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 als...

Full description

Bibliographic Details
Main Authors: Zaheer Abbas, Rabia Mehboob, Muhammad Yousuf Rafiq, Sabeeh Khaliq, Amjad Ali
Format: Article
Language:English
Published: SAGE Publishing 2023-07-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/16878132231189373
_version_ 1797769945315016704
author Zaheer Abbas
Rabia Mehboob
Muhammad Yousuf Rafiq
Sabeeh Khaliq
Amjad Ali
author_facet Zaheer Abbas
Rabia Mehboob
Muhammad Yousuf Rafiq
Sabeeh Khaliq
Amjad Ali
author_sort Zaheer Abbas
collection DOAJ
description 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.
first_indexed 2024-03-12T21:16:24Z
format Article
id doaj.art-f56bd43a4ac84f08859e628f3b7ab185
institution Directory Open Access Journal
issn 1687-8140
language English
last_indexed 2024-03-12T21:16:24Z
publishDate 2023-07-01
publisher SAGE Publishing
record_format Article
series Advances in Mechanical Engineering
spelling doaj.art-f56bd43a4ac84f08859e628f3b7ab1852023-07-29T13:33:21ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402023-07-011510.1177/16878132231189373Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubesZaheer Abbas0Rabia Mehboob1Muhammad Yousuf Rafiq2Sabeeh Khaliq3Amjad Ali4Department of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanDepartment of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanDepartment of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanDepartment of Mathematics, The Islamia University of Bahawalpur, Bahawalpur, PakistanCentre for Advanced Studies in Pure and Applied Mathematics, Bahauddin Zakariya University, Multan, PakistanThis 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.https://doi.org/10.1177/16878132231189373
spellingShingle Zaheer Abbas
Rabia Mehboob
Muhammad Yousuf Rafiq
Sabeeh Khaliq
Amjad Ali
Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
Advances in Mechanical Engineering
title Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
title_full Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
title_fullStr Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
title_full_unstemmed Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
title_short Peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
title_sort peristaltic pumping of ternary hybrid nanofluid between two sinusoidally deforming curved tubes
url https://doi.org/10.1177/16878132231189373
work_keys_str_mv AT zaheerabbas peristalticpumpingofternaryhybridnanofluidbetweentwosinusoidallydeformingcurvedtubes
AT rabiamehboob peristalticpumpingofternaryhybridnanofluidbetweentwosinusoidallydeformingcurvedtubes
AT muhammadyousufrafiq peristalticpumpingofternaryhybridnanofluidbetweentwosinusoidallydeformingcurvedtubes
AT sabeehkhaliq peristalticpumpingofternaryhybridnanofluidbetweentwosinusoidallydeformingcurvedtubes
AT amjadali peristalticpumpingofternaryhybridnanofluidbetweentwosinusoidallydeformingcurvedtubes