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This book provides an insight on advanced methods and concepts for
the design and analysis of structures against earthquake loading.
This second volume is a collection of 28 chapters written by
leading experts in the field of structural analysis and earthquake
engineering. Emphasis is given on current state-of-the-art methods
and concepts in computing methods and their application in
engineering practice. The book content is suitable for both
practicing engineers and academics, covering a wide variety of
topics in an effort to assist the timely dissemination of research
findings for the mitigation of seismic risk. Due to the devastating
socioeconomic consequences of seismic events, the topic is of great
scientific interest and is expected to be of valuable help to
scientists and engineers. The chapters of this volume are extended
versions of selected papers presented at the COMPDYN 2011
conference, held in the island of Corfu, Greece, under the auspices
of the European Community on Computational Methods in Applied
Sciences (ECCOMAS).
Urban Water Distribution Networks: Assessing Systems
Vulnerabilities and Risks provides a methodology for a system-wide
assessment of water distribution networks (WDN) based on component
analysis, network topology and, most importantly, the effects of a
network's past performance on its seismic and/or non-seismic
reliability. Water distribution networks engineers and system
designers face multiple operational issues in delivering safe and
clean potable water to their customers.
This book provides an insight in advanced methods and concepts for
structural analysis and design against seismic loading. The book
consists of 25 chapters dealing with a wide range of timely issues
in contemporary Earthquake Engineering. In brief, the topics
covered are: collapse assessment, record selection, effect of soil
conditions, problems in seismic design, protection of monuments,
earth dam structures and liquid containers, numerical methods,
lifetime assessment, post-earthquake measures. A common ground of
understanding is provided between the communities of Earth Sciences
and Computational Mechanics towards mitigating seismic risk. The
topic is of great social and scientific interest, due to the large
number of scientists and practicing engineers currently working in
the field and due to the great social and economic consequences of
earthquakes.
This book provides an insight on advanced methods and concepts for
the design and analysis of structures against earthquake loading.
This second volume is a collection of 28 chapters written by
leading experts in the field of structural analysis and earthquake
engineering. Emphasis is given on current state-of-the-art methods
and concepts in computing methods and their application in
engineering practice. The book content is suitable for both
practicing engineers and academics, covering a wide variety of
topics in an effort to assist the timely dissemination of research
findings for the mitigation of seismic risk. Due to the devastating
socioeconomic consequences of seismic events, the topic is of great
scientific interest and is expected to be of valuable help to
scientists and engineers. The chapters of this volume are extended
versions of selected papers presented at the COMPDYN 2011
conference, held in the island of Corfu, Greece, under the auspices
of the European Community on Computational Methods in Applied
Sciences (ECCOMAS).
This book provides an insight in advanced methods and concepts for
structural analysis and design against seismic loading. The book
consists of 25 chapters dealing with a wide range of timely issues
in contemporary Earthquake Engineering. In brief, the topics
covered are: collapse assessment, record selection, effect of soil
conditions, problems in seismic design, protection of monuments,
earth dam structures and liquid containers, numerical methods,
lifetime assessment, post-earthquake measures. A common ground of
understanding is provided between the communities of Earth Sciences
and Computational Mechanics towards mitigating seismic risk. The
topic is of great social and scientific interest, due to the large
number of scientists and practicing engineers currently working in
the field and due to the great social and economic consequences of
earthquakes.
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Paperback
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R367
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