三元杂化纳米流体在两个正弦变形弯管之间的蠕动泵送

IF 1.9 4区 工程技术 Q3 ENGINEERING, MECHANICAL
Z. Abbas, Rabia Mehboob, M. Rafiq, S. Khaliq, Amjad Ali
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引用次数: 1

摘要

本文旨在考察三元杂化纳米流体在两个正弦变形润滑的弯曲同心管之间的混合对流蠕动传输。钛、氧化铝和铜纳米颗粒被用来解决目前血液作为基础流体的问题。热量方程也在存在热量产生/吸收的情况下进行建模。流动几何形状从外侧的弯曲形状结构,内部存在的蠕动内窥镜具有柔性的复杂性质,类似于活体器官的内窥镜。在长波长和小雷诺数假设下,遵循了所提出模型的控制表达式。利用变量分离技术得到了流场,即速度、温度、泵送现象和流线的精确解。此外,还使用图表来检查和讨论不同的参数结果。结果表明,正弦曲线管外壁附近的液体速度增加,但随着蠕动内窥镜的曲率参数的增加,液体速度下降。通过提高曲率参数的值来降低流体温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
This paper aims to inspect the mixed convective peristaltic transport of ternary hybrid nanofluids between two sinusoidally deforming lubricated curved concentric tubes. Titanium, Alumina, and copper nanoparticles are taken for the current problem with blood as a base fluid. The heat equation is also modeled in the presence of heat generation/absorption. The curved shape structure of flow geometry from the external side with a flexible complex nature of the peristaltic endoscope present inside that is similar to the endoscopy of a living organ. The governing expressions of the proposed model are followed under the long wavelength and small Reynolds number hypothesis. The exact solutions for flow fields that is, velocity, temperature, pumping phenomenon, and streamlines are attained by utilizing the separation of variable technique. Furthermore, graphs are used to examine and discuss different parameters outcomes. The outcomes reveal that liquid velocity enhances near the outer wall of the sinusoidal curved tube but it declines with the peristaltic endoscope for enhancing curvature parameter. The fluid temperature is reduced by enhancing the values of curvature parameter.
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来源期刊
Advances in Mechanical Engineering
Advances in Mechanical Engineering 工程技术-机械工程
CiteScore
3.60
自引率
4.80%
发文量
353
审稿时长
6-12 weeks
期刊介绍: Advances in Mechanical Engineering (AIME) is a JCR Ranked, peer-reviewed, open access journal which publishes a wide range of original research and review articles. The journal Editorial Board welcomes manuscripts in both fundamental and applied research areas, and encourages submissions which contribute novel and innovative insights to the field of mechanical engineering
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