首页> 外文期刊>Heat transfer >Heat transfer enhancement in oscillatory two-phase flow of Casson and ferrofluid comprising differently shaped nanoparticles in a horizontal composite channel
【24h】

Heat transfer enhancement in oscillatory two-phase flow of Casson and ferrofluid comprising differently shaped nanoparticles in a horizontal composite channel

机译:Casson和铁磁流体在水平复合通道中的不同成形纳米颗粒的振荡两相流动的热传递增强

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The most commonly discussed topic at the present time is the fluid flow in a channel having a porous area, as it is of practical importance for petroleum extraction, frequently isolated irrigation, coolant circulation, biofluid transportation in living organisms, and industrial cleaning systems. An investigation of heat transfer characteristics of unsteady magnetohy-drodynamics oscillatory two-immiscible fluid flow of Casson fluid (CF) and ferrofluid (FF) in a long-infinite horizontal composite channel is performed analytically. The channel is divided into two regions. Region I is occupied by a porous region with CF, while Region II is a clear region filled with FF. The mathematical system of coupled partial differential equations is solved analytically considering the two-term periodic and nonperiodic functions. The influences of physical parameters such as CF parameter, porosity parameter, nanoparticles volume fraction, Hartmann number, periodic frequency parameter, oscillations amplitude, and pressure on momentum as well as heat transfer are presented through graphical illustrations (two-dimensional along with three-dimensional) and in tabular form using the MATHEMATICA program. Four different shaped nano-size ferroparticles are used in this study. The investigation of four different na-nosized ferroparticles exhibits that the momentum transfer is higher when brick-shaped nanosized ferroparticles are added to the base fluid, water. It is also observed that thermal performance enhances in the case of brick-shaped nanosized ferroparticles compared to the blade, cylinder, and platelet-shaped nanosized ferroparticles. It is observed that the dispersion of brick-shaped nanosized ferroparticles is recommended in base fluid water for greater thermal performance through a horizontal channel.
机译:目前最常见的话题是具有多孔区域的通道中的流体流动,因为它具有对石油提取的实际重要性,经常隔离灌溉,冷却剂循环,生物体和工业清洁系统的生物流体运输。在分析上进行了一种在长无限水平复合通道中的不稳定磁流动动力学振荡的传热特性的传热特性的调查。通道分为两个区域。区域I由具有CF的多孔区域占据,而区域II是填充FF的透明区域。耦合偏微分方程的数学系统在考虑双术语周期性和非星期性功能的情况下进行了解解决。通过图形图示给出了CF参数,孔隙率参数,纳米粒子体积分数,HARTMANN编号,周期性频率参数,振荡幅度以及动量的压力以及传热的压力的影响使用Mathematica程序的表格形式。本研究使用四种不同形状的纳米尺寸的铁晶粒。当将砖形纳米化铁晶体加入到基础液中,水时,对四种不同的Na-oSparticles的研究表明,当砖形纳米化铁晶粒中加入水中时,较高。还观察到,与叶片,圆筒和血小板形纳米化铁晶粒相比,热能在砖形纳米化铁晶粒的情况下增强。观察到砖形纳米晶粒状晶粒的分散在基础流体水中建议通过水平通道进行更大的热性能。

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