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Natural element method analysis for coupled radiative and conductive heat transfer in semitransparent medium with irregular geometries

机译:具有不规则几何形状的半透明介质中辐射与传导耦合传热的自然元方法分析

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This paper analyzes the radiative heat transfer problem coupled with conduction in an absorbing, emitting and isotropically scattering medium with the irregular geometries using the natural element method (NEM). Two kinds of optical boundary conditions are considered: semitransparent boundary with diffuse reflection and transmission of radiation and opaque gray boundary. The boundary is kept at constant temperature or subjected to the convective heating (cooling) and irradiation of black surroundings. The NEM as a meshless method is a relative new numerical scheme in the field of computational mechanics. It has been employed to solve the radiative heat transfer recently. In this paper, we first validate the natural element solutions in dealing with the coupled heat transfer problem with the semitransparent surface considering mixed boundary conditions by comparison with those reported in the literature. Afterward, we study the steady state and transient heat transfer problems coupled with radiation and conduction in the semicircular enclosure with an inner circle. For the steady state coupled heat transfer, only one surface with convective heating and irradiation of black environment is considered semitransparent, while other surfaces are opaque and subjected to constant wall temperature. For transient coupled heat transfer, the conditions of convective heating and environment irradiation are set on two surfaces that are semitransparent and opaque, respectively. Effects of various parameters such as the conduction-radiation parameter, refractive index of the medium, extinction coefficient, scattering albedo, convective heat transfer coefficient and the temperature of the black surrounding are analyzed on the temperature distributions in the medium.
机译:本文使用自然元法(NEM)分析了具有不规则几何形状的吸收,发射和各向同性散射介质中的辐射传热问题以及传导问题。考虑两种光学边界条件:具有漫反射和辐射透射的半透明边界和不透明的灰色边界。边界保持在恒定温度或经受对流加热(冷却)和黑色环境的照射。 NEM作为无网格方法是计算力学领域中一个相对较新的数值方案。近来已经采用它来解决辐射热传递。在本文中,我们首先通过与文献报道相比较,验证了考虑混合边界条件的半透明表面耦合传热问题的自然元解。之后,我们研究了带有内圆的半圆形外壳中的稳态和瞬态传热问题,以及辐射和传导问题。对于稳态耦合传热,只有一个具有对流加热和黑色环境辐射的表面被认为是半透明的,而其他表面是不透明的并且受到恒定的壁温。对于瞬态耦合传热,对流加热和环境辐照的条件分别设置在半透明和不透明的两个表面上。分析了介质的温度分布,如辐射参数,介质的折射率,消光系数,散射反照率,对流换热系数和周围环境的温度等各种参数的影响。

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