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Impact of finite wavy wall thickness on entropy generation and natural convection of nanofluid in cavity partially filled with non-Darcy porous layer

机译:有限波壁厚度对腔内填充非达西多孔层的腔内纳米流体熵生成和自然对流的影响

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This paper investigates the natural convection inside a partially layered porous cavity with a heated wavy solid wall; the geometry is encountered in compact heat exchangers. Alumina nanoparticles are included in the water to enhance the heat exchange process. The incidental entropy generation is also studied to evaluate the thermodynamic irreversibility. The nanofluid flow is taken as laminar and incompressible while the advection inertia effect in the porous layer is taken into account by adopting the Darcy-Forchheimer model. The problem is explained in the dimensionless form of the governing equations and solved by the finite element method. The Darcy number (Da), porosity of the porous layer (epsilon), number of undulations (N), and the nanoparticles volume fraction (phi) are varied to assess the heat transfer and the incidental entropy generation. It is found that the waviness of the solid wall augments the average Nusselt number and minimizes the generation of entropy. The results show for some circumstances that the Nusselt number is augmented by 43.8% when N is raised from 0 (flat solid wall) to 4. It is also found that the porosity of the porous layer is a more crucial parameter than its permeability, where a 37.4% enhancement in the Nusselt number is achieved when the porosity is raised from 0.2 to 0.8.
机译:本文通过加热的波状固体壁研究了部分分层多孔腔内的自然对流;在紧凑的热交换器中遇到几何形状。氧化铝纳米粒子包含在水中以增强热交换过程。还研究了偶然熵生成,以评估热力学不可逆转性。纳米流体流动作为层流和不可压缩,而通过采用达西学前摩尔模型考虑了多孔层中的惯性效应。该问题以控制方程的无量纲形式解释并通过有限元方法解决。多孔层(ε),多孔层(ε),起伏(N)的孔隙率和纳米颗粒体积分数(PHI)的达通数(DA),以评估传热和偶然熵生成。结果发现,实心壁的波纹增强了平均露珠数并最大限度地减少了熵的产生。结果表明,当N升至0(扁平固体壁)至4时,南部数量增加了43.8%。还发现多孔层的孔隙率比其渗透率更重要的参数当孔隙率从0.2升至0.8时,达到尿素数量的37.4%的增强。

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