structure of the boundary layer and affect the intensity of exchange processes. The article proposes a two-fluid mathematical model describing the motion of a high-speed dispersed boundary layer on a surface with hemispherical damping cavities. The use of hemispherical damping cavities allows to reduce turbulent exchange in the boundary layer, which makes it possible to control the intensity of metabolic processes. The possibility of a significant reduction of turbulent heat transfer and friction in the dispersed boundary layer is established. The proposed method of impact on the turbulent transport in the boundary layer will improve the equipment and installations, including GTU and GTE used in various industries of our country, such as energy, aircraft, shipbuilding.https://avia.mstuca.ru/jour/article/view/1525турбулентный переносполусферические демпфирующие полостиматематическое моделированиепограничный слойтеплообмен
spellingShingle A. A. Bondarenko
V. N. Kovalnogov
R. V. Fedorov
A. V. Chukalin
Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
Научный вестник МГТУ ГА
турбулентный перенос
полусферические демпфирующие полости
математическое моделирование
пограничный слой
теплообмен
title Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
title_full Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
title_fullStr Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
title_full_unstemmed Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
title_short Mathematical modeling and the study of exchange processes in disperse boundary layer control actions
title_sort mathematical modeling and the study of exchange processes in disperse boundary layer control actions
topic турбулентный перенос
полусферические демпфирующие полости
математическое моделирование
пограничный слой
теплообмен
url https://avia.mstuca.ru/jour/article/view/1525
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