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Title: Turbulent Flows
Sub-title: Prediction, Modeling & Analysis
Edited by: Zied Driss
ISBN10-13: 1624177425 : 9781624177422
Format: Hardback
Size: 260x180mm
Pages: 201
Weight: .692 Kg.
Published: Nova Science Publishers, Inc (US) - May   2013
List Price: 212.99 Pounds Sterling
Availability: In Stock   Qty Available: 1
Subjects: Physics
Turbulent flow means fluid flow in which the fluid undergoes irregular fluctuations. Understanding the turbulent behaviour in flowing fluids is one of the most intriguing and important problems that have been the focus of research for decades due to its great importance in a variety of engineering applications. Common examples of turbulent flow include atmospheric and ocean currents, flow through turbines and pumps, blood flow in arteries, oil transport in pipelines, lava flow, and the flow in boat wakes and around aircraft wing tips, etc. In the present book, we focus on areas of current turbulence research. Recent progress on modelling and analysis of turbulent flows is reviewed, and likely directions for future research on these topics are indicated. This text is unusual in as much as it provides both general commentaries as well as recent specialized developments in the field of turbulence modelling.
Table of Contents:
Preface; On Analytical Solutions to the Three-Dimensional Incompressible Navier-Stokes Equations with General Forcing Functions & their Relation to Turbulence; Large-Eddy Simulation of Turbulence-Induced Aero-Optical Effects in Free Shear & Wall Bounded Flows; Development of a New Curvature Law of the Wall for Internal Swirling Axial Flows; On Noise Prediction from a Compact Region of Turbulence in an Infinite Circular Hard-Walled Duct; Computer Simulation of Turbulent Flow Generated by A Deformed Anchor Impeller; Turbulent Flow Structures for Different Roughness Conditions of Channel Walls: Results of Experimental Investigation in Laboratory Flumes; Study of Turbulent Flow on an Open Circuit Wind Tunnel; Color Doppler Ultrasound (C. D. U. S.) Analysis of Turbulent Flow in Three Different Animal Models; Entrainment of Coarse Solid Particles by Energetic Turbulent Flow Events; Elastic Effects on the Inviscid Instability of Shear Flows; Index.
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