Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process

Drilling fluids are significant in the drilling methods of oils and gases from rocks and land. To improve the performance of drilling fluid clay nanoparticles, play a vital rule. When clay nanoparticles are added to the drilling fluids, the thermal conductivity, viscosity levels, and boiling point o...

Full description

Saved in:
Bibliographic Details
Main Authors: Khan, Ilyas, Hussanan, A., Saqib, Muhammad, Shafie, Sharidan
Format: Article
Published: Springer New York LLC 2019
Subjects:
Online Access:http://eprints.utm.my/id/eprint/87783/
http://dx.doi.org/10.1007/s12668-019-00623-1
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.87783
record_format eprints
spelling my.utm.877832020-11-30T13:20:36Z http://eprints.utm.my/id/eprint/87783/ Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process Khan, Ilyas Hussanan, A. Saqib, Muhammad Shafie, Sharidan Q Science (General) Drilling fluids are significant in the drilling methods of oils and gases from rocks and land. To improve the performance of drilling fluid clay nanoparticles, play a vital rule. When clay nanoparticles are added to the drilling fluids, the thermal conductivity, viscosity levels, and boiling point of the fluid boost which provide resistant to high temperatures and control the fluid cost. Bearing in mind the substantial rule of clay nanoparticles in drilling fluid, this article demonstrates the convection heat transfer in drilling nanofluid. More exactly, clay nanoparticles are suspended in three different based fluids (water, kerosene, and engine oil). The mathematical expressions of Maxwell–Garnett and Brinkman for the effective thermophysical properties of clay nanofluids are utilized, whereas the flow phenomenon is governed by a set linear PDEs with physical initial and boundary conditions. The Laplace transform technique is applied to obtain exact analytical solutions for velocity and temperature profiles. The skin friction and Nusselt number are computed and presented in tabular forms. To insight the influence of various flow parameters, the obtained solutions are computed using Mathcad and plotted in different figures. The results show that the Nusselt number is significantly increased with increasing values of volume concentration. Springer New York LLC 2019-06-15 Article PeerReviewed Khan, Ilyas and Hussanan, A. and Saqib, Muhammad and Shafie, Sharidan (2019) Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process. BioNanoScience, 9 (2). pp. 453-460. ISSN 2191-1630 http://dx.doi.org/10.1007/s12668-019-00623-1 DOI:10.1007/s12668-019-00623-1
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic Q Science (General)
spellingShingle Q Science (General)
Khan, Ilyas
Hussanan, A.
Saqib, Muhammad
Shafie, Sharidan
Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
description Drilling fluids are significant in the drilling methods of oils and gases from rocks and land. To improve the performance of drilling fluid clay nanoparticles, play a vital rule. When clay nanoparticles are added to the drilling fluids, the thermal conductivity, viscosity levels, and boiling point of the fluid boost which provide resistant to high temperatures and control the fluid cost. Bearing in mind the substantial rule of clay nanoparticles in drilling fluid, this article demonstrates the convection heat transfer in drilling nanofluid. More exactly, clay nanoparticles are suspended in three different based fluids (water, kerosene, and engine oil). The mathematical expressions of Maxwell–Garnett and Brinkman for the effective thermophysical properties of clay nanofluids are utilized, whereas the flow phenomenon is governed by a set linear PDEs with physical initial and boundary conditions. The Laplace transform technique is applied to obtain exact analytical solutions for velocity and temperature profiles. The skin friction and Nusselt number are computed and presented in tabular forms. To insight the influence of various flow parameters, the obtained solutions are computed using Mathcad and plotted in different figures. The results show that the Nusselt number is significantly increased with increasing values of volume concentration.
format Article
author Khan, Ilyas
Hussanan, A.
Saqib, Muhammad
Shafie, Sharidan
author_facet Khan, Ilyas
Hussanan, A.
Saqib, Muhammad
Shafie, Sharidan
author_sort Khan, Ilyas
title Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
title_short Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
title_full Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
title_fullStr Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
title_full_unstemmed Convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
title_sort convective heat transfer in drilling nanofluid with clay nanoparticles applications in water cleaning process
publisher Springer New York LLC
publishDate 2019
url http://eprints.utm.my/id/eprint/87783/
http://dx.doi.org/10.1007/s12668-019-00623-1
_version_ 1685578988583387136
score 13.211869