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首页> 外文期刊>International Journal of Mechanical Sciences >Analysis of effects of Thermal Non-Equilibrium and Non-Darcy Flow on Natural Convection in a Square Porous Enclosure Provided with a Heated L Shape Plate
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Analysis of effects of Thermal Non-Equilibrium and Non-Darcy Flow on Natural Convection in a Square Porous Enclosure Provided with a Heated L Shape Plate

机译:具有加热L形板的正方形多孔外壳中热非平衡和非达西流动对自然对流的影响分析

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This work involves a study on the convective heat transfer over a two perpendicular plates embedded inside a square porous cavity using non-Darcian flow and Local Thermal Non-Equilibrium (LTNE) assumptions. The problem has been assumed to be steady and two-dimensional coordinates. For non-Darcy flow, the effects of inertia and boundary layer have been included. Finite volume method has been used to discretize and solve the governing equations. The results show that the total average Nusselt number (Nu(T)) is a strong function of modified Rayleigh number (Ra*) and inertia parameter (Fs/Pr*). For a fixed Fs/Pr* , the fluid Nusselt number (Nu(f)) has been found higher than the solid Nusselt number (MO. The results also demonstrated that the thermal conductivity ratio (K-r) has a significant impact on all average Nusselt numbers compared to the scaled heat transfer coefficient (H). However, H has a considerable influence on the intensity of LTNE region in comparison to K-r, especially for their lower values. The size and the power of LTNE region are increased with increasing in Ra* and decreasing in Fs/Pr* . For higher K-r and H, the medium inside cavity be close to the thermal equilibrium condition. The results show that the effect of K-r on all Nu is comprehensive, whereas the effect of H is limited to Nu(s) and hence, the behaviour of Nu(T) is similar to the behaviour of Nu(f). As K-r is increased, Nu(T) becomes very close to Nu(f). Finally, the obtained results have been summarised by developing a correlation of Nu(T )which can be used in engineering design.
机译:这项工作涉及使用非Darcian流量和局部热非平衡(LTNE)假设在方形多孔腔内的两个垂直板上的对流传热研究。假设问题是稳定和二维坐标。对于非达到流动,已经包括惯性和边界层的影响。有限体积法已用于离散和解决控制方程。结果表明,总平均露珠数(NU(T))是修改的瑞利数(RA *)和惯性参数(FS / PR *)的强功能。对于固定的FS / PR *,已经发现流体露珠数(NU(F))高于固体露珠数(MO。结果还证明了导热率(KR)对所有平均冲突产生重大影响与缩放的传热系数(h)相比的数字。然而,与Kr相比,H对Ltne区域的强度具有相当大的影响,特别是对于它们的较低值。Ltne地区的尺寸和功率随着Ra的增加而增加。 *在FS / PR *中减少。对于更高的Kr和H,内腔内部腔内靠近热平衡条件。结果表明,KR对所有Nu的影响是全面的,而H的效果仅限于NU (s)因此,nu(t)的行为类似于nu(f)的行为。随着kr增加,nu(t)变得非常接近nu(f)。最后,总结了所获得的结果通过开发可以在工程设计中使用的nu(t)的相关性。

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