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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Numerical simulations for the analysis of entropy generation during natural convection in porous rhombic enclosures
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Numerical simulations for the analysis of entropy generation during natural convection in porous rhombic enclosures

机译:多孔菱形壳体自然对流过程中熵产生分析的数值模拟

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摘要

Entropy generation analysis has been introduced to investigate the effectiveness in heat transfer during natural convection within porous rhombic enclosures of various inclination angles ψ for differential (case 1) and Rayleigh Benard (case 2), heating situations. The results are presented in terms of streamlines (ψ), isotherms (θ), and entropy generation maps (S_θ and S_ψ). Entropy production on the basis of various heating patterns and geometrical orientations have been reported based on the relation between total entropy generation (S_(total)) and average Nusselt number (Nu_l or Nu_b) via Bejan Number, which relates the available thermal energy to irreversibilities.
机译:引入了熵产生分析法,以研究在不同倾斜角ψ的多孔菱形外壳中自然对流过程中传热的有效性(情况1)和瑞利·贝纳德(情况2),加热情况。结果以流线(ψ),等温线(θ)和熵生成图(S_θ和S_ψ)表示。基于总的熵产生(S_(total))和平均努塞尔数(Nu_1或Nu_b)之间通过Bejan数的关系,已经报道了基于各种加热模式和几何取向的熵产生,这将可利用的热能与不可逆性相关。

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