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基于乙二醇的纳米流体流经扩张/收缩矩形通道的矩量法求解

Method of moments solution to ethylene glycol based nanofluid flow through expanding/contracting rectangular channel.

作者信息

Muhammad Noor, Ahmed Naveed

机构信息

Department of Mathematics, Faculty of Sciences, HITEC University, Taxila, Pakistan.

出版信息

Heliyon. 2023 Nov 19;9(12):e22415. doi: 10.1016/j.heliyon.2023.e22415. eCollection 2023 Dec.

Abstract

In this study, we present a comprehensive analysis of the laminar time-dependent magnetohydrodynamic (MHD) flow of ethylene glycol-based aluminum oxide nanofluid through a rectangular channel with contracting/expanding porous walls. We investigate the influence of aggregation/non-aggregation of nanoparticles, as well as the presence of thermal radiation. By imposing self-similarities in space and time, we obtain a system of nonlinear ordinary differential equations governing the flow. To solve these equations, we employ a well-known semi-analytical technique known as the Method of Moments (MoM). Additionally, we compare our results with the outcomes achieved through an application of another commonly utilized numerical approach (shooting technique with the Runge-Kutta-Fehlberg scheme). The comparison shows an excellent agreement that endorses the accuracy of the calculated solutions. The velocity and temperature profiles obtained from our analysis exhibit variations due to the changes in involved dimensionless parameters. We present these variations through graphical representations along with their explanations. Interestingly, our study reveals that the aggregation of nanoparticles influences the fluctuations caused by other parameters, and to some extent, suppresses them. Consequently, we observe less deviation among the velocity and temperature curves for the aggregation case compared to the non-aggregation case. These findings have significant implications in real-world engineering and industry. The understanding of the flow behavior of nanofluids through expanding/contracting rectangular channels can aid in the design and optimization of various engineering systems, such as heat exchangers and microfluidic devices. Additionally, our study provides valuable insights into the effects of nanoparticle aggregation and thermal radiation in such systems, offering opportunities for enhancing their efficiency and performance.

摘要

在本研究中,我们对基于乙二醇的氧化铝纳米流体在具有收缩/扩张多孔壁的矩形通道中的层流时间相关磁流体动力学(MHD)流动进行了全面分析。我们研究了纳米颗粒聚集/非聚集的影响以及热辐射的存在。通过在空间和时间上施加自相似性,我们得到了控制流动的非线性常微分方程组。为了求解这些方程,我们采用了一种著名的半解析技术,即矩量法(MoM)。此外,我们将我们的结果与通过应用另一种常用的数值方法(带有龙格 - 库塔 - 费尔贝格格式的打靶技术)所获得的结果进行了比较。比较结果显示出极好的一致性,证实了计算解的准确性。我们分析得到的速度和温度分布由于所涉及的无量纲参数的变化而呈现出变化。我们通过图形表示及其解释来展示这些变化。有趣的是,我们的研究表明纳米颗粒的聚集会影响由其他参数引起的波动,并在一定程度上抑制它们。因此,与非聚集情况相比,我们观察到聚集情况下速度和温度曲线之间的偏差更小。这些发现对实际工程和工业具有重要意义。对纳米流体在扩张/收缩矩形通道中的流动行为的理解有助于各种工程系统的设计和优化,如热交换器和微流体装置。此外,我们的研究为这类系统中纳米颗粒聚集和热辐射的影响提供了有价值的见解,为提高其效率和性能提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a16/10687706/b10b633f8453/gr9.jpg

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