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Introductory technical guidance for civil engineers and construction managers interested in design and construction of small earthfill dams. Here is what is discussed: 1. FUNDAMENTAL CONSIDERATIONS 2. PORE WATER PRESSURE 3. SEEPAGE THROUGH EMBANKMENTS 4. STABILITY ANALYSES 5. EMBANKMENT DESIGN. 6. SEISMIC DESIGN.
Introductory technical guidance for civil engineers and construction managers interested in design and construction of earthfill dams. Here is what is discussed: 1. FUNDAMENTAL CONSIDERATIONS, 2. PORE WATER PRESSURE, 3. SEEPAGE THROUGH EMBANKMENTS, 4. STABILITY ANALYSES, 5. EMBANKMENT DESIGN., 6. SEISMIC DESIGN.
Introductory technical guidance for civil and geotechnical engineers and construction managers interested in design and construction of small earthfill dam embankments. Here is what is discussed: 1. CREST DESIGN 2. FREEBOARD 3. UPSTREAM SLOPE PROTECTION 4. SURFACE DRAINAGE 5. FLARED SLOPES AT ABUTMENTS.
Introductory technical guidance for civil engineers, geotechnical engineers and other professional engineers and construction managers interested in small earthfill dams. Here is what is discussed: 1. CREST DESIGN, 2. FREEBOARD, 3. UPSTREAM SLOPE PROTECTION, 4. SURFACE DRAINAGE, 5. FLARED SLOPES AT ABUTMENTS.
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.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in design and construction of small dams. Here is what is discussed: 1. SMALL DAM TYPES 2. SMALL CONCRETE GRAVITY DAMS 3. EARTHFILL EMBANKMENT DAMS 4. EMBANKMENT DESIGN 5. CONCRETE CONDUITS 6. OUTLET WORKS 7. SOIL EXPLORATION.
Hydraulic Structure, Equipment and Water Data Acquisition Systems is a component of Encyclopedia of Water Sciences, Engineering and Technology Resources in the global Encyclopedia of Life Support Systems (EOLSS), which is an integrated compendium of twenty one Encyclopedias. Hydraulic structures occupied a vital role in the development of civilization from the earliest recorded history up to the present, and undoubtedly will do so in the future. Humanity in ancient times settled mostly near perennial rivers, nomadic people frequented oases and springs, and to augment these natural ephemeral supplies, established societies built primitive dams and dug wells. This 4-volume set contains several chapters, each of size 5000-30000 words, with perspectives, applications and extensive illustrations. It carries state-of-the-art knowledge in the fields of Hydraulic Structure, Equipment and Water Data Acquisition Systems. In these volumes the historical origins, modern developments, and future perspectives in the field of water supply engineering are discussed. Various types of hydraulic structures, their associated equipment, and the various systems for collecting data are described. These four volumes are aimed at the following five major target audiences: University and College Students Educators, Professional Practitioners, Research Personnel and Policy Analysts, Managers, and Decision Makers, NGOs and GOs.
Introductory technical guidance for civil, structural and geotechnical engineers and construction managers interested in design of small rockfill dams. Here is what is discussed: 1. GENERAL 2. FOUNDATION DESIGN 3. EMBANKMENT DESIGN 4. MEMBRANE DESIGN.
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.