首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Non-similar solutions for mixed convection along a wedge embedded in a porous medium saturated by a non-Newtonian nanofluid: Natural convection dominated regime
【24h】

Non-similar solutions for mixed convection along a wedge embedded in a porous medium saturated by a non-Newtonian nanofluid: Natural convection dominated regime

机译:沿着嵌入非牛顿纳米流体饱和的多孔介质中的楔形的混合对流的非相似解:自然对流占优

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - The purpose of this paper is to present a boundary layer analysis for the mixed convection past a vertical wedge in a porous medium saturated with a power law type non-Newtonian nanofluid. Numerical results for friction factor, surface heat transfer rate and mass transfer rate have been presented for parametric variations of the buoyancy ratio parameter Nr, Brownian motion parameter Nb, thermophoresis parameter Nt, Lewis number Le and the power law exponent n. The dependency of the friction factor, surface heat transfer rate (Nusselt number) and mass transfer rate on these parameters has been discussed. Design/methodology/approach - This general non-linear problem cannot be solved in closed form and, therefore, a numerical solution is necessary to describe the physics of the problem. An implicit, tri-diagonal finite-difference method has proven to be adequate and sufficiently accurate for the solution of this kind of problems. Therefore, it is adopted in the present study. Variable step sizes were used. The convergence criterion employed in this study is based on the difference between the current and the previous iterations. When this difference reached 10~5 for all the points in the r| directions, the solution was assumed to be converged, and the iteration process was terminated. Findings - The results indicate that as the buoyancy ratio parameter (Nr) and thermophoresis parameter (Nt) increase, the friction factor increases whereas the heat transfer rate (Nusselt number) and mass transfer rate (Sherwood number) decrease. As the Brownian motion parameter (Nb) increases, the friction factor and surface mass transfer rates increase whereas the surface heat transfer rate decreases. As Le increases, mass transfer rates increase. As the power law exponent n increases, the heat and mass transfer rates increase. Research limitations/implications - The analysis is valid for natural convection dominated regime. The combined forced and natural convection dominated regimes will be reported in a future work. Practical implications - The approach used is useful in optimizing the porous media heat transfer problems in geothermal energy recovery, crude oil extraction, ground water pollution, thermal energy storage and flow through filtering media. Originality/value - The results of the study may be of some interest to the researchers of the field of porous media heat transfer. Porous foam and microchannel heat sinks used for electronic cooling are optimized utilizing the porous medium. The utilization of nanofluids for cooling of microchannel heat sinks requires understanding of fundamentals of nanofluid convection in porous media.
机译:目的-本文的目的是针对在幂律型非牛顿纳米流体饱和的多孔介质中经过垂直楔形的混合对流提供边界层分析。对于浮力比参数Nr,布朗运动参数Nb,热泳参数Nt,路易斯数Le和幂律指数n的参数变化,已经给出了摩擦系数,表面传热速率和传质速率的数值结果。讨论了摩擦系数,表面传热速率(努塞尔数)和传质速率对这些参数的依赖性。设计/方法/方法-这个一般的非线性问题无法以封闭形式解决,因此,必须使用数值解来描述问题的物理性质。已经证明,隐式三对角线有限差分方法对于解决此类问题是足够且足够准确的。因此,它在本研究中被采用。使用了可变步长。本研究中采用的收敛准则基于当前迭代与先前迭代之间的差异。当r |中所有点的差达到10〜5时。方向,假设解决方案已经收敛,并且迭代过程终止。结果-结果表明,随着浮力比参数(Nr)和热泳参数(Nt)的增加,摩擦系数增加,而传热速率(Nusselt数)和传质速率(Sherwood数)减小。随着布朗运动参数(Nb)的增加,摩擦系数和表面传质速率增加,而表面传热速率降低。随着Le的增加,传质速率增加。随着幂律指数n的增加,传热和传质速率也会增加。研究的局限性/意义-该分析对自然对流占主导地位的方案有效。在未来的工作中将报告以强迫和自然对流为主的联合体制。实际意义-所使用的方法可用于优化地热能回收,原油开采,地下水污染,热能存储和流经过滤介质中的多孔介质传热问题。原创性/价值-研究的结果可能对多孔介质传热领域的研究人员感兴趣。利用多孔介质优化了用于电子冷却的多孔泡沫和微通道散热器。利用纳米流体冷却微通道散热器需要了解多孔介质中纳米流体对流的基本原理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号