Ali Rehman, Ma Chau Khun, Mehdi Tlija, Rashid Jan, Mustafa Inc, Shah Hussain
{"title":"Analytical study and heat transfer analysis of on couple stress flow of hybrid nanofluid over a nonlinear stretching surface","authors":"Ali Rehman, Ma Chau Khun, Mehdi Tlija, Rashid Jan, Mustafa Inc, Shah Hussain","doi":"10.1142/s0217979225500018","DOIUrl":null,"url":null,"abstract":"<p>This research paper investigates a two-dimensional couple stress flow of hybrid nanofluid (HN) over a nonlinear stretching surface with heat transfer analysis. HNs are well-known for their exceptional heat transfer properties compared to conventional fluids. The mathematical modeling of the problem involves the formulation of basic governing equations, namely, continuity, momentum and energy equations. To simplify the analysis, a similarity transformation technique is employed to convert the dimensional NLPDEs into dimensionless NODEs. Subsequently, the obtained governing equations are analytically solved using the HAM. The investigation explores the impact of several parameters, including magnetic field inclination, slip parameter, couple stress parameter, nanoparticle volume fraction, nonlinear stretching parameter, EN, thermophoresis parameter and PN. This study presents graphical representations of temperature and velocity distribution to visualize the effects of these parameters on the HN flow. Furthermore, different graphs and tables are employed to explain the impact of the factors on SF and NN. Notably, the results indicate that the HN exhibits significantly enhanced heat transfer properties over the base fluid, particularly under the influence of an inclined magnetic field. This research is expected to contribute to the advancement of the field of condensed nanostructure and nanomaterials, opening new avenues for further exploration in heat transfer enhancement applications.</p>","PeriodicalId":14108,"journal":{"name":"International Journal of Modern Physics B","volume":"15 1","pages":""},"PeriodicalIF":2.6000,"publicationDate":"2024-02-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"International Journal of Modern Physics B","FirstCategoryId":"101","ListUrlMain":"https://doi.org/10.1142/s0217979225500018","RegionNum":4,"RegionCategory":"物理与天体物理","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"PHYSICS, APPLIED","Score":null,"Total":0}
引用次数: 0
Abstract
This research paper investigates a two-dimensional couple stress flow of hybrid nanofluid (HN) over a nonlinear stretching surface with heat transfer analysis. HNs are well-known for their exceptional heat transfer properties compared to conventional fluids. The mathematical modeling of the problem involves the formulation of basic governing equations, namely, continuity, momentum and energy equations. To simplify the analysis, a similarity transformation technique is employed to convert the dimensional NLPDEs into dimensionless NODEs. Subsequently, the obtained governing equations are analytically solved using the HAM. The investigation explores the impact of several parameters, including magnetic field inclination, slip parameter, couple stress parameter, nanoparticle volume fraction, nonlinear stretching parameter, EN, thermophoresis parameter and PN. This study presents graphical representations of temperature and velocity distribution to visualize the effects of these parameters on the HN flow. Furthermore, different graphs and tables are employed to explain the impact of the factors on SF and NN. Notably, the results indicate that the HN exhibits significantly enhanced heat transfer properties over the base fluid, particularly under the influence of an inclined magnetic field. This research is expected to contribute to the advancement of the field of condensed nanostructure and nanomaterials, opening new avenues for further exploration in heat transfer enhancement applications.
本研究论文通过传热分析研究了非线性拉伸表面上混合纳米流体(HN)的二维耦合应力流。众所周知,与传统流体相比,混合纳米流体具有优异的传热性能。该问题的数学建模涉及基本控制方程的制定,即连续性方程、动量方程和能量方程。为了简化分析,采用了相似性转换技术,将有维数 NLPDE 转换为无维数 NODE。随后,利用 HAM 对所得到的控制方程进行分析求解。研究探讨了几个参数的影响,包括磁场倾斜度、滑移参数、耦合应力参数、纳米粒子体积分数、非线性拉伸参数、EN、热泳参数和 PN。本研究用图形表示温度和速度分布,以直观显示这些参数对 HN 流动的影响。此外,还采用了不同的图表来解释这些因素对 SF 和 NN 的影响。值得注意的是,研究结果表明,与基础流体相比,HN 的传热性能明显增强,尤其是在倾斜磁场的影响下。这项研究有望推动凝聚纳米结构和纳米材料领域的发展,为进一步探索传热增强应用开辟新的途径。
期刊介绍:
Launched in 1987, the International Journal of Modern Physics B covers the most important aspects and the latest developments in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low dimensional materials. One unique feature of this journal is its review section which contains articles with permanent research value besides the state-of-the-art research work in the relevant subject areas.