Experimental Investigation of Flow over a Rotating-disk: Natural and Forced Boundary-layer Flow Behavior and Characterization of Different Flow Regimes - Dr. Muhammad Ehtisham Siddiqui - Libros - LAP LAMBERT Academic Publishing - 9783845429120 - 4 de agosto de 2011
En caso de que portada y título no coincidan, el título será el correcto

Experimental Investigation of Flow over a Rotating-disk: Natural and Forced Boundary-layer Flow Behavior and Characterization of Different Flow Regimes

Precio
Mex$ 819
sin IVA

Pedido desde almacén remoto

Entrega prevista 19 - 29 de oct.
Recibe notificaciones sobre nuevos lanzamientos de Dr. Muhammad Ehtisham Siddiqui
Añadir a tu lista de deseos de iMusic

Aún no valorado

This book is based on the experimental study of the rotating-disk boundary-layer flow. In the case of the natural flow, different flow regimes are identified as a function of nondimensional distance, R, from the disk axis. Mean-velocity profiles initially follow the von Kármán solution. At higher R, departures arise and increase with R, which are due to the spatial growth of boundary-layer instability modes, whose radial growth rates are found to match linear-theory predictions. The profiles in the fully turbulent region follow the turbulent log law and the velocity spectra exhibit Kolmogorov-type power laws. To study the response to forcing, a setup has been designed which allows the excitation of stationary (in the lab frame) disturbances or disturbances which rotate with a frequency independently of the disk frequency. The flow response to both types of forcing and two forcing element geometries was studied. Stationary forcing produces a wake which decays with distance from the element, in agreement with theory. Forcing due to rotating elements can generate growing wavepacket-like disturbances, which although nonlinear, follow trajectories close to linear-theory predictions.

Medios de comunicación Libros     Paperback Book   (Libro con tapa blanda y lomo encolado)
Publicado 4 de agosto de 2011
ISBN13 9783845429120
Editores LAP LAMBERT Academic Publishing
Páginas 120
Dimensiones 150 × 7 × 226 mm   ·   197 g
Lengua Alemán