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This volume on “Advances in Analysis and Design of Deep Foundations” contains 22 technical papers which cover various aspects of analysis and design of deep foundations based on full-scale field testing, numerical modeling, and analytical solutions. The technical papers are 8-10 pages long that present the results and findings from research as well as practical-oriented studies on deep foundations that are of interest to civil/geotechnical engineering community. The topics cover a wide spectrum of applications that include evaluation of the axial and lateral capacity of piles, pile group effects, evaluation of the increase in pile capacity with time (or pile setup), influence of excavation on pile capacity, study the behavior of pile raft caisson foundations, evaluate the bearing capacity and settlement of piles from cone penetration tests, etc. This volume is part of the proceedings of the 1st GeoMEast International Congress and Exhibition on Sustainable Civil Infrastructures, Egypt 2017.
Foundations --- Piling (Civil engineering) --- Geotechnical engineering --- Engineering, Geotechnical --- Geotechnics --- Geotechnology --- Earth sciences. --- Geotechnical engineering. --- Computer simulation. --- Engineering design. --- Engineering geology. --- Engineering --- Foundations. --- Hydraulics. --- Earth Sciences. --- Geotechnical Engineering & Applied Earth Sciences. --- Geoengineering, Foundations, Hydraulics. --- Simulation and Modeling. --- Building Construction and Design. --- Engineering Design. --- Geology. --- Engineering geology --- Hydraulic engineering. --- Design, Engineering --- Industrial design --- Strains and stresses --- Computer modeling --- Computer models --- Modeling, Computer --- Models, Computer --- Simulation, Computer --- Electromechanical analogies --- Mathematical models --- Simulation methods --- Model-integrated computing --- Engineering, Hydraulic --- Fluid mechanics --- Hydraulics --- Shore protection --- Design --- Engineering—Geology. --- Buildings—Design and construction. --- Building. --- Construction. --- Engineering, Architectural. --- Architectural engineering --- Buildings --- Construction --- Construction science --- Engineering, Architectural --- Structural design --- Structural engineering --- Architecture --- Construction industry --- Flow of water --- Water --- Hydraulic engineering --- Jets --- Building --- Underground construction --- Caissons --- Earthwork --- Masonry --- Soil consolidation --- Soil mechanics --- Walls --- Civil engineering --- Geology, Economic --- Design and construction --- Flow --- Distribution --- Details --- Geology
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This volume on “Advances in Analysis and Design of Deep Foundations” contains 22 technical papers which cover various aspects of analysis and design of deep foundations based on full-scale field testing, numerical modeling, and analytical solutions. The technical papers are 8-10 pages long that present the results and findings from research as well as practical-oriented studies on deep foundations that are of interest to civil/geotechnical engineering community. The topics cover a wide spectrum of applications that include evaluation of the axial and lateral capacity of piles, pile group effects, evaluation of the increase in pile capacity with time (or pile setup), influence of excavation on pile capacity, study the behavior of pile raft caisson foundations, evaluate the bearing capacity and settlement of piles from cone penetration tests, etc. This volume is part of the proceedings of the 1st GeoMEast International Congress and Exhibition on Sustainable Civil Infrastructures, Egypt 2017.
Meteorology. Climatology --- Materials sciences --- Hydraulic energy --- Mining industry --- Production management --- Artificial intelligence. Robotics. Simulation. Graphics --- Building design --- Building materials. Building technology --- Structural parts and elements of building --- opwarming (milieu) --- funderingen --- duurzame energie --- DFMA (design for manufacture and assembly) --- vormgeving --- bouwkunde --- mineralen (chemie) --- simulaties --- mijnbouw --- KI (kunstmatige intelligentie) --- hydraulica --- klimaatverandering --- AI (artificiële intelligentie)
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Proceedings of Geo Jordan, held in Irbid, Jordan, July 12-15, 2004. Sponsored by Jordan University of Science and Technology; Louisiana State University; University of Akron; Hashemite University. Cosponsored by the Geo-Institute of ASCE; ASCE-Jordan International Group; Gulf Society of GeoEngineering. This Geotechnical Practice Publication contain 30 papers covering a wide range of research areas that discuss the importance of water in semi-arid regions with an emphasis on dam engineering. This information is vital for reliable, efficient, and economic construction and maintenance of geostructures. Geotechnical engineers who specialize in dam, highway materials, and soil improvement will benefit from this book. Topics include: improvement of soil properties using geosynthetics and chemical stabilization; use of TDR and other geophysical methods to detect pollutants in soils and to assess properties of embankments; modeling the constitutive behavior of soils and fluid flow through granular materials; case histories of design filters for dams; monitoring and rehabilitation of dams; and embankments and geostructures.
Soil mechanics --- Geotechnical engineering --- Hydraulic engineering --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Geotechnical engineering --- Soil stabilization --- Developing countries --- Dams --- Highway engineering --- Soil properties --- Colleges and universities --- Material properties --- Jordan --- Middle East --- Asia --- Geotechnical engineering --- Soil stabilization --- Developing countries --- Dams --- Highway engineering --- Soil properties --- Colleges and universities --- Material properties --- Jordan --- Middle East --- Asia
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Proceedings of sessions of the GeoShanghai Conference, held in Shanghai, China, June 6-8, 2006. Hosted by Shanghai Society of Civil Engineering, China. In cooperation with the Geo-Institute of ASCE; Georgia Institute of Technology; and University of Kansas. This Geotechnical Special Publication contains over 40 technical papers that address issues ranging from the micro-characterization of processes to the in situ evaluation of engineering properties of soils. This book is divided into four main sections, with all of the papers addressing one of the greatest challenges in geotechnical engineering research and practice: the evaluation of geomaterial properties with minimal to no disturbance states. The first section includes the general theme paper by James K. Mitchell, University Distinguished Professor, Emeritus, Virginia Polytechnic Institute and State University, who focuses on the study of physico-chemical behavior of soils, soil improvement and geomaterial characterization. The second section is devoted to recognizing the services of Dr. Mehmet T. Tumay, Georgia Gulf Distinguished Professor Emeritus in the Department of Civil and Environmental Engineering at Louisiana State University, for his immense contribution to research and practice in geotechnical engineering. The third section covers non-destructive evaluation and geophysical testing to address soil characterization problems relevant to foundation exploration, geoenvironmental evaluation and earthquake related topics. Finally, the fourth section contains other in situ testing methods that deal with the analysis of field data and interpretation of soil properties, as well as simulation of in situ testing using numerical methods.
Engineering geology --- Soil mechanics --- Soil properties --- Geomaterials --- Field tests --- Geotechnical engineering --- Colleges and universities --- Soil tests --- Developing countries --- Faculty --- Georgia --- United States --- Soil properties --- Geomaterials --- Field tests --- Geotechnical engineering --- Colleges and universities --- Soil tests --- Developing countries --- Faculty --- Georgia --- United States
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