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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Development of a finite element model for coupled radiative and conductive heat transfer in participating media
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Development of a finite element model for coupled radiative and conductive heat transfer in participating media

机译:开发参与媒体耦合辐射和导电传热的有限元模型

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Considering the geometrical applicability, a finite element model (FEM) for coupled radiative-conductive heat transfer has been developed which is applicable to enclosures of arbitrary geometry in present research. The present work provides a solution of coupled heat transfer in a rectangular, cylindrical or annulus enclosure with black or gray walls containing an absorbing-emitting-scattering medium. It is also applied to study the influence of conductive/radiation coefficient, albedo and wall emissivity on the temperature distribution in the medium. Compared with the results available in other references, the present FEM has no limitation with respect to geometry and can predict the coupled radiative-conductive heat transfer in participating media accurately. (C) 2006 Elsevier Ltd. All rights reserved.
机译:考虑到几何适用性,已经开发了用于耦合辐射导电传热的有限元模型(FEM),其适用于本研究中任意几何形状的外壳。 本工作提供了矩形,圆柱形或环形外壳中的耦合传热的解决方案,其中黑色或灰色壁包含吸收发射散射介质。 还应用于研究导电/放射系数,反玻璃和壁发射率对介质温度分布的影响。 与其他参考文献中可获得的结果相比,本FEA没有限制几何形状,并且可以准确地预测参与介质的耦合辐射导电热传递。 (c)2006年elestvier有限公司保留所有权利。

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