Mechanism of heat transfer with Nanofluids for the application in oil wells

Nanofluid plays an important role in a drilling process which includes the removal of cuttings, lubricating, and cooling the drill bits. Nonetheless, production increases from the reservoirs which are non-conventional, and the stability and performance of conventional drilling fluids under high-temp...

Full description

Saved in:
Bibliographic Details
Main Authors: A.H. Bhat, Imran Khan, Irshad Ul Haq Bhat, H. Soleimani, Mohd Amil Usmani
Format: Non-Indexed Article
Published: Springer 2017
Online Access:http://discol.umk.edu.my/id/eprint/8379/
https://link.springer.com/chapter/10.1007/978-3-319-29761-3_7
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Malaysia Kelantan
id my.umk.eprints.8379
record_format eprints
spelling my.umk.eprints.83792022-05-23T10:27:12Z http://discol.umk.edu.my/id/eprint/8379/ Mechanism of heat transfer with Nanofluids for the application in oil wells A.H. Bhat Imran Khan Irshad Ul Haq Bhat H. Soleimani Mohd Amil Usmani Nanofluid plays an important role in a drilling process which includes the removal of cuttings, lubricating, and cooling the drill bits. Nonetheless, production increases from the reservoirs which are non-conventional, and the stability and performance of conventional drilling fluids under high-temperature and high-pressure (HTHP) environment have apprehensiveness. Both water- and oil-based drilling fluids are likely to experience a number of degenerations such as degradation of weighting materials, gelation, and disintegration of polymeric additives under HTHP conditions. Lately, nanotechnology has shown a lot of promise in the oil and gas sectors, including nanoparticle-based drilling fluids. This chapter is focused on to explore the influence of nanoparticles on the heat transfer efficiency of drilling fluids to make the drilling phenomena smooth and cost effective. The chapter begins with explaining the importance of drilling fluid during the drilling process with a historical assessment of drilling fluid industry development. It is followed by definitions, uses, and types of drilling fluid as well as the additives that are appended to enhance drilling fluid performance. Moreover, the progress of the oil production industry from unconventional wells has been discussed after which the limitations and degradation of the traditional drilling fluid have been taken up. Finally, this chapter discusses the great potential of nanotechnology in solving drilling problems in addition to the technical and the economic benefits of using nanomaterials in drilling fluids before offering a brief conclusion. Springer 2017-01-12 Non-Indexed Article NonPeerReviewed A.H. Bhat and Imran Khan and Irshad Ul Haq Bhat and H. Soleimani and Mohd Amil Usmani (2017) Mechanism of heat transfer with Nanofluids for the application in oil wells. Engineering Applications of Nanotechnology. pp. 175-192. ISSN 2364-3293 https://link.springer.com/chapter/10.1007/978-3-319-29761-3_7
institution Universiti Malaysia Kelantan
building Perpustakaan Universiti Malaysia Kelantan
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Kelantan
content_source UMK Institutional Repository
url_provider http://umkeprints.umk.edu.my/
description Nanofluid plays an important role in a drilling process which includes the removal of cuttings, lubricating, and cooling the drill bits. Nonetheless, production increases from the reservoirs which are non-conventional, and the stability and performance of conventional drilling fluids under high-temperature and high-pressure (HTHP) environment have apprehensiveness. Both water- and oil-based drilling fluids are likely to experience a number of degenerations such as degradation of weighting materials, gelation, and disintegration of polymeric additives under HTHP conditions. Lately, nanotechnology has shown a lot of promise in the oil and gas sectors, including nanoparticle-based drilling fluids. This chapter is focused on to explore the influence of nanoparticles on the heat transfer efficiency of drilling fluids to make the drilling phenomena smooth and cost effective. The chapter begins with explaining the importance of drilling fluid during the drilling process with a historical assessment of drilling fluid industry development. It is followed by definitions, uses, and types of drilling fluid as well as the additives that are appended to enhance drilling fluid performance. Moreover, the progress of the oil production industry from unconventional wells has been discussed after which the limitations and degradation of the traditional drilling fluid have been taken up. Finally, this chapter discusses the great potential of nanotechnology in solving drilling problems in addition to the technical and the economic benefits of using nanomaterials in drilling fluids before offering a brief conclusion.
format Non-Indexed Article
author A.H. Bhat
Imran Khan
Irshad Ul Haq Bhat
H. Soleimani
Mohd Amil Usmani
spellingShingle A.H. Bhat
Imran Khan
Irshad Ul Haq Bhat
H. Soleimani
Mohd Amil Usmani
Mechanism of heat transfer with Nanofluids for the application in oil wells
author_facet A.H. Bhat
Imran Khan
Irshad Ul Haq Bhat
H. Soleimani
Mohd Amil Usmani
author_sort A.H. Bhat
title Mechanism of heat transfer with Nanofluids for the application in oil wells
title_short Mechanism of heat transfer with Nanofluids for the application in oil wells
title_full Mechanism of heat transfer with Nanofluids for the application in oil wells
title_fullStr Mechanism of heat transfer with Nanofluids for the application in oil wells
title_full_unstemmed Mechanism of heat transfer with Nanofluids for the application in oil wells
title_sort mechanism of heat transfer with nanofluids for the application in oil wells
publisher Springer
publishDate 2017
url http://discol.umk.edu.my/id/eprint/8379/
https://link.springer.com/chapter/10.1007/978-3-319-29761-3_7
_version_ 1763303975812071424