Zobrazeno 1 - 10
of 1 717
pro vyhledávání: '"velocity slip"'
Autor:
Kezzar, Mohamed, Talbi, Nabil, Dinarvand, Saeed, Das, Sanatan, Sari, Mohamed Rafik, Nasr, Samia, Akhlaghi Mozaffar, Ali
Publikováno v:
International Journal of Numerical Methods for Heat & Fluid Flow, 2024, Vol. 34, Issue 10, pp. 3637-3658.
Externí odkaz:
http://www.emeraldinsight.com/doi/10.1108/HFF-05-2024-0396
Publikováno v:
Alexandria Engineering Journal, Vol 105, Iss , Pp 437-448 (2024)
The industrial significance of stability analysis for dual solutions and heat transfer sets the stage for this research. Focusing on Maxwell ternary nanofluid flow, the study aims to enhance thermal conductivity and stability by delving into viscous
Externí odkaz:
https://doaj.org/article/4e4925bf1912435cb1db7565c40ffcc5
Autor:
T. Salahuddin, Muhammad Awais
Publikováno v:
Alexandria Engineering Journal, Vol 108, Iss , Pp 40-49 (2024)
The Buongiorno nanofluid model serves as a foundational model for theoretical and experimental research in the field of nanofluids, and this model can be applied to various engineering problems, including heat exchangers, biomedical applications, sol
Externí odkaz:
https://doaj.org/article/96ad4c1884214d569b095de3e29e5bae
Autor:
Shubham Bansal, Rajendra Singh Yadav
Publikováno v:
Journal of Engineering and Applied Science, Vol 71, Iss 1, Pp 1-18 (2024)
Abstract This article aims to examine an unsteady 2-D laminar flow of magnetohydrodynamic fluid caused by an elastic surface immersed in a permeable medium under the influence of thermal radiation and extended heat flux. Thermal conductivity and visc
Externí odkaz:
https://doaj.org/article/69370995fc8e436ba596c529823d8507
Publikováno v:
Engineering Applications of Computational Fluid Mechanics, Vol 18, Iss 1 (2024)
The purpose of this research elaborates the behaviour of the two-phase hybrid nano-fluid flow of viscous fluid through the stretching sheet. Impacts of heat transfer, for MHD two-dimensional steady flow over stretching surface with Cattaneo-Christov
Externí odkaz:
https://doaj.org/article/288b03c7f4a14ba0972735309be27649
Publikováno v:
International Journal of Numerical Methods for Heat & Fluid Flow, 2023, Vol. 34, Issue 3, pp. 1277-1296.
Externí odkaz:
http://www.emeraldinsight.com/doi/10.1108/HFF-10-2023-0633
Autor:
Hamid Qureshi, Amjad Ali Pasha, Zahoor Shah, Muhammad Asif Zahoor Raja, Salem Algarni, Talal Alqahtani, Kashif Irshad, Waqar Azeem Khan
Publikováno v:
Case Studies in Thermal Engineering, Vol 60, Iss , Pp 104599- (2024)
This article explores the enhancement of thermal exchange in a dissipative Triple-nanoparticle (Al2O3+CuO+Cu) hybrid fluid over a stretchable wavy cylindrical surface with slip effect, incorporating Python bvp algorithm with artificial intelligence A
Externí odkaz:
https://doaj.org/article/42f4e5216de64aea94bc5324b9c11a8a
Publikováno v:
Case Studies in Thermal Engineering, Vol 60, Iss , Pp 104646- (2024)
The purpose of this exploration is to scrutinize the heat transfer characteristics of oscillatory flow on the magnetized second-grade fluid within an asymmetric porous wavy channel with velocity slip and temperature jump conditions. Flow in porous sp
Externí odkaz:
https://doaj.org/article/78c41345a559462e95792a6d74cd1f41
Publikováno v:
Case Studies in Thermal Engineering, Vol 55, Iss , Pp 104119- (2024)
In this study, we explore the intricate conduct of gyrotactic microorganisms in a magnetohydrodynamic (MHD) nanofluid flow across a Riga plate, using the fourth-grade fluid model. The comprehensive investigation encompasses a few influential paramete
Externí odkaz:
https://doaj.org/article/9979a5794f6f41d78365d6e7cfa4eba6
Autor:
Thippaiah Maranna, Gadhigeppa Myacher Sachin, Ulavathi Shettar Mahabaleshwar, Laura M. Pérez, Igor V. Shevchuk
Publikováno v:
Fluids, Vol 9, Iss 8, p 180 (2024)
The main objective of this study is to explore the inventive conception of the magnetohydrodynamic flow of a hybrid nanofluid over-porous stretching/shrinking sheet with the effect of radiation and mass suction/injection. The hybrid nanofluid advance
Externí odkaz:
https://doaj.org/article/9638ff2dcc724a91bb2c6cd5b2f40344