New Zealand Seismological Report, 2001
Author: D. E. Maunder
Publisher:
Published: 2007
Total Pages: 224
ISBN-13:
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Author: D. E. Maunder
Publisher:
Published: 2007
Total Pages: 224
ISBN-13:
DOWNLOAD EBOOKAuthor: Seismological Observatory (New Zealand)
Publisher:
Published: 1999
Total Pages: 166
ISBN-13:
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Published: 2005-03
Total Pages: 426
ISBN-13:
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Publisher:
Published: 2007
Total Pages: 256
ISBN-13:
DOWNLOAD EBOOKAuthor: U.S. Coast and Geodetic Survey
Publisher:
Published: 1926
Total Pages: 858
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. Bureau of Mines. Technical Library, Pittsburgh
Publisher:
Published: 1968
Total Pages: 778
ISBN-13:
DOWNLOAD EBOOKAuthor: George Deodatis
Publisher: CRC Press
Published: 2014-02-10
Total Pages: 5732
ISBN-13: 1315884887
DOWNLOAD EBOOKSafety, Reliability, Risk and Life-Cycle Performance of Structures and Infrastructures contains the plenary lectures and papers presented at the 11th International Conference on STRUCTURAL SAFETY AND RELIABILITY (ICOSSAR2013, New York, NY, USA, 16-20 June 2013). This set of a book of abstracts and searchable, full paper USBdevice is must-have literature for researchers and practitioners involved with safety, reliability, risk and life-cycle performance of structures and infrastructures.
Author: Kyriazis D. Pitilakis
Publisher: Springer Science & Business Media
Published: 2007-06-14
Total Pages: 497
ISBN-13: 1402058934
DOWNLOAD EBOOKThis book contains the full papers on which the invited lectures of the 4th International Conference on Geotechnical Earthquake Engineering (4ICEGE) were based. The conference was held in Thessaloniki, Greece, from 25 to 28 June, 2007. The papers offer a comprehensive overview of the progress achieved in soil dynamics and geotechnical earthquake engineering, examine ongoing and unresolved issues, and discuss ideas for the future.
Author: David J. Dowrick
Publisher: John Wiley & Sons
Published: 2003-09-12
Total Pages: 520
ISBN-13: 0470869348
DOWNLOAD EBOOKEncompassing theory and field experience, this book covers all the main subject areas in earthquake risk reduction, ranging from geology, seismology, structural and soil dynamics to hazard and risk assessment, risk management and planning, engineering and the architectural design of new structures and equipment. Earthquake Risk Reduction outlines individual national weaknesses that contribute to earthquake risk to people and property; calculates the seismic response of soils and structures, using the structural continuum 'Subsoil - Substructure - Superstructure - Non-structure'; evaluates the effectiveness of given designs and construction procedures for reducing casualties and financial losses; provides guidance on the key issue of choice of structural form; presents earthquake resistant designs methods for the four main structural materials - steel, concrete, reinforced masonry and timber - as well as for services equipment, plant and non-structural architectural components; contains a chapter devoted to problems involved in improving (retrofitting) the existing built environment. Compiled from the author's extensive professional experience in earthquake engineering, this key text provides an excellent treatment of the complex multidisciplinary process of earthquake risk reduction. This book will prove an invaluable reference and guiding tool to practicing civil and structural engineers and architects, researchers and postgraduate students in seismology, local governments and risk management officials.
Author: Klaus Reicherter
Publisher: Geological Society of London
Published: 2009
Total Pages: 344
ISBN-13: 9781862392762
DOWNLOAD EBOOKGiven the tremendous toll in human lives and attendant economic losses, it is appropriate that scientists are working hard to understand better earthquakes, with the aim of forecasting and, ultimately, predicting them. In the last decades increasing attention has been paid to the coseismic effects on the natural environment, creating a solid base of empirical data for the estimation of source parameters of strong earthquakes based on geological observations. The recently introduced INQUA scale (Environmental Seismic Intensity-ESI 2007 Scale) of macroseismic intensity clearly shows how the systematic study of earthquake surface faulting, coseismic liquefaction, tsunami deposits and other primary and secondary ground effects can be integrated with 'traditional' seismological and tectonic information to provide a better understanding of the seismicity level of an area and the associated hazards. At the moment this is the only scientific means of equating the seismic records to the seismic cycle time-spans extending the seismic catalogues even to tens of thousands of years, improving future seismic hazard analyses. This Special Publication covers some of the latest multidisciplinary work undertaken to achieve that aim. Eighteen papers from research groups from all continents address a wide range of topics related both to palaeoseismological studies and assessment of macroseismic intensity based only on the natural phenomena associated with an earthquake.