Correction: Sachhin et al. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94
Nomenclature
| Constants | |
| a | Stretching coefficient |
| Magnetic parameter (Tesla) | |
| Specific heat coefficient | |
| d | Stretching/shrinking parameter |
| Inverse Darcy number | |
| Eckert number | |
| Velocity function fluid phase | |
| Velocity function dusty phase | |
| Permeability of porous medium | |
| Mass number | |
| Stokes drag term (kg/s) | |
| Mass of the dusty particles | |
| M | dimensionless magnetic parameter |
| Heat source/sink parameter | |
| Thermal radiation parameter | |
| Quantity of nanoparticles | |
| Prandtl number | |
| p | Pressure |
| Radiative heat flux | |
| Heat source/sink | |
| S | Dimensionless mass suction/injection parameter |
| Mass suction parameter | |
| No permeability | |
| Dusty-phase temperature | |
| Surface temperature | |
| T | Fluid temperature |
| Ambient temperature | |
| x, y-axis velocity of fluid phase | |
| x, y-axis velocity of dusty phase | |
| Wall velocity | |
| Wall mass transfer velocity | |
| x | Coordinate along the plate |
| y | Coordinate normal to the plate |
| Greek symbols | |
| Stretching speed of dust particles | |
| Fluid–particle interaction parameters | |
| Solution parameters | |
| , , | Solution roots |
| Constants | |
| Similarity variable | |
| Heat coefficient | |
| Brinkman number | |
| Thermal conductivity | |
| Absorption coefficient | |
| Effective dynamic viscosity | |
| Dynamic viscosity of the fluid and dusty phase | |
| Kinematic viscosity of fluid and dusty phase | |
| Fluid density | |
| Particle phase density | |
| Stream function | |
| Electrical conductivity | |
| Stephen–Boltzmann constant | |
| Heat equilibrium time | |
| Relaxation time parameter | |
| Fluid nanoparticle volume fraction ratio | |
| Dimensionless temperature of fluid phase | |
| Dimensionless temperature of dusty phase | |
| Abbreviations | |
| HNF | Hybrid nanofluid |
| ODE | Ordinary differential equation |
| PDE | Partial differential equation |
| MHD | Magnetohydrodynamics |
| BCs | Boundary conditions |
| TNF | Ternary nanofluid |
Reference
- Sachhin, S.M.; Mahabaleshwar, U.S.; Laroze, D.; Drikakis, D. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94. [Google Scholar] [CrossRef]





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© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Sachhin, S.M.; Mahabaleshwar, U.S.; Laroze, D.; Drikakis, D. Correction: Sachhin et al. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94. Fluids 2024, 9, 241. https://doi.org/10.3390/fluids9100241
Sachhin SM, Mahabaleshwar US, Laroze D, Drikakis D. Correction: Sachhin et al. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94. Fluids. 2024; 9(10):241. https://doi.org/10.3390/fluids9100241
Chicago/Turabian StyleSachhin, Sudha Mahanthesh, Ulavathi Shettar Mahabaleshwar, David Laroze, and Dimitris Drikakis. 2024. "Correction: Sachhin et al. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94" Fluids 9, no. 10: 241. https://doi.org/10.3390/fluids9100241
APA StyleSachhin, S. M., Mahabaleshwar, U. S., Laroze, D., & Drikakis, D. (2024). Correction: Sachhin et al. Darcy–Brinkman Model for Ternary Dusty Nanofluid Flow across Stretching/Shrinking Surface with Suction/Injection. Fluids 2024, 9, 94. Fluids, 9(10), 241. https://doi.org/10.3390/fluids9100241

