Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme
Saving energy, shortening processing times, maximizing thermal efficiency, and lengthening the life of industrial equipment are all possible outcomes of heating and cooling optimization. In recent years, there has been a rise in interest regarding the development of high-efficiency thermal systems f...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
V.N. Karazin Kharkiv National University Publishing
2024-03-01
|
Series: | East European Journal of Physics |
Subjects: | |
Online Access: | https://periodicals.karazin.ua/eejp/article/view/22690 |
_version_ | 1797272687165308928 |
---|---|
author | Ramasekhar Gunisetty Sangapatnam Suneetha Vanipenta Ravikumar Shaik Jakeer Seethi Reddy Reddisekhar Reddy |
author_facet | Ramasekhar Gunisetty Sangapatnam Suneetha Vanipenta Ravikumar Shaik Jakeer Seethi Reddy Reddisekhar Reddy |
author_sort | Ramasekhar Gunisetty |
collection | DOAJ |
description | Saving energy, shortening processing times, maximizing thermal efficiency, and lengthening the life of industrial equipment are all possible outcomes of heating and cooling optimization. In recent years, there has been a rise in interest regarding the development of high-efficiency thermal systems for the purpose of enhancing heat and mass movement. This study presents an investigation on the non-linear flow of a hybrid nanofluid comprising of Multi Walled Carbon Nanotubes (MWCNTs) and Single Walled Carbon Nanotubes (SWCNTs) over an extended surface, considering the effects of Magnetohydrodynamics (MHD) and porosity, with engine oil serving as the base fluid. Also, radiation and Darcy-Forchheimer flow is considered. The problem of regulating flow is transformed into ordinary differential equations (ODEs) by employing similarity variables. The Midrich Scheme is then used to implement a numerical solution to these equations in the program Maple. Through visual representations of fluid velocities and temperatures, the inquiry addresses several important factors, including magnetic parameters, porosity parameters, radiation parameters, Eckert numbers, inertia coefficients, and Biot numbers. The research has important implications in a number of real-world contexts. Due to its exceptional characteristics, such as reduced erosion, reduced compression drops difficulties, and greatly increased heat transfer rates, hybrid nanofluids are frequently used in heat exchangers. For instance, various cooling devices such as electromagnetic cooling systems, as well as heat exchangers including condensers, boilers, chillers, air conditioners, evaporators, coil preheaters, and radiators. Furthermore, it has the potential to be employed in pharmaceutical businesses and the field of biomedical nanoscience. |
first_indexed | 2024-03-07T14:32:56Z |
format | Article |
id | doaj.art-631015790bc64321a4b86ae0e077b061 |
institution | Directory Open Access Journal |
issn | 2312-4334 2312-4539 |
language | English |
last_indexed | 2024-03-07T14:32:56Z |
publishDate | 2024-03-01 |
publisher | V.N. Karazin Kharkiv National University Publishing |
record_format | Article |
series | East European Journal of Physics |
spelling | doaj.art-631015790bc64321a4b86ae0e077b0612024-03-05T22:41:10ZengV.N. Karazin Kharkiv National University PublishingEast European Journal of Physics2312-43342312-45392024-03-01119220210.26565/2312-4334-2024-1-1622690Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich SchemeRamasekhar Gunisetty0Sangapatnam Suneetha1Vanipenta Ravikumar2Shaik Jakeer3Seethi Reddy Reddisekhar Reddy4Department of Mathematics, Rajeev Gandhi Memorial College of Engineering and Technology (Autonomous), Nandyal, Andhra Pradesh, IndiaDepartment of Applied Mathematics Yogi Vemana University Kadapa, Andhra Pradesh, IndiaDepartment of Mathematics, Annamacharya Institute of Technology and Sciences, (Autonomous), Rajampet, Andhra Pradesh, IndiaSchool of Technology, The Apollo University, Chittoor, Andhra Pradesh, IndiaDepartment of Mathematics, Koneru Lakshmaiah Education Foundation, Bowrampet, Hyderabad, Telangana, IndiaSaving energy, shortening processing times, maximizing thermal efficiency, and lengthening the life of industrial equipment are all possible outcomes of heating and cooling optimization. In recent years, there has been a rise in interest regarding the development of high-efficiency thermal systems for the purpose of enhancing heat and mass movement. This study presents an investigation on the non-linear flow of a hybrid nanofluid comprising of Multi Walled Carbon Nanotubes (MWCNTs) and Single Walled Carbon Nanotubes (SWCNTs) over an extended surface, considering the effects of Magnetohydrodynamics (MHD) and porosity, with engine oil serving as the base fluid. Also, radiation and Darcy-Forchheimer flow is considered. The problem of regulating flow is transformed into ordinary differential equations (ODEs) by employing similarity variables. The Midrich Scheme is then used to implement a numerical solution to these equations in the program Maple. Through visual representations of fluid velocities and temperatures, the inquiry addresses several important factors, including magnetic parameters, porosity parameters, radiation parameters, Eckert numbers, inertia coefficients, and Biot numbers. The research has important implications in a number of real-world contexts. Due to its exceptional characteristics, such as reduced erosion, reduced compression drops difficulties, and greatly increased heat transfer rates, hybrid nanofluids are frequently used in heat exchangers. For instance, various cooling devices such as electromagnetic cooling systems, as well as heat exchangers including condensers, boilers, chillers, air conditioners, evaporators, coil preheaters, and radiators. Furthermore, it has the potential to be employed in pharmaceutical businesses and the field of biomedical nanoscience.https://periodicals.karazin.ua/eejp/article/view/22690bvp midrich schememhdthermal radiationporous mediumheat sourcedarcy-forchheimer flowhybrid nanofluid |
spellingShingle | Ramasekhar Gunisetty Sangapatnam Suneetha Vanipenta Ravikumar Shaik Jakeer Seethi Reddy Reddisekhar Reddy Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme East European Journal of Physics bvp midrich scheme mhd thermal radiation porous medium heat source darcy-forchheimer flow hybrid nanofluid |
title | Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme |
title_full | Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme |
title_fullStr | Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme |
title_full_unstemmed | Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme |
title_short | Importance of Reflected Solar Energy Loaded with SWCNTs-MWCNTs/EG Darcy Porous Stretched Surface: Midrich Scheme |
title_sort | importance of reflected solar energy loaded with swcnts mwcnts eg darcy porous stretched surface midrich scheme |
topic | bvp midrich scheme mhd thermal radiation porous medium heat source darcy-forchheimer flow hybrid nanofluid |
url | https://periodicals.karazin.ua/eejp/article/view/22690 |
work_keys_str_mv | AT ramasekhargunisetty importanceofreflectedsolarenergyloadedwithswcntsmwcntsegdarcyporousstretchedsurfacemidrichscheme AT sangapatnamsuneetha importanceofreflectedsolarenergyloadedwithswcntsmwcntsegdarcyporousstretchedsurfacemidrichscheme AT vanipentaravikumar importanceofreflectedsolarenergyloadedwithswcntsmwcntsegdarcyporousstretchedsurfacemidrichscheme AT shaikjakeer importanceofreflectedsolarenergyloadedwithswcntsmwcntsegdarcyporousstretchedsurfacemidrichscheme AT seethireddyreddisekharreddy importanceofreflectedsolarenergyloadedwithswcntsmwcntsegdarcyporousstretchedsurfacemidrichscheme |