Title of article :
Mathematical Model of a Constructal Coanda Effect Nozzle
Author/Authors :
trancossi, m. sheffield hallam university - UK , stewart, j. sheffield hallam university - UK , subhash, m. sheffield hallam university - UK , angeli, d. sheffield hallam university - UK
Abstract :
This paper analyses the ACHEON Coanda effect nozzle for aircraft propulsion, based on the dynamic
equilibrium of two jet streams. The ACHEON concept, and, in particular, the HOMER nozzle, which is
its main component, are presented, together with the literature milestones from which the idea originally
stems. A subsystem analysis inspired by the principles of Constructal Theory is presented for the current
architecture. A mathematical model of a 2D case of the system is developed, focusing on the combined
effect of the mixing of the two streams and the Coanda adhesion over a convex surface. A validation of
the model is also reported, based on 2D CFD analyses, under the hypothesis of incompressible flow.
Results highlight that, in spite of its relative simplicity, the model produces accurate results.
Keywords :
Coanda effect , Fluid dynamic adhesion , Dual stream , Mathematical model , Constructal law
Journal title :
Astroparticle Physics