半透明介质中的辐射传热

IF 0.6 4区 工程技术 Q4 MECHANICS
V. A. Tovstonog
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引用次数: 0

摘要

被辐射加热的物体中的热交换过程的特点是,辐射通量的影响不仅取决于其大小,而且取决于材料相对于辐射的定性特性,即其可能的部分透明(半透明)。这种效应表现在加热的体积特性上,被加热物体的反射率和发射率等整体特性取决于材料的体积物理特性与作用辐射及其形成的温度场的关系。表现出部分透明性质的结构元件的热状态由包含能量方程的伴随方程组决定,在凝聚态介质(材料)的特殊情况下-导热方程和辐射传递的积分-微分方程。本文讨论了求解辐射传递方程的一种近似方法及其一些应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Radiative Heat Transfer in Translucent Media

Radiative Heat Transfer in Translucent Media

Heat exchange processes in objects heated by radiation are characterized by the fact that the effect from the radiation flux depends not only on its magnitude, but also on the qualitative characteristics of the material in relation to the radiation, namely, its possible partial transparency (semi-transparency). This effect manifests itself in the volumetric nature of heating, and such integral characteristics as the reflectivity and emissivity of the heated object depend on the volumetric physical properties of the material in relation to the acting radiation and the temperature field formed by it. The thermal state of the structural elements exhibiting the property of partial transparency is determined by the adjoint system of equations containing the energy equation, in the particular case of a condensed medium (material)—the heat conductivity equation, and the integro-differential equation of radiation transfer. In this paper, one of the approximate methods for solving the radiation transfer equation and some of its applications are considered.

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来源期刊
Fluid Dynamics
Fluid Dynamics MECHANICS-PHYSICS, FLUIDS & PLASMAS
CiteScore
1.30
自引率
22.20%
发文量
61
审稿时长
6-12 weeks
期刊介绍: Fluid Dynamics is an international peer reviewed journal that publishes theoretical, computational, and experimental research on aeromechanics, hydrodynamics, plasma dynamics, underground hydrodynamics, and biomechanics of continuous media. Special attention is given to new trends developing at the leading edge of science, such as theory and application of multi-phase flows, chemically reactive flows, liquid and gas flows in electromagnetic fields, new hydrodynamical methods of increasing oil output, new approaches to the description of turbulent flows, etc.
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