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Heat transport of nano-micropolar fluid with an exponential heat source on a convectively heated elongated plate using numerical computation

机译:使用数值计算的对指数热源的纳米微柱液的热传输

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摘要

Purpose - The study of novel exponential heat source phenomena across a flowing fluid with a suspension of microparticles and nanoparticles towards a convectively heated plate has been an open question. Therefore, the impact of the exponential heat source in the transport of nano micropolar fluid in the existence of magnetic dipole, Joule heating, viscous heating and convective condition effects has been analytically investigated. Influence of chemical reaction has also been exhibited in this discussion. Design/methodology/approach - The leading equations are constructed via conservation equations of transport, micro-rotation, energy and solute under the non-transient state situation. Suitable stretching transformations are used to transform the system of partial differential equations to ordinary. The transformed ODEs admit numerical solution via Runge-Kutta fourth order method along with shooting technique. Findings - The effects of pertinent physical parameters characterizing the flow phenomena are presented through graphs and discussed. The inclusion of microparticles and nanoparticles greatly affects the flow phenomena. The impact of the exponential heat source (EHS) advances the heat transfer characteristics significantly compared to usual thermal-based heat source (THS). The thermal performance can be improved through the effects of a magnetic dipole, viscous heating, Joule heating and convective condition. Originality/value - The effectiveness of EHS phenomena in the dynamics of nano micropolar fluid past an elongated plate which is convectively heated with regression analysis is for the first time investigated.
机译:目的 - 通过悬浮微粒和纳米颗粒的流动流体的新型指数热源现象的研究是一个令人彻底的问题。因此,已经在分析研究了磁性偶极子,焦耳加热,粘性加热和对流状况效应中纳米微极多极环流体运输中的对指数热源的影响。在本次讨论中也表现出化学反应的影响。设计/方法/方法 - 通过在非瞬态状态情况下通过保护,微旋转,能量和溶质的保护方程构建的前导方程。合适的拉伸变换用于将部分微分方程的系统转换为普通微分方程。转换后的杂散通过Runge-Kutta第四订单方法承认数值解决方案以及拍摄技术。调查结果 - 通过图表呈现出流动现象的相关物理参数的效果并讨论。将微粒和纳米颗粒的包含极大地影响了流动现象。指数热源(EHS)的影响与通常的热基热源(THS)相比,显着提高了传热特性。通过磁性偶极,粘性加热,焦耳加热和对流条件的影响,可以提高热性能。原创性/值 - EHS现象在纳米微极液体动力学中的有效性过去,通过回归分析进行对流地加热的细长板是第一次研究的。

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