首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Combined Mixed Convection and Radiation Heat Transfer in the Presence of Participating Medium in a Square Cavity with an Inside Heated Plate
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Combined Mixed Convection and Radiation Heat Transfer in the Presence of Participating Medium in a Square Cavity with an Inside Heated Plate

机译:结合混合对流和辐射传热在参与介质的存在下,在方形腔内,内部加热板

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摘要

The present paper analyses the interaction between thermal radiation and mixed convection inside a square vented enclosure containing a thin heated plate. The cavity walls are assumed to be diffuse, grey and opaque, while the working fluid is considered to be a radiatively absorbing, emitting and scattering medium. The main attention is focused on the effect of plate inclination angle and radiative parameters on the thermal field, fluid flow and heat transfer rate. The mixed convection governing equations are discretised using the finite volume method and are solved using the SIMPLE algorithm, whereas the solution of the radiative transfer equation is obtained using the discrete ordinate method (DO). Flow parameters such as Grashof number Gr and Richardson number Ri, and geometrical parameters like heated plate inclination are varied to show their impact on heat transfer enhancements. The effect of radiation parameters namely the radiation–conduction parameter RC and fluid optical thickness τ are also discussed while the walls emissivity and single scattering albedo were kept constant. The obtained results show that there is not a limited angle which improves heat transfer for all considered cases, but for every Gr and Ri value, there is a specific inclination which gives the most efficient rate of heat transfer, regardless of other considered parameters. The findings also highlight the influence of thermal radiation on heat transfer behaviour within the enclosure.
机译:本文分析了包含薄加热板的方形通风外壳内部热辐射与混合对流之间的相互作用。假设腔壁是漫射,灰色和不透明的,而工作流体被认为是辐射吸收,发射和散射介质。主要注意力集中在板倾斜角度和辐射参数对热场,流体流动和传热速率的影响。使用有限音量方法离散混合对流控制方程,并使用简单的算法解决,而使用离散纵坐标法(DO)获得辐射传输方程的解决方案。流量参数如Grashof Gr和Richardson Number Ri,以及像加热板倾斜等几何参数,以显示它们对传热增强的影响。还讨论了辐射参数的辐射参数和流体光学厚度τ,同时壁发射率和单散散,保持恒定。获得的结果表明,没有有限的角度改善了所有考虑的病例的传热,但对于每个GR和RI值,具有特定的倾斜度,其提供最有效的传热速率,而不管其他考虑的参数如何。调查结果还突出了热辐射对外壳内传热行为的影响。

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