Analysis of the Thomson and Troian velocity slip for the flow of ternary nanofluid past a stretching sheet

S Li, V Puneeth, AM Saeed, A Singhal, FAM Al-Yarimi… - Scientific reports, 2023 - nature.com
In this article, the flow of ternary nanofluid is analysed past a stretching sheet subjected to
Thomson and Troian slip condition along with the temperature jump. The ternary nanofluid is …

Mixed convection hybrid nanofluid flow over a stationary permeable vertical cone with thermal radiation and convective boundary condition

RI Yahaya, MS Mustafa, NM Arifin, I Pop… - ZAMM‐Journal of …, 2024 - Wiley Online Library
Many real‐world devices, such as heat exchangers, geothermal reservoirs, and cooling
systems, utilize the concept of boundary layer flow across a cone geometry. The current …

[HTML][HTML] Artificial neural network modeling of mixed convection viscoelastic hybrid nanofluid across a circular cylinder with radiation effect: Case study

SM Hussain, R Mahat, NM Katbar, I Ullah… - Case Studies in Thermal …, 2023 - Elsevier
As a result of its use in the manufacturing and construction industries, research on the flow of
nanofluid is rather well-known among academics and professionals in related fields. It is …

[HTML][HTML] Stagnation point hybrid nanofluid flow past a stretching/shrinking sheet driven by Arrhenius kinetics and radiation effect

NA Zainal, I Waini, NS Khashi'ie, ARM Kasim… - Alexandria Engineering …, 2023 - Elsevier
The exclusive behaviour of hybrid nanofluid has been actively emphasized due to the
determination of improved thermal efficiency. Therefore, the aim of this study is to highlight …

[HTML][HTML] Physical interpretation of nanofluid (copper oxide and silver) with slip and mixed convection effects: Applications of fractional derivatives

OT Bafakeeh, A Raza, SU Khan, MI Khan, A Nasr… - Applied Sciences, 2022 - mdpi.com
A fractional model was developed for presenting the thermal assessment of nanoparticles in
an inclined moving surface. Water was used as a base fluid, while the nanofluid utilized …

[HTML][HTML] Dynamics of tri-hybridized Prandtl-Eyring thermal water-based magneto-nanofuids flow over double stretched wedge sheets experiencing force convection

SO Salawu, TA Yusuf, EO Fatunmbi, AM Obalalu - Forces in Mechanics, 2024 - Elsevier
The management of thermal propagation and preservation of heat energy are major
challenges facing the industry and thermal science in recent times. Various studies have …

The effects of magnetic field and thermal radiation on the mixed convection of Al2O3-Cu/water hybrid nanofluid over a permeable vertical flat plate

A Jafaripournimchahi, A Shateri, B Jalili… - … Physics Letters B, 2024 - World Scientific
This study comprehensively investigates the effect of magnetic fields and thermal radiation
on mixed convection in a hybrid alumina–copper/water nanofluid flowing over a permeable …

Unsteady MHD mixed convection flow of a hybrid nanofluid with thermal radiation and convective boundary condition

NS Wahid, NM Arifin, NS Khashi'ie, I Pop… - Chinese Journal of …, 2022 - Elsevier
Heat transfer enhancement is a current concern in a variety of areas. Nanofluid, a novel kind
of heat transfer fluid, may be used as an efficient medium for improving heat transmission. A …

MHD gyrating stream of non‐Newtonian modified hybrid nanofluid past a vertical plate with ramped motion, Newtonian heating and Hall currents

A Ali, S Das, RN Jana - ZAMM‐Journal of Applied Mathematics …, 2023 - Wiley Online Library
In this modern era, the thermal efficiency of susceptible systems is a major concern in many
scientific and technical operations. Hybridized nanomaterials have innovative behaviours …

Numerical simulation of a non-Newtonian nanofluid on mixed convection in a rectangular enclosure with two rotating cylinders

MNAA Siddiki, S Islam, MU Ahmmed… - International Journal of …, 2024 - Taylor & Francis
Non-Newtonian fluid flows are a present advancement in industrial heat transfer and fluid
mechanics, with numerous applications in engineering field as well as in real life such as …