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UNIQUE SOLVABILITY OF STATIONARY RADIATIVE-CONDUCTIVE HEAT TRANSFER PROBLEM IN A SYSTEM OF SEMITRANSPARENT BODIES

机译:半透明体系统中固定辐射热传导问题的唯一可解性

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摘要

We consider the boundary value problem for a system of differential equations consisting of the stationary nonlinear heat equation and the integro-differential radiative transfer equation and describing stationary radiative-conductive heat transfer in a system of semitransparent bodies, taking into account the effects of reflection and refraction of radiation according to the Fresnel laws at the boundaries of bodies. We take into account the dependence of radiation intensity and optical properties of bodies on the radiation frequency. We establish the existence and uniqueness of a weak solution. We prove the comparison theorem and derive a priori estimates for weak solutions and obtain a regularity result. Bibliography: 27 titles.
机译:我们考虑由固定非线性热方程和积分-微分辐射传递方程组成的微分方程组的边值问题,并考虑反射和反射的影响,描述了半透明物体系统中的稳态辐射传导热传递。根据菲涅耳定律在物体边界处对辐射进行折射。我们考虑了辐射强度和物体的光学特性对辐射频率的依赖性。我们确定了一个弱解的存在性和唯一性。我们证明了比较定理,并推导了弱解的先验估计,并获得了正则结果。参考书目:27种。

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  • 来源
    《Journal of Mathematical Sciences》 |2017年第5期|618-646|共29页
  • 作者

    A. A. Amosov;

  • 作者单位

    National Research University "Moscow Power Engineering Institute" 14, Krasnokazarmennaya St., Moscow 111250, Russia;

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  • 正文语种 eng
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