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Seismic Safety Evaluation of Concrete Dams

Seismic Safety Evaluation of Concrete Dams
  • Author : Chong Zhang
  • Publisher : Elsevier
  • Release : 21 August 2014
GET THIS BOOKSeismic Safety Evaluation of Concrete Dams

The consequences of a large dam failing can be disastrous. However, predicting the performance of concrete dams during earthquakes is one of the most complex and challenging problems in structural dynamics. Based on a nonlinear approach, "Seismic Safety Evaluation of Concrete Dams" allows engineers to build models that account for nonlinear phenomena such as vertical joint slippage, cracks, and cavitation. This yields more accurate estimates. Advanced but readable, this book is the culmination of the work carried out by Tsinghua

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Earthquake Engineering for Concrete Dams

Earthquake Engineering for Concrete Dams
  • Author : Anil K. Chopra
  • Publisher : John Wiley & Sons
  • Release : 28 January 2020
GET THIS BOOKEarthquake Engineering for Concrete Dams

A comprehensive guide to modern-day methods for earthquake engineering of concrete dams Earthquake analysis and design of concrete dams has progressed from static force methods based on seismic coefficients to modern procedures that are based on the dynamics of dam–water–foundation systems. Earthquake Engineering for Concrete Dams offers a comprehensive, integrated view of this progress over the last fifty years. The book offers an understanding of the limitations of the various methods of dynamic analysis used in practice and

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Earthquake Engineering for Concrete Dams

Earthquake Engineering for Concrete Dams
  • Author : Anil K. Chopra
  • Publisher : John Wiley & Sons
  • Release : 06 April 2020
GET THIS BOOKEarthquake Engineering for Concrete Dams

A comprehensive guide to modern-day methods for earthquake engineering of concrete dams Earthquake analysis and design of concrete dams has progressed from static force methods based on seismic coefficients to modern procedures that are based on the dynamics of dam–water–foundation systems. Earthquake Engineering for Concrete Dams offers a comprehensive, integrated view of this progress over the last fifty years. The book offers an understanding of the limitations of the various methods of dynamic analysis used in practice and

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Earthquake Engineering for Concrete Dams

Earthquake Engineering for Concrete Dams
  • Author : National Research Council,Division on Engineering and Physical Sciences,Commission on Engineering and Technical Systems,Division of Natural Hazard Mitigation,Committee on Earthquake Engineering,Panel on Earthquake Engineering for Concrete Dams
  • Publisher : National Academies Press
  • Release : 01 February 1991
GET THIS BOOKEarthquake Engineering for Concrete Dams

The hazard posed by large dams has long been known. Although no concrete dam has failed as a result of earthquake activity, there have been instances of significant damage. Concerns about the seismic safety of concrete dams have been growing recently because the population at risk in locations downstream of major dams continues to expand and because the seismic design concepts in use at the time most existing dams were built were inadequate. In this book, the committee evaluates current

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Seismic Performance Analysis of Concrete Gravity Dams

Seismic Performance Analysis of Concrete Gravity Dams
  • Author : Gaohui Wang,Wenbo Lu,Sherong Zhang
  • Publisher : Springer Nature
  • Release : 10 July 2020
GET THIS BOOKSeismic Performance Analysis of Concrete Gravity Dams

This book evaluates the seismic performance of concrete gravity dams, considering the effects of strong motion duration, mainshock-aftershock seismic sequence, and near-fault ground motion. It employs both the extended finite element method (XFEM) and concrete damaged plasticity (CDP) models to characterize the mechanical behavior of concrete gravity dams under strong ground motions, including the dam-reservoir-foundation interaction. In addition, it discusses the effects of the initial crack, earthquake direction, and cross-stream seismic excitation on the nonlinear dynamic response to strong ground

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Earthquake Engineering Handbook

Earthquake Engineering Handbook
  • Author : Charles Scawthorn,Wai-Fah Chen
  • Publisher : CRC Press
  • Release : 27 September 2002
GET THIS BOOKEarthquake Engineering Handbook

Earthquakes are nearly unique among natural phenomena - they affect virtually everything within a region, from massive buildings and bridges, down to the furnishings within a home. Successful earthquake engineering therefore requires a broad background in subjects, ranging from the geologic causes and effects of earthquakes to understanding the imp

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Numerical Analysis of Dams

Numerical Analysis of Dams
  • Author : Gabriella Bolzon,Donatella Sterpi,Guido Mazzà,Antonella Frigerio
  • Publisher : Springer Nature
  • Release : 18 October 2020
GET THIS BOOKNumerical Analysis of Dams

This book gathers contributions from the 15th ICOLD Benchmark Workshop on Numerical Analysis of Dams. The workshop provided an opportunity for engineers, researchers and operators to present and exchange their experiences and the latest advances in numerical modelling in the context of the design, performance and monitoring of dams. Covering various aspects of computer analysis tools and safety assessment criteria, and their development over recent decades, the book is a valuable reference resource for those in the engineering community involved

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Seismic Safety of High Arch Dams

Seismic Safety of High Arch Dams
  • Author : Houqun Chen,Shengxin Wu,Faning Dang
  • Publisher : Elsevier
  • Release : 10 November 2015
GET THIS BOOKSeismic Safety of High Arch Dams

Written for civil, structural and geotechnical engineers, this book presents the latest research and practical experience in the design of high-arch dams in seismically active regions, from an author team that is highly active and experienced in the design, development and construction of 300m high arch dams. The book covers the entire subject of dam design for seismic regions, including seismic input mechanisms and modeling, non-linear analysis techniques for dam structure and foundations, concrete material properties, and simulation techniques for

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Nonlinear Response of Concrete Gravity Dams to Strong Earthquake-induced Ground Motion

Nonlinear Response of Concrete Gravity Dams to Strong Earthquake-induced Ground Motion
  • Author : Paul F. Mlakar
  • Publisher : Anonim
  • Release : 29 November 1987
GET THIS BOOKNonlinear Response of Concrete Gravity Dams to Strong Earthquake-induced Ground Motion

This report documents an investigation of the behavior of concrete gravity dams subjected to earthquake motions of sufficient strength to induce cracking. Nonlinear, dynamic, finite element analyses of three dams subjected to the Parkfield earthquake motion are conducted with the ADINA84 code. In the analyses the essential characteristics of static preloading, bidirectional seismic motion, dynamic concrete cracking, and hydrodynamic interaction are modeled. The results show that cracked zones can propagate through the cross sections at various elevations. The US Army

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An Introduction to Earthquake Evaluation of Dams

An Introduction to Earthquake Evaluation of Dams
  • Author : J. Paul Guyer, P.E., R.A.
  • Publisher : Guyer Partners
  • Release : 27 March 2021
GET THIS BOOKAn Introduction to Earthquake Evaluation of Dams

Introductory technical guidance for civil engineers, geotechnical engineers and construction managers interested in earthquake safety evaluation of concrete and embankment dams. Here is what is discussed: 1. TYPE AND EXTENT OF ANALYSES 2. CONCRETE DAMS 3. EMBANKMENT DAMS.

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Advanced Dam Engineering for Design, Construction, and Rehabilitation

Advanced Dam Engineering for Design, Construction, and Rehabilitation
  • Author : R.B. Jansen
  • Publisher : Springer Science & Business Media
  • Release : 06 December 2012
GET THIS BOOKAdvanced Dam Engineering for Design, Construction, and Rehabilitation

The present state of the art of dam engineering has been ronmental, and political factors, which, though important, attained by a continuous search for new ideas and methods are covered in other publications. while incorporating the lessons of the past. In the last 20 The rapid progress in recent times has resulted from the years particularly there have been major innovations, due combined efforts of engineers and associated scientists, as largely to a concerted effort to blend the best of theory

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