Author/Authors :
Nedeff، نويسنده , , Valentin and Mo?negu?u، نويسنده , , Emilian and Panainte، نويسنده , , Mirela and Ristea، نويسنده , , Mihail and Laz?r، نويسنده , , Gabriel and Scurtu، نويسنده , , Dan and Ciobanu، نويسنده , , Bogdan and Timofte، نويسنده , , Adrian and Toma، نويسنده , , ?tefan and Agop، نويسنده , , Maricel، نويسنده ,
Abstract :
The paper presents a theoretical study of the source of the spinning movement of the solid particles flowing in a moving fluid and the influence of the resulting Magnus force on the particlesʹ trajectories along the stream lines, based on interactions occurring in the boundary layers. The subject is important for technological applications, like aerodynamic separation process of a mixture of solid particles. First, it is shown that the boundary layer equations generate local soliton-type, kink-type and soliton-kink-type nonlinear solutions for the velocity field. Using Prandtlʹs equations for boundary layer, nonlinear solutions of the velocity field are obtained. It was found that through the interaction on the boundary layers, the transition from the movement on continuous and differentiable curves (stream lines) to the movement on continuous and non-differentiable curves (fractal curves) occurs. This last characteristic can be used in the separation process of the solid components from a heterogeneous mixture.
Keywords :
Boundary layer , Magnus effect , Separation process , Heterogeneous mixture , Kinks , Solitons