...
首页> 外文期刊>Multidiscipline modeling in materials and structures >MHD micropolar nanofluid flow through an inclined channel with entropy generation subjected to radiative heat flux, viscous dissipation and multiple slip effects
【24h】

MHD micropolar nanofluid flow through an inclined channel with entropy generation subjected to radiative heat flux, viscous dissipation and multiple slip effects

机译:MHD Micropolar纳米流体流过倾斜通道,熵发电经过辐射热通量,粘性耗散和多次滑动效果

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Purpose - Miniaturization with high thermal performance and lower cost is one of the advanced developments in industrial science chemical and engineering fields including microheat exchangers, micro mixers, micropumps, cooling microelectro mechanical devices, etc. In addition to this, the minimization of the entropy is the utilization of the energy of thermal devices. Based on this, in the present investigation, micropolar nanofluid flow through an inclined channel under the impacts of viscous dissipation and mixed convection with velocity slip and temperature jump has been numerically studied. Also the influence of magnetism and radiative heat flux is used. Design/methodology/approach - The nonlinear system of ordinary differential equations are obtained by applying suitable dimensionless variables to the governing equations, and then the Runge-Kutta-Felhberg integration scheme is used to find the solution of velocity and temperature. Entropy generation and Bejan number are calculated via using these solutions. Findings - It is established to notice that the entropy generation can be improved with the aspects of viscous dissipation, magnetism and radiative heat flux. The roles of angle of inclination (a), Eckert number (Ec), Reynolds number (Re), thermal radiation (Rd), material parameter (K). slip parameter (δ), microinertial parameter (a_j), magnetic parameter (M), Grashof number (Gr) and pressure gradient parameter (A) are demonstrated. It is found that the angle of inclination and Grashof number enhances the entropy production while it is diminished with material parameter and magnetic parameter. Originality/value - Electrically conducting micropolar nanofluid flow through an inclined channel subjected to the friction irreversibility with temperature jump and velocity slip under the influence of radiative heat flux has been numerically investigated.
机译:目的 - 具有高热性能的小型化和较低的成本是工业科学化学和工程领域的先进发展之一,包括微热交换器,微混合器,微泵,冷却微电器机械装置等。除此之外,熵的最小化是热器件能量的利用。基于此,在本研究中,在数值研究了在粘性耗散和混合对流的冲击下通过倾斜通道流过倾斜通道的微柱纳米流体在数值上进行了数值研究。还使用磁性和辐射热通量的影响。设计/方法/方法 - 通过将合适的无量值变量施加到控制方程来获得常微分方程的非线性系统,然后使用Runge-Kutta-Felhberg集成方案来找到速度和温度的溶液。通过使用这些解决方案计算熵生成和BEJAN编号。调查结果 - 建立注意,可以随着粘性耗散,磁性和辐射热通量的方面改善熵生成。倾斜角度(a),eCkert数(EC),雷诺数(RE),热辐射(RD),材料参数(k)的作用。 SLIP参数(Δ),微观图参数(A_J),磁参数(M),GRASHOF编号(GR)和压力梯度参数(A)。发现倾斜角和格雷什数量的角度增强了熵产生,而在材料参数和磁性参数下降。在数值上研究了原创性/值导电通过倾斜通道经受摩擦不可逆性的倾斜通道,在辐射热通量的影响下经受摩擦不可逆性的倾斜通道。

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