Listing 1 - 6 of 6 |
Sort by
|
Choose an application
EARTH DAMS --- ROCKFILL DAMS --- COHESIVE SOILS
Choose an application
Earth dams --- Casagrande, Arthur, --- 624.137 --- 627.824 --- Earthen dams --- Earthfill dams --- Embankment dams --- Fill dams --- Hydraulic fill dams --- Rockfill dams --- Dams --- Embankments --- Banks etc. Retaining structures. Transition-works between different ground levels. Securing of earth masses --- Earth dams. Rockfill dams. Gravity dams --- Casagrande, Arthur --- Earth dams. --- 627.824 Earth dams. Rockfill dams. Gravity dams --- 624.137 Banks etc. Retaining structures. Transition-works between different ground levels. Securing of earth masses --- Casagrande, Arthur, - 1902 --- -Earth dams --- -Earth dams. --- Casagrande, Arthur, - 1902-
Choose an application
Canal and River Levées
Earth dams. --- Levees. --- Embankments. --- Earth dams --- Embankments --- Levees --- Earthwork --- Fills (Earthwork) --- Hydraulic structures --- Slopes (Soil mechanics) --- Earthen dams --- Earthfill dams --- Embankment dams --- Fill dams --- Hydraulic fill dams --- Rockfill dams --- Dams --- Mechanical Engineering --- Engineering & Applied Sciences --- Hydraulic Engineering
Choose an application
ROCKFILL DAMS --- SUBSOIL --- ICE --- POWER TRANSMISSION TOWERS --- IMPROVEMENT --- SOIL TESTS --- SOIL STABILIZATION --- FOUNDATIONS --- ROADS --- CONSTRUCTION --- BEARING CAPACITY --- INVESTIGATIONS --- CREEP PROPERTIES --- PRESSURE MEASUREMENT --- SOIL CLASSIFICATION --- ENGINEERING GEOLOGY --- SOIL PROPERTIES --- FIELD TESTS --- PILE FOUNDATIONS --- SETTLEMENT STRUCTURAL --- EARTH PRESSURE --- GROUND WATER --- STABILITY --- SLOPES
Choose an application
This proceedings book gathers contributions presented at the First International Conference on Embankment Dams (1st ICED, Beijing, 5–7 June 2020), which was the inaugural conference of the International Society of Soil Mechanics and Geotechnical Engineering (ISSMGE) Technical Committee TC210 on Embankment Dams. The contributions address five themes: (1) case histories on the failure of embankment dams and landslide dams; (2) dam failure process modelling; (3) soil mechanics for embankment dams; (4) dam risk assessment and management;and (5) monitoring, early warning and emergency response. These proceedings offer a unique resource that systematically presents recent dam breaching cases, their social impact, associated risk management strategies, and disposal methods for failed dams. It is an excellent reference guide for dam and levee engineers, flood safety officials, and emergency management agencies.
Engineering geology. --- Engineering—Geology. --- Foundations. --- Hydraulics. --- Geotechnical engineering. --- Geoengineering, Foundations, Hydraulics. --- Geotechnical Engineering & Applied Earth Sciences. --- Engineering --- Civil engineering --- Geology, Economic --- Engineering, Geotechnical --- Geotechnics --- Geotechnology --- Engineering geology --- Flow of water --- Water --- Fluid mechanics --- Hydraulic engineering --- Jets --- Architecture --- Building --- Structural engineering --- Underground construction --- Caissons --- Earthwork --- Masonry --- Soil consolidation --- Soil mechanics --- Walls --- Geology --- Flow --- Distribution --- Details --- Earth dams --- Earthen dams --- Earthfill dams --- Embankment dams --- Fill dams --- Hydraulic fill dams --- Rockfill dams --- Dams --- Embankments
Choose an application
This reprintshows recent advances in dam safety related to overtopping and the prevention, detection, and risk assessment of geostructural risks. Related to overtopping, the issues treated are: the throughflow and failure process of rockfill dams; the protection of embankment dams against overtopping by means of a rockfill toe or wedge-shaped blocks; and the protection of concrete dams with highly convergent chutes. In the area of geostructural threats, the detection of anomalies in dam behavior from monitoring data using a combination of machine learning techniques, the numerical modeling of seismic behavior of concrete dams, and the determination of the impact area downstream of ski-jump spillways are also studied and discussed. In relation to risk assessment, three chapters deal with the development of fragility curves for dikes and dams in relation to various failure mechanisms.
Technology: general issues --- History of engineering & technology --- hydraulic structure --- sky-jump --- spillway --- flip bucket --- chute --- basin --- erosion --- flow rate --- jet flow --- wave overtopping --- levee --- cover --- probabilistic framework --- slope stability --- piping --- overtopping --- fragility curves --- Monte Carlo simulation --- dam --- stilling basin --- bucket --- flood --- weir --- safety --- protection --- dam protection --- wedge-shaped block --- WSB --- dam spillway --- dam safety --- ACUÑA --- rockfill dams --- throughflow --- numerical modeling --- non-Darcy flow --- porous media --- Forchheimer equation --- high velocity --- crushed rock --- rounded materials --- hydraulic mean radius --- intrinsic permeability --- shape of particles --- angularity of particles --- surface roughness of particles --- river levees --- geogrid reinforcement --- First Order Reliability Method (FORM) --- Surface Response Method (SRM) --- high gravity dams --- dam-foundation-reservoir dynamic interaction --- earthquake input mechanisms --- hydrodynamic pressure --- foundation size --- reservoir length --- stacking --- blending --- combination --- meta-learner --- experts --- machine learning --- Cross Validation --- radial displacement --- rockfill dam --- dam failure --- overflow --- floods --- dam breach --- n/a --- ACUÑA
Listing 1 - 6 of 6 |
Sort by
|