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Introductory technical guidance for civil and marine engineers interested in engineering aspects of beach-fill design. Here is what is discussed: 1. PROJECT OBJECTIVES 2. PROJECT FEATURES 3. DEFINE REGIONAL SETTING AND SITE HISTORY 4. REACH DELINEATION 5. EVALUATE SEDIMENT SOURCES.
This book is written for engineers, students of coastal processes and laypersons interested in beach nourishment, which consists of the placement of large quantities of good quality sediment on the beach to advance the shoreline seaward. The improvement of project performance through proper design and the predictability of performance are emphasized. The overall longevity of a project is addressed as are local erosional areas. The roles which wave height, project length and sediment quality play in project performance are addressed quantitatively. The results are illustrated through reference to a number of monitored nourishment projects. Biological and economic aspects of beach nourishment are addressed.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in design and construction of beach fill improvements. Here is what is discussed: 1. PROJECT OBJECTIVES, 2. PROJECT FEATURES, 3. DEFINE REGIONAL SETTING AND SITE HISTORY, 4. REACH DELINEATION, 5. EVALUATE SEDIMENT SOURCES.
Text on coastal engineering and oceanography covering theory and applications intended to mitigate shoreline erosion.
Accompanying CD-ROM in pocket at the back of book
Offshore sand and gravel deposits constitute an extensive mineral resource whose importance and economic value increase steadily as onshore and lagoonal sources become unavailable. One major use of these marine deposits is for beach nourishment where the amount of initial fill material needed and the expected periodic renourishment requirements are usually estimated using fill factor and renourishment beach fill models, respectively. Textural properties of borrow site and native beach sediments are used as the basic input for beach fill model calculations. Alterations to borrow sediment texture properties of dredging and handling techniques can significantly affect both the predicted response of the sediments after placement in the beach environment and economic aspects of the project.
Full color publication. The Coastal Engineering Manual (CEM) assembles in a single source the current state-of-the-art in coastal engineering to provide appropriate guidance for application of techniques and methods to the solution of most coastal engineering problems. The CEM provides a standard for the formulation, design, and expected performance of a broad variety of coastal projects. These projects are undertaken to provide or improve navigation at commercial harbors, harbor works for commercial fish handling and service facilities, and recreational boating facilities. As an adjunct to navigation improvements, shore protection projects are often required to mitigate the impacts of navigation projects. Beach erosion control and hurricane or coastal storm protection projects provide wave damage reduction and flood protection to valuable coastal commercial, urban, and tourist communities. Environmental restoration projects provide a rational layout and proven approach to restoring the coastal and tidal environs where such action may be justified, or required as mitigation to a coastal project's impacts, or as mitigation for the impact of some previous coastal activity, incident, or neglect. As the much expanded replacement document for the Shore Protection Manual (1984) and several other U.S. Army Corps of Engineers (USACE) manuals, the CEM provides a much broader field of guidance. Part VI "Design of Coastal Project Elements" includes chapters discussing philosophy of coastal structure design, the various types and function of coastal structures, site conditions, materials, design fundamentals, reliability, and the design of specific project elements (including a sloping-front structure, vertical-front structure, beach fill, floating structure, pile structure, and a pipeline and outfall structure.
Sandy beaches are the most abundant coastal environments worldwide, which have an undeniable and unique ecological value. Presently, they are amongst the most endangered ecosystems in the biosphere, mainly due to the influence of several human activities. In this book, renowned scientists from around the world describe key attributes of sandy beaches and highlight the problems which impact them. Specific tools encompassing the physical environment and the biota are pointed out, at different levels of ecological organization. The book also covers suitable management, conservation programmes and respective actions, where ecologic, economic and social dimensions are comprehensively integrated.