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Accounting Thermal Exchanges in Coanda Effect
Technical Paper
2020-01-0026
ISSN: 0148-7191, e-ISSN: 2688-3627
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AeroTech
Language:
English
Abstract
An exhaustive model of Coandã effect has not been defined, and fundamental questions are still open. One of them is the influence of convective heat exchange on Coandã adhesion. This paper presents an even preliminary numerical study of this problem. It analyses the behaviour of a fluid stream on a convex surface in the presence of a temperature gradient between the fluid and the convex surface. It approaches the problem by a set of CFD simulations, analyses previous hypotheses, which are based on Prandtl number, and evidences the need for a model that account Reynolds number. The performed simulations are still not sufficient for an exhaustive comprehension of Coandã effect in the presence of heat exchange phenomena. It allows producing some consideration that may help future scientific work in toward a better comprehension of these phenomena. In particular, it verifies the importance of Reynolds number, because it is intrinsic in the adopted model, with good accordance with CFD data. In conclusion, this paper is still far from a complete model of the phenomena that govern the Coandã adhesion in the presence of convective heat exchange. Otherwise, it presents a preliminary starting point toward further and more detailed analyses.
Citation
Trancossi, M. and Pascoa, J., "Accounting Thermal Exchanges in Coanda Effect," SAE Technical Paper 2020-01-0026, 2020, https://doi.org/10.4271/2020-01-0026.Data Sets - Support Documents
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References
- Coanda , H. 1936
- Coanda , H. 1936
- Newman , B.G. The Deflexion of Plane Jets by Adjacent Boundaries - Coanda Effect Lachmann , G.V. Boundary Layer and Flow Control 1 Oxford Pergamon Press 1961 232 264
- Bradshaw , P. 1960
- Benner , S.D. 1964
- Roderick , W.E.B. 1961
- Guo , B.D. , Liu , P.Q. , and Qu , Q.L. Blowing Circulation Control on a Seaplane Airfoil, Recent Progress in Fluid Dynamics Research Proceeding of the Sixth International Conference on Fluid Mechanics 2011 228 231
- Dragan , V. A New Mathematical Model for High Thickness Coanda Effect Wall Jets Review of the Air Force Academy 1 23 28 2013
- Dragan , V. Reynolds Number Calculation and Applications for Curved Wall Jets INCAS Bulletin 6 3 35 2014
- Trancossi , M. and Dumas , A. ACHEON: Aerial Coanda High Efficiency Orienting-Jet Nozzle SAE Technical Paper 2011-01-2737 2011 https://doi.org/10.4271/2011-01-2737
- Trancossi , M. An Overview of Scientific and Technical Literature on Coanda Effect Applied to Nozzles SAE Technical Paper 2011-01-2591 2011 https://doi.org/10.4271/2011-01-2591
- Páscoa , J.C. , Ilieva , G. , Dumas , A. , and Trancossi , M. A Review of Thrust-Vectoring in Support of a V/STOL Non-Moving Mechanical Propulsion System Central European Journal of Engineering 3 3 374 388 2013
- Dumas , A. , Pascoa , J. , Trancossi , M. , Tacchini , A. , Ilieva , G. , and Madonia , M. Acheon Project: A Novel Vectoring Jet Concept ASME 2012 International Mechanical Engineering Congress and Exposition 2012 499 508
- Trancossi , M. , Dumas , A. , and Vucinic , D. Mathematical Modeling of Coanda Effect SAE Technical Paper 2013-01-2195 2013 https://doi.org/10.4271/2013-01-2195
- Trancossi , M. , Dumas , A. , Das , S.S. , and Pascoa , J. Design Methods of Coanda Effect Nozzle with Two Streams Incas Bulletin 6 1 83 2014
- Das , S. , Abdollahzadeh , M. , Pascoa , J. , Dumas , A. , and Trancossi , M. Numerical Modeling of Coanda Effect in a Novel Propulsive System The International Journal of Multiphysics 8 2 2016
- Subhash , M. , Trancossi , M. , and Páscoa , J. An Insight into the Coanda Flow through Mathematical Modeling Modeling and Simulation in Industrial Engineering Cham Springer 2018 101 114
- Dumas , M. , Subhash , M. , Trancossi , M. , and Pascoa , J. The Influence of Surface Temperature on Coanda Effect Energy Procedia 45 626 634 2014
- Trancossi , M. and Pascoa , J. The Influence of Convective Exchanges on Coandã Effect INCAS Bulletin 11 4 2019
- Bejan , A. Convection Heat Transfer John Wiley & Sons 2013
- Blacker , T.D. and Stephenson , M.B. Paving: A New Approach to Automated Quadrilateral Mesh Generation International Journal for Numerical Methods in Fluids 32 811 847 1991
- Lopes , M.G. http://www.easycfd.net/
- Lopes , M.G. A Versatile Software Tool for the Numerical Simulation of Fluid Flow and Heat Transfer in Simple Geometries Computer Applications in Engineering Education 18 1 14 27 2010
- Lopes , M.G. A Numerical Procedure for 2D Fluid Flow Simulation in Unstructured Meshes Numerical Simulation - From Brain Imaging to Turbulent Flows IntechOpen 2016
- Casey , M. and Wintergerste , T. , and Sulzer , I. 39th Aerospace Sciences Meeting and Exhibit 2000
- Casey , M. and Wintergerste , T. 2000
- Vos Rizzi , J. Towards Establishing Credibility in Computational Fluid Dynamics AIAA Journal 36 5 668 675 1998
- Celik , I. , Li , J. , Hu , G. , and Shaffer , C. Limitations of Richardson Extrapolation and Some Possible Remedies J Fluids Eng 127 795 805 2005
- Launder , B.E. and Spalding , D.B. The Numerical Computation of Turbulent Flows Computer Methods in Applied Mechanics and Engineering 3 269 289 1974
- Chen , Y.S. and Kim , S.W. 1987
- Jang , D.S. , Jetli , R. , and Acharya , S. Comparison of the Piso Simpler and Simplec Algorithms for the Treatment of the Pressure-Velocity Coupling in Steady Flow Problems Num Heat Transf. 10 3 209 228 1986
- ASME Editorial Board Journal of Heat Transfer Editorial Policy Statement on Numerical Accuracy ASME Journal of Heat Transfer 116 797 798 1994
- Coleman , H.W. and Stern , F. Uncertainties and CFD Validation ASME Journal of Fluids Engineering 119 795 803 1997
- Roache , P.J. Quantification of Uncertainty in Computational Fluid Dynamics Annual Review of Fluid Mechanics 29 123 160 1997
- Morega , M. and Bejan , A. Heatline Visualization of Forced Convection in Porous Media International Journal of Heat and Fluid Flow 15 1 42 47 1994
- Bejan Convection Heat Transfer John Wiley & Sons 2013
- Monin , S. , Yaglom , A.M. , and Lumley , J.L. Mechanics of Turbulence Statistical Fluid Mechanics 2-Volume Set MIT Press 1979
- Aziz A Similarity Solution for Laminar Thermal Boundary Layer over a Flat Plate with a Convective Surface Boundary Condition Communications in Nonlinear Science and Numerical Simulation 14 4 1064 1068 2009