Drag Reduction
Author: American Institute of Chemical Engineers
Publisher:
Published: 1971
Total Pages: 116
ISBN-13:
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Author: American Institute of Chemical Engineers
Publisher:
Published: 1971
Total Pages: 116
ISBN-13:
DOWNLOAD EBOOKAuthor: Feng-Chen Li
Publisher: John Wiley & Sons
Published: 2012-01-10
Total Pages: 233
ISBN-13: 1118181115
DOWNLOAD EBOOKTurbulent drag reduction by additives has long been a hot research topic. This phenomenon is inherently associated with multifold expertise. Solutions of drag-reducing additives are usually viscoelastic fluids having complicated rheological properties. Exploring the characteristics of drag-reduced turbulent flows calls for uniquely designed experimental and numerical simulation techniques and elaborate theoretical considerations. Pertinently understanding the turbulent drag reduction mechanism necessities mastering the fundamentals of turbulence and establishing a proper relationship between turbulence and the rheological properties induced by additives. Promoting the applications of the drag reduction phenomenon requires the knowledge from different fields such as chemical engineering, mechanical engineering, municipal engineering, and so on. This book gives a thorough elucidation of the turbulence characteristics and rheological behaviors, theories, special techniques and application issues for drag-reducing flows by surfactant additives based on the state-of-the-art of scientific research results through the latest experimental studies, numerical simulations and theoretical analyses. Covers turbulent drag reduction, heat transfer reduction, complex rheology and the real-world applications of drag reduction Introduces advanced testing techniques, such as PIV, LDA, and their applications in current experiments, illustrated with multiple diagrams and equations Real-world examples of the topic’s increasingly important industrial applications enable readers to implement cost- and energy-saving measures Explains the tools before presenting the research results, to give readers coverage of the subject from both theoretical and experimental viewpoints Consolidates interdisciplinary information on turbulent drag reduction by additives Turbulent Drag Reduction by Surfactant Additives is geared for researchers, graduate students, and engineers in the fields of Fluid Mechanics, Mechanical Engineering, Turbulence, Chemical Engineering, Municipal Engineering. Researchers and practitioners involved in the fields of Flow Control, Chemistry, Computational Fluid Dynamics, Experimental Fluid Dynamics, and Rheology will also find this book to be a much-needed reference on the topic.
Author: Jinjun Wang
Publisher: Cambridge University Press
Published: 2019
Total Pages: 293
ISBN-13: 1107161568
DOWNLOAD EBOOKMaster the theory, applications and control mechanisms of flow control techniques.
Author: Pierre-Gilles de Gennes
Publisher: CUP Archive
Published: 1990-09-20
Total Pages: 72
ISBN-13: 9780521388498
DOWNLOAD EBOOKThis book, based on lectures given at the Polytechnic of Milan, gives a broad overview of the field of polymer dynamics. In these lectures the aim is to stress the fundamental concepts of the behaviour of polymers without drawing on the more advanced mathematical formalism which often obscures the natural elegance of the subject matter. Professor De Gennes is one of the most distinguished workers in the field of material science. Therefore this book will be welcomed by both the experienced researcher in the area and the interested layman. It will be of particular value to graduate students.
Author:
Publisher: AIAA
Published: 1990
Total Pages: 542
ISBN-13: 9781600863783
DOWNLOAD EBOOKAuthor:
Publisher:
Published: 1994
Total Pages: 584
ISBN-13:
DOWNLOAD EBOOKAuthor: F. G. Zhuang
Publisher: Springer Science & Business Media
Published: 2009-04-24
Total Pages: 764
ISBN-13: 3540759956
DOWNLOAD EBOOKThis volume is the proceedings of the Fifth International Conference on Fluid Mechanics (ICFM-V), the primary forum for the presentation of technological advances and research results in the fields of theoretical, experimental, and computational Fluid Mechanics. Topics include: flow instability and turbulence, aerodynamics and gas dynamics, industrial and environmental fluid mechanics, biofluid mechanics, geophysical fluid mechanics, plasma and magneto-hydrodynamics, and others.
Author: Wenbing Hu
Publisher: Springer Science & Business Media
Published: 2012-11-05
Total Pages: 248
ISBN-13: 3709106702
DOWNLOAD EBOOKA molecular view on the fundamental issues in polymer physics is provided with an aim at students in chemistry, chemical engineering, condensed matter physics and material science courses. An updated translation by the author, a renowned Chinese chemist, it has been proven to be an effective source of learning for many years. Up-to-date developments are reflected throughout the work in this concise presentation of the topic. The author aims at presenting the subject in an efficient manner, which makes this particularly suitable for teaching polymer physics in settings where time is limited, without having to sacrifice the extensive scope that this topic demands.
Author: MOHAMED GAD-EL-HAK
Publisher: Springer Science & Business Media
Published: 2013-03-08
Total Pages: 611
ISBN-13: 3642837875
DOWNLOAD EBOOKOne cannot overemphasize the importance of studying fluids in motion or at rest for a variety of scientific and engineering endeavors. Fluid mechanics as an art reaches back into antiquity, but its rational formulation is a relatively recent undertaking. Much of the physics of a particular flow situation can be understood by conducting appropriate experiments. Flow visualization techniques offer a useful tool to establish an overall picture of a flow field and to delineate broadly its salient features before embarking on more detailed quantitative measurements. Among the single-point measurements that are particularly difficult are those in separated flows, non-Newtonian fluids, rotating flows, and nuclear aerosols. Pressure, shear stress, vorticity, and heat transfer coefficient are also difficult quantities to measure, particularly for time-dependent flows. These and other special situations are among the topics covered in this volume. Each article emphasizes the development of a particular measuring technique. The topics covered were chosen because of their importance to the field, recent appeal, and potential for future development. The articles are comprehensive and coverage is pedagogical with a bias towards recent developments.