Seismic safety of high arch dams / authors: Houqun Chen, Shengxin Wu, Faning Dang.

"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 300-...

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Bibliographic Details
Main Authors: Chen, Houqun (Author), Wu, Shengxin (Author), Dang, Faning, 1962- (Author)
Format: Book
Language:English
Published: Amsterdam : Elsevier / Academic Press : China Electric Power Press, [2016]
Subjects:
Table of Contents:
  • Preface
  • General description
  • Part 1. Seismic inputs at site of high arch dam. Outline of bases of seismic fortification levels and seismic hazard analysis at dam site
  • Determination of correlation design seismic motion parameters on dam site
  • Design acceleration time process
  • Dam site seismic motion input mechanism
  • Part 2. High arch dam body, reservoir water, foundation system seismic response analysis and seismic safety evaluation. High arch dam body-foundation system three-dimensional contact nonlinear dynamic analysis method
  • Dam abutment and arch support rock block stability and seismic safety evaluation of high arch dam
  • Research on parallel computation of high arch dam structure seismic motion response
  • Engineering real example analysis of parallel computation
  • Part 3. Dynamic testing, numerical simulation and mechanisms for dam concrete. Research progress on study on dynamic mechanical behavior of high arch dam concrete
  • Dynamic flexural experimental research on dam concrete
  • The experimental research on the dynamic and static mechanical characteristics of dam concrete and the constitutive materials
  • Experimental study on dynamic and static damage failure of concrete dam based on acoustic emission technology
  • Testing research on large dam concrete dynamic-static damage and failure based on CT technology
  • Research on numerical analysis of full gradation large dam concrete dynamic behaviors.