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首页> 外文期刊>International Journal of Mechanical Sciences >Two-phase simulation of non-Newtonian nanofluid natural convection in a circular annulus partially or completely filled with porous media
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Two-phase simulation of non-Newtonian nanofluid natural convection in a circular annulus partially or completely filled with porous media

机译:圆环中的非牛顿纳米流体自然对流的两相模拟部分或完全填充多孔介质

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Highlights?Non-Newtonian nanofluid free convection in a partially porous cavity is investigated.?2-phase mixture with Corcione's model & power-law formulation are used for nanofluid.?Effects of conductivity ratio,Rd, Ra, Da andnon Nu, Ns& PE investigated.?Use of full (partial) porous cavity is recommended for high (low) keff/kf.?Shear-thickening nanofluids have higher PE with respect to shear-thinning nanofluids.AbstractIn this study, natural convection heat transfer and entropy generation of the non-Newtonian power-law nanofluid including Al2O3nanoparticles, inside a cylindrical annular cavity with a concentric circular heat source covered with a conductive porous layer are investigated numerically. The nanofluid is modeled using two-phase mixture model and the mixture viscosity and thermal conductivity are computed by Corcione's correlations. The effect of partial or complete filling of the enclosure with porous media for various Rayleigh (Ra?=?104–106), Darcy (Da?=?10?4–10?1), power-law index (n?=?0.6–1.4), effective to base fluid thermal conductivity ratio (keff/kf?=?16, 4) and the porous layer thickness (Rd) are studied on heat transfer, entropy generation and the overall performance. Results are presented and compared in terms of the average Nu, non-dimensional entropy generation, Bejan number, streamline and isotherm contours and performance coefficient (PE). Outcomes indicate that forkeff/kf?=?16 the fully porous cavity is recommended, while forkeff/kf?=?4, depending on the value of Ra, Da andnparameters a proper porous layer thickness should be selected. Also, shear-thinning nanofluids show higher Nu with respect to the other studied cases. Fully porous cavities have the lowest entropy generation with the highest PE value, and for shear-thinning nanofluids the highest PE corresponds to Ra?=?104.
机译:<![cdata [ 突出显示 在部分多孔腔中的非牛顿纳米流体自由对流进行了部分多孔腔。 < CE:列表项ID =“CelistItem0002”> 2相>与Corcione模型和幂律制定的2相混合物用于纳米流体。 r d ,ra,da和 n 在nu,n s &pe scortig ated。 建议使用全(部分)多孔腔(低)k eff / k f 剪切增稠纳米流体具有更高的剪切稀疏纳米流体。 抽象 < CE:Abstract-SEC ID =“ABSS0002”View =“全部”> 在本研究中,自然对流传热和熵产生非牛顿电源-Law纳米流体包括AL 2 O 3 纳米粒子,在数值上研究了覆盖有导电多孔层的同心圆形热源的圆柱形环形腔内。使用两相混合物模型进行建模纳米流体,并通过Corcione的相关性来计算混合物粘度和导热率。用多孔介质填充外壳的部分或完全填充各种瑞利(RA?=?10 4 -10 6 ),达西(da?=?10 ?4 -10 ?1 < / ce:sup>),幂律指数( n? = 0.6-1.4),有效基础流体导热率( k EFF / K F ?=?16,4)和多孔层厚度( R D )在传热,熵生成和整体性能上研究。在平均NU,非维熵生成,BEJAN编号,流线和等温轮廓和性能系数(PE)方面提出和比较了结果。结果表明,对于 k eff / k f ?=?16建议完全多孔腔,而对于 k eff / k F ?=?4,取决于RA,DA和 N 参数应选择适当的多孔层厚度。此外,剪切稀释纳米流体显示出对另一个研究的病例的更高的NU。完全多孔腔具有最高PE值的最低熵生成,并且对于剪切稀疏的纳米流体,最高PE对应于RA?=?10 4

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