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Paper Title

Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review

Authors

Saibalini Nayak , Subhabrata Ray , Gargi Das

Keywords

non-Newtonian liquid, gas-liquid two phase flow, biphasic liquid flow, Taylor bubbles, bubble interactions

Abstract

This article presents a brief review on the multiphase flow of non-Newtonian fluids with the primary focus on the hydrodynamic parameters of gas-liquid and liquid-liquid two phase flow in closed conduits. The review includes experimental studies, analytical models and numerical simulations. The nature of the hydrodynamics of gas/non-Newtonian liquid flow is complex as compared to gas/Newtonian liquid because of high apparent viscosity and the associated elastic behavior. Several studies are available in literature for the prediction of flow pattern, holdup and pressure drop for two-phase flow regimes for gas-Newtonian two phase flow. Hence research work on the hydrodynamics of Newtonian /non-Newtonian fluid mixtures require a concentrated effort. Most of the research gaps are found regarding the study of Taylor bubbles, liquid/liquid two phase flow in channels, gas/liquid and liquid/liquid flow of non-Newtonian fluids in microchannels/millichannels.

How To Cite

Choose the style your journal or department asks for, then copy it. Every version below is generated from this paper's own record.

IJRTI — journal style
"Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review", IJRTI - International Journal for Research Trends and Innovation (www.ijrti.org), ISSN:2456-3315, Vol.7, Issue 3, page no.41 - 64, March-2022, Available :https://ijrti.org/papers/IJRTI2203010.pdf
APA — 7th edition
Nayak, S., Ray, S., & Das, G. (2022). Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review. International Journal for Research Trends and Innovation, 7(3), 41 - 64. https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010
MLA — 9th edition
Nayak, Saibalini, et al. "Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review." International Journal for Research Trends and Innovation, vol. 7, no. 3, 2022, pp. 41 - 64, https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010.
Chicago — 17th, bibliography
Nayak, Saibalini, Subhabrata Ray, and Gargi Das. "Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review." International Journal for Research Trends and Innovation 7, no. 3 (2022): 41 - 64. https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010.
Harvard — author–date
Nayak, S., Ray, S. and Das, G. (2022) 'Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review', International Journal for Research Trends and Innovation, 7(3), pp. 41 - 64. Available at: https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010
IEEE — numbered reference
S. Nayak, S. Ray and G. Das, "Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review," IJRTI, vol. 7, no. 3, pp. 41 - 64, Mar. 2022.
Vancouver — biomedical
Nayak S, Ray S, Das G. Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review. IJRTI. 2022 Mar;7(3):41 - 64.
AMA — 11th edition
Nayak S, Ray S, Das G. Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review. IJRTI. 2022;7(3):41 - 64. Accessed at https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010
BibTeX — Zotero, Mendeley, LaTeX
@article{IJRTI2203010, author = {Saibalini Nayak and Subhabrata Ray and Gargi Das}, title = {Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review}, journal = {International Journal for Research Trends and Innovation}, volume = {7}, number = {3}, pages = {41 - 64}, year = {2022}, month = {March}, issn = {2456-3315}, url = {https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010} }
RIS — EndNote, RefWorks
TY - JOUR AU - Nayak, Saibalini AU - Ray, Subhabrata AU - Das, Gargi TI - Influence of Non-Newtonian Rheology on Gas-Liquid and Liquid-Liquid Flow in Closed Conduits – A Review T2 - International Journal for Research Trends and Innovation JA - IJRTI VL - 7 IS - 3 PY - 2022 SN - 2456-3315 UR - https://ijrti.org/viewpaperforall.php?paper=IJRTI2203010 SP - 41 EP - 64 ER -

Issue

Volume 7 Issue 3, March-2022
Pages : 41 - 64

Other Publication Details

Paper Reg. ID IJRTI_181702
Published Paper ID IJRTI2203010
Downloads 205,623
Research Area Chemical Engineering 
Country Paschim Medinipur, West Bengal, India
Published March 2022

About Publisher

International Journal for Research Trends and Innovation Published by IJRTI (JW Publication)
2456-3315 ISSN
10.57 Impact Factor
2016 ESTD Year
Open Access
Impact Factor 10.57 calculated by Google Scholar and Semantic Scholar.
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Licence

© 2022 — Authors hold the copyright of this article. This work is licensed under a Creative Commons Attribution 4.0 International License and The Open Definition. This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0), which permits unrestricted use, distribution and reproduction in any medium, provided the original author and source are credited.
 Disclaimer: The content, data and findings in this article are based on the authors’ research and have been peer-reviewed for academic purposes only. Readers are advised to verify all information before practical or commercial use. The journal and its editorial board are not liable for any errors, losses or consequences arising from its use.

Declarations

Funding

No external funding was received for this study.

Conflict of Interest

The authors declare that they have no conflict of interest.

Acknowledgements

The authors would like to thank the reviewers and the editorial board of International Journal for Research Trends and Innovation for their careful reading and constructive comments, and all colleagues who supported the preparation of this manuscript.

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