含有固体颗粒、液滴和气泡的两相流动的水气动力学和热物理学

IF 1 4区 物理与天体物理 Q4 PHYSICS, APPLIED
A. Yu. Varaksin
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引用次数: 0

摘要

摘要 阐述了两相流研究的主要问题和特点。简要介绍了两相流数学建模的主要方法,这些方法在不同层次上描述了界面边界、界面相互作用和载体相的湍流。此外,还介绍和分析了有关固体颗粒、液滴和气泡两相流的一些最新研究成果:对使用固体燃料的动力推进系统进行热保护的有效方法;确定碳纳米管凝结对气态碳氢化合物燃烧和爆炸的贡献;飞机防冰方法;喷雾羽流发展和稳定性的具体特征;声波在气体与固体颗粒的多分多分散蒸汽-气体-液滴混合物中的传播;气泡液体中爆炸波的发展;等等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Hydrogasdynamics and Thermal Physics of Two-Phase Flows with Solid Particles, Droplets, and Bubbles

Hydrogasdynamics and Thermal Physics of Two-Phase Flows with Solid Particles, Droplets, and Bubbles

Abstract

The main problems and features of the study of two-phase flows are considered. The main methods for the mathematical modeling of two-phase flows, which describe the interface boundary, interface interactions, and turbulence of the carrier phase at different hierarchical levels, are briefly described. Some of the latest research results on two-phase flows with solid particles, droplets, and bubbles are described and analyzed: effective methods of thermal protection of power propulsion systems operating on solid fuels; determining the contribution of carbon nanoparticle condensation to the combustion and detonation of gaseous hydrocarbons; aircraft anti-icing methods; specific features of the development and stability of a spray plume; acoustic wave propagation in multifractional polydisperse vapor–gas–droplet mixtures of gas with solid particles; development of detonation waves in a bubbly liquid; and many others.

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来源期刊
High Temperature
High Temperature 物理-物理:应用
CiteScore
1.50
自引率
40.00%
发文量
0
审稿时长
4-8 weeks
期刊介绍: High Temperature is an international peer reviewed journal that publishes original papers and reviews written by theoretical and experimental researchers. The journal deals with properties and processes in low-temperature plasma; thermophysical properties of substances including pure materials, mixtures and alloys; the properties in the vicinity of the critical point, equations of state; phase equilibrium; heat and mass transfer phenomena, in particular, by forced and free convections; processes of boiling and condensation, radiation, and complex heat transfer; experimental methods and apparatuses; high-temperature facilities for power engineering applications, etc. The journal reflects the current trends in thermophysical research. It presents the results of present-day experimental and theoretical studies in the processes of complex heat transfer, thermal, gas dynamic processes, and processes of heat and mass transfer, as well as the latest advances in the theoretical description of the properties of high-temperature media.
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