Physical Models And Laboratory Techniques In Coastal Engineering

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Physical Models and Laboratory Techniques in Coastal Engineering

Physical Models and Laboratory Techniques in Coastal Engineering
Author :
Publisher : World Scientific
Total Pages : 592
Release :
ISBN-10 : 981021541X
ISBN-13 : 9789810215415
Rating : 4/5 (415 Downloads)

Book Synopsis Physical Models and Laboratory Techniques in Coastal Engineering by : Steven A. Hughes

Download or read book Physical Models and Laboratory Techniques in Coastal Engineering written by Steven A. Hughes and published by World Scientific. This book was released on 1993 with total page 592 pages. Available in PDF, EPUB and Kindle. Book excerpt: Laboratory physical models are a valuable tool for coastal engineers. Physical models help us to understand the complex hydrodynamic processes occurring in the nearshore zone and they provide reliable and economic engineering design solutions.This book is about the art and science of physical modeling as applied in coastal engineering. The aim of the book is to consolidate and synthesize into a single text much of the knowledge about physical modeling that has been developed worldwide.This book was written to serve as a graduate-level text for a course in physical modeling or as a reference text for engineers and researchers engaged in physical modeling and laboratory experimentation. The first three chapters serve as an introduction to similitude and physical models, covering topics such as advantages and disadvantages of physical models, systems of units, dimensional analysis, types of similitude and various hydraulic similitude criteria applicable to coastal engineering models.Practical application of similitude principles to coastal engineering studies is covered in Chapter 4 (Hydrodynamic Models), Chapter 5 (Coastal Structure Models) and Chapter 6 (Sediment Transport Models). These chapters develop the appropriate similitude criteria, discuss inherent laboratory and scale effects and overview the technical literature pertaining to these types of models. The final two chapters focus on the related subjects of laboratory wave generation (Chapter 7) and measurement and analysis techniques (Chapter 8).


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