Design of Earth Dams

Design of Earth Dams

Author: A.L. Goldin

Publisher: Routledge

Published: 2017-07-12

Total Pages: 395

ISBN-13: 1351455834

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Earth dams are the most common impoundment structures, with stringent requirements imposed on their design and construction. Modern design require accurate static and dynamic computations based on thorough analysis of stress-strain conditions, as detailed in this handbook (translated from the Russia


Earth and Rock-Fill Dams

Earth and Rock-Fill Dams

Author: U. S. Army Corps of Engineers

Publisher:

Published: 2004-10

Total Pages: 0

ISBN-13: 9781410217127

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This manual presents fundamental principles underlying the design and construction of earth and rock-fill dams. The general principles presented herein are also applicable to the design and construction of earth levees.


Geotechnical Engineering of Dams

Geotechnical Engineering of Dams

Author: Robin Fell

Publisher: CRC Press

Published: 2014-11-21

Total Pages: 1374

ISBN-13: 0203387317

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This book provides a comprehensive text on the geotechnical and geological aspects of the investigations for and the design and construction of new dams and the review and assessment of existing dams. The book provides dam engineers and geologists with a practical approach, and gives university students an insight into the subject of dam engineering. All phases of investigation, design and construction are covered, through to the preliminary and detailed design phases and ultimately the construction phase. This revised and expanded 2nd edition includes a lengthy new chapter on the assessment of the likelihood of failure of dams by internal erosion and piping.


Seepage in Soils

Seepage in Soils

Author: Lakshmi N. Reddi

Publisher: John Wiley & Sons

Published: 2003-05-21

Total Pages: 422

ISBN-13: 9780471356165

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Up-to-date coverage of fundamental seepage principles, closed-form solutions, and applications Seepage in Soils combines a broad range of applications with rigorous quantitative skills to give insight into the fundamental principles and mathematical solutions of seepage. A wealth of closed-form analytical solutions are provided to solve a variety of problems, minimizing the use of computer software and numerical models. Completely up to date with coverage of new developments in separators, filters, and geosynthetics, this textbook includes exercises in seepage quantification, seepage forces, and dewatering. Complete coverage is useful in all subdivisions of civil engineering. Material is divided into three modules: * Principles and mathematical solutions * Filters and drainage layers * Applications Only a nominal background in mathematics and soil mechanics is required for Seepage in Soils to serve as an invaluable resource for civil engineering students across many subdisciplines. In addition, it serves as a useful reference for geotechnical, environmental, and structural engineers, hydrologists, geologists, agronomists, and soil scientists.


Manual on Small Earth Dams

Manual on Small Earth Dams

Author: Tim Stephens

Publisher: Food & Agriculture Organization of the UN (FAO)

Published: 2010

Total Pages: 140

ISBN-13: 9789251065471

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This publication fills a void of practical guidelines for the construction of small earth dams. It presents readers with sound, reliable and practical source material to improve dam siting and design capacity in rural areas, to introduce a beneficiary and gender sensitive approach and to enhance safety and competence in construction. A section also provides convenient guidance on costing, drafting tenders and awarding contracts. The manual is primarily aimed at technicians and others with knowledge of engineering and basic irrigation systems and processes to apply the concepts, techniques and methods proposed, using simple and straightforward design and construction procedures.


Groundwater and Seepage

Groundwater and Seepage

Author: Milton E. Harr

Publisher: Courier Corporation

Published: 2012-12-04

Total Pages: 338

ISBN-13: 0486145190

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The movement of groundwater is a basic part of soil mechanics. It is an important part of almost every area of civil engineering, agronomy, geology, irrigation, and reclamation. Moreover, the logical structure of its theory appeals to engineering scientists and applied mathematicians. This book aims primarily at providing the engineer with an organized and analytical approach to the solutions of seepage problems and an understanding of the design and analysis of earth structures that impound water. It can be used for advanced courses in civil, hydraulic, agricultural, and foundation engineering, and will prove useful to consulting engineers — or any public or private agency responsible for building or maintaining water storage or control systems. Among the special features of this book are its coverage of previously unavailable Russian work in the field, an extensive appendix of concepts in advanced engineering mathematics needed to deal with physical flow systems, and numerous completely worked-out and solved examples coupled with over 200 problems of varying difficulty.