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Provides guidance for the safe design and economical construction of retaining walls and inland and coastal flood walls. This manual considers the retaining walls subjected to hydraulic loadings, such as flowing water, submergence, and wave action. It also discusses issues, such as design considerations, forces, and foundation analysis.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in flood and retaining walls. Here is what is discussed: 1. INTRODUCTION, 2. TYPES OF FLOOD WALLS, 3. DIFFERENCES BETWEEN RETAINING AND FLOOD WALLS, 4. COORDINATION BETWEEN DISCIPLINES, 5. GEOTECHNICAL INVESTIGATION, 6. DESIGN STRENGTH SELECTION, 7. PROBABLE MAXIMUM FLOOD HYDROGRAPHS, 8. WESTERN MOUNTAIN SNOWMELT EQUATION.
Introductory technical guidance for civil and geotechnical engineers nd construction managers interested in design, engineering and construction of flood and retaining walls. Here is what is discussed: 1. ALTERNATE TYPES OF RETAINING WALLS 2. DESIGN AND CONSTRUCTION DETAILS AND CAUSES OF UNSATISFACTORY PERFORMANCE OF FLOOD WALLS 3. FORCES ON FLOOD WALLS DUE TO EARTH PRESSURE 4. FLOOD WALL FOUNDATION ANALYSIS 5. GENERAL CONSIDERATIONS FOR FLOOD AND RETAINING WALLS 6. GRAVITY AND CANTILEVER FLOOD WALLS 7. SPECIAL CONSIDERATIONS FOR FLOOD WALLS 8. STRUCTURAL STABILITY OF FLOOD WALLS 9. WATER FORCES ON FLOOD WALLS..
Introductory technical guidance for civil engineers, structural engineers and construction managers interested in structural stability of flood walls. Here is what is discussed: 1. SCOPE, 2. REPRESENTATIVE LOADING CONDITIONS, 3. RETAINING WALLS, 4. INLAND FLOOD WALLS, 5. COASTAL FLOOD WALLS, 6. STABILITY CONSIDERATIONS, 7. STABILITY CRITERIA, 8. OVERTURNING STABILITY, 9. OVERTURNING STABILITY CRITERIA, 10. OVERVIEW OF SLIDING STABILITY ANALYSIS, 11. SLIDING FACTOR OF SAFETY, 12. ASSUMPTIONS AND SIMPLIFICATIONS, 13. GENERAL WEDGE EQUATION, 14. SLIP-PLANE ANGLE, 15. SINGLE WEDGE ANALYSIS, 16. MULTIPLE WEDGE ANALYSIS, 17. SLIDING STABILITY CRITERIA, 18. DESIGN CONSIDERATIONS, 19. BEARING CAPACITY ANALYSIS, 20. SUMMARY OF DESIGN PROCEDURES.
This manual provides guidance for the safe design and economical construction of retaining and flood walls. This manual is intended primarily for retaining walls which will be subjected to hydraulic loadings such as flowing water, submergence, wave action, and spray, exposure to chemically contaminated atmosphere, and/or severe climatic conditions. For the design of retaining walls which will not be subjected to hydraulic loadings or severe environmental conditions as described above, TM S-8l8-l may be used for computing the loadings and evaluating the stability of the structure.
UPDATED AND EXPANDED NEW 11TH EDITION. Design guide for earth retaining structures covers nearly every type of earth retaining structure: cantilevered, counterfort, restrained (basement walls), gravity, segmental, sheet pile, soldier pile, and others. Current building code requirements are referenced throughout. Topics include types of retaining structures, basic soil mechanics, design of concrete and masonry walls, lateral earth pressures, seismic design, surcharges, pile and pier foundations, Gabion walls and swimming pool walls. Fourteen varied design examples. Comprehensive Appendix with Glossary of terminology. 257 pages. 8-1/2x11 paperback.
Introductory technical guidance for civil engineers and other professional engineers and construction managers interested in design and construction of flood walls. Here is what is discussed: 1. FOUNDATION PREPARATION, 2. CONCRETE MATERIALS, 3. CONSTRUCTABILITY, 4. JOINTS, 5. SOIL BACKFILL, 6. DRAINAGE, 7. CONSTRUCTION CONSIDERATIONS, 8. CAUSES OF UNSATISFACTORY PERFORMANCE.
Introductory technical guidance for civil engineers and other professional engineers interested in earth pressures on flood walls. Here is what is discussed: I. INTRODUCTION, 2. EARTH PRESSURES AND FORCES.