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Die Ingenieurgeologie ist ein junges, interdisziplinäres Fachgebiet an der Schnittstelle von Geo- und Ingenieurwissenschaften. Es befasst sich mit der Geosphäre, ihrer Wechselwirkung mit dem Menschen und verbindet das raumzeitliche Denken des Geowissenschaftlers mit der Entwurfsarbeit des Ingenieurs. Ausgehend von der Erkundung der Geosphäre stellt der Autor zunächst Georisiken vor und diskutiert die Folgen menschlicher Eingriffe in die Geosphäre. Anschließend veranschaulicht er aktuelle ingenieurgeologische Herausforderungen und entwirft nachhaltige Lösungskonzepte für verschiedene Problembereiche: z. B. Naturgefahren wie Hangrutschungen und Bergfälle, die Ausbeute natürlicher Ressourcen, Bau- und Sanierungsvorhaben. Abbildungen, Fallbeschreibungen und ausgearbeitete Beispiele vertiefen das Verständnis für diesen neuen, zukunftsträchtigen Zweig der Erdwissenschaften.
Geology. --- Civil engineering. --- Physical chemistry. --- Geotechnical engineering. --- Engineering geology. --- Engineering—Geology. --- Foundations. --- Hydraulics. --- Hydrogeology. --- Geology. --- Civil Engineering. --- Physical Chemistry. --- Geotechnical Engineering & Applied Earth Sciences. --- Geoengineering, Foundations, Hydraulics. --- Hydrogeology.
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In 26 Fachaufsätzen, darunter 5 englischsprachige, die von angesehenen Wissenschaftlern und Ingenieuren der Bodenmechanik, Bodendynamik sowie Geotechnik verfasst wurden, werden neue Erkenntnisse sowie Ergebnisse experimenteller Untersuchungen vorgestellt. Drei Themengruppen werden behandelt: Bodendynamik und dynamische Boden-Bauwerk Interaktion; Theoretische und experimentelle Bodenmechanik; Geotechnik, Umweltgeotechnik und Verkehrswegebau. Beispiele für die Umsetzung aktueller wissenschaftlicher Erkenntnisse in die Baupraxis machen das Buch auch für die Ingenieure interessant. Die Beiträge sind mit zahlreichen Abbildungen illustriert. .
Civil engineering. --- Engineering geology. --- Engineering—Geology. --- Foundations. --- Hydraulics. --- Mechanics. --- Mechanics, Applied. --- Soil science. --- Soil conservation. --- Civil Engineering. --- Geoengineering, Foundations, Hydraulics. --- Solid Mechanics. --- Soil Science & Conservation.
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Das neue Lehrbuch vermittelt technisches Knowhow für die planerische Gestaltung moderner Ver- und Entsorgungssysteme. Es erklärt alle Funktionen der technisch-materiellen Infrastrukturen und zeigt die Wirkung der wichtigsten Ver- und Entsorgungssysteme auf Raum und Umwelt. Es gibt präzise Antworten auf Fragen, warum zum Beispiel bei der räumlichen Planung Ver- und Entsorgung als gemeinsames System behandelt werden sollen, Innenstädte von großen Anlagen außerhalb versorgt werden und kleine, dezentrale Systeme in bereits bestehenden Siedlungsstrukturen schwer durchzusetzen sind. Planer, aber auch Ingenieure einzelner Fachgebiete finden hier wertvolle Informationen, Tipps und Hinweise zur Integration ihrer Disziplin in das Gesamtsystem der Ver- und Entsorgung.
Energy policy. --- Energy and state. --- Civil engineering. --- Engineering geology. --- Engineering—Geology. --- Foundations. --- Hydraulics. --- Building construction. --- Energy Policy, Economics and Management. --- Civil Engineering. --- Geoengineering, Foundations, Hydraulics. --- Building Physics, HVAC.
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Communication of design risk within a transparent and rational framework is necessary in view of the increasing interest in code harmonization, public involvement in defining acceptable risk levels, and risk-sharing among client, consultant, insurer, and financier. Activities in code harmonization are particularly noteworthy. For the geotechnical engineering profession, there is added pressure for it to undergo a significant revamp because structural and geotechnical design are increasingly incompatible. The contributions in this volume tackle the important issues relating to new generation ge
Engineering geology --- Soil mechanics --- Rock mechanics --- Natural disasters --- Engineering --- Civil engineering --- Geology, Economic --- Standards --- Geology
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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 52 technical papers and presents the recent advances in research and practical applications in engineering issues in karst and ground subsidence, tunneling and underground construction, and deep excavation. The book begins with two keynote papers by Professor Linda Yang and Professor Jian Zhao, which summarize recent advances in some key problems on stability analysis of underground rock structures and recent studies of rock dynamics for underground development, respectively. The section on engineering issues in karst and ground subsidence addresses investigation, construction and design issues in karst terrain and ground subsidence due to withdrawal of fluids. The tunneling and underground construction section covers topics such as box culverts, shield tunnels and interactions between tunnels and other underground and surface structures. The deep excavation section presents theoretical and case studies on stability and deformations associated with deep excavation.
Engineering geology --- Underground construction --- Underground construction --- Underground structures --- Ground motion --- Karst --- Land subsidence --- Excavation --- Tunneling --- Faculty
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Das Buch wendet sich an Ingenieure, die in Planung, Bau und Betrieb wasserwirtschaftlicher Projekte eingebunden sind. Die umfassende Darstellung aller relevanten Bereiche des Wasserbaus ermöglicht den Überblick über die heutigen Aufgaben und Lösungsansätze im Wasserbau. Die jahrtausendealte Disziplin des Wasserbaus unterlag von jeher einem stetigen Wandel. Insbesondere in den letzten 50 Jahren entstanden neue Techniken und Bauformen, die in die Lösung von Problemstellungen der Praxis einfließen können. Die in diesem Buch veröffentlichten Ergebnisse neuerer Forschungen sind bereits erprobt. Der Modernisierung und Sanierung bestehender Anlagen widmet sich ein eigenes Kapitel. Die wichtigen Normen und Regelwerke, die Europäische Wasserrahmenrichtlinie und die Wasserbau-Norm DIN 19700 werden in aktueller Fassung berücksichtigt. Die besonderen Anforderungen an die Planung wasserbaulicher Anlagen im Ausland werden im Buch ebenfalls dargestellt.
Civil engineering. --- Environmental sciences. --- Engineering geology. --- Engineering—Geology. --- Foundations. --- Hydraulics. --- Water pollution. --- Civil Engineering. --- Environmental Science and Engineering. --- Geoengineering, Foundations, Hydraulics. --- Waste Water Technology / Water Pollution Control / Water Management / Aquatic Pollution.
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Engineering geology --- Géologie appliquée --- Terre --- Land --- Évolution --- evolution --- rock --- Cycle biogéochimique --- cycling --- Ressource en eau --- Water resources --- Géologie appliquée --- evolution.
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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
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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; the University of Kansas; the University of Tennessee; International Association of Foundation Drilling; Deep Foundation Institute; Saga University; and Delft University of Technology. This Geotechnical Special Publications contains 42 papers on unsaturated soil mechanics and environmental geotechnics. Two papers focus on geoenvironmental engineering and unsaturated soil mechanics applied to field problems. Additional papers highlight unsaturated soil phenomena, coupled phenomena, and transport phenomena. The book showcases new experimental evidence and theoretical developments on strength and deformational behaviors of both expansive soil and collapsible loess, as well as some new testing techniques to characterize volumetric change and strength of these problematic soils. It reports on the latest understanding of various coupled phenomena in soils such as hydrobiological, hydromechanical, hydrothermal, thermal-mechanical and hydrochemical coupling. The papers also address the latest advances in geoenvironmental applications including the sustainability of landfills, removal of various contaminants from soils, soil-contaminant interactions, and soil stabilization.
Environmental geotechnology --- Zone of aeration --- Engineering geology --- Seepage --- Unsaturated soils --- Geotechnical engineering --- Seepage --- Colleges and universities --- Soil strength --- Coupling --- Soil deformation --- Soil properties
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