Strong Motion Instrumentation for Civil Engineering Structures
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By:"Mustafa Özder Erdik","Mehmet Çelebi","Vladimir Mihailov","Nurdan Apaydin"
"Technology & Engineering"
Published on 2012-12-06 by Springer Science & Business Media
Key Words: \u003cb\u003eStructural\u003c/b\u003e response, full-scale testing, \u003cb\u003emodeling\u003c/b\u003e, soil-structure \u003cbr\u003e\ninteraction careful and detailed analysis of a full-scale experiment, but often too \u003cbr\u003e\nlate to correct the original \u003cb\u003edesign\u003c/b\u003e. Is detailed \u003cb\u003emodeling\u003c/b\u003e necessary for many \u003cbr\u003e\n\u003cb\u003eengineering\u003c/b\u003e ...
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Most of the existing strong motion instrumentation on civil engineering structures is installed and operated as federal, state, university, industry or private applications, in many cases operated as a closed system. This hampers co-operation and data exchange, hampering the acquisition of strong motion and structural data, sometimes even within a single country. There is a powerful need to inform engineers of existing strong motion data and to improve the accessibility of data worldwide. This book will play a role in fulfilling such a need by disseminating state-of-the art information, technology and developments in the strong motion instrumentation of civil engineering structures. The subject has direct implications for the earthquake response of structures, improvements in design for earthquake resistance, and hazard mitigation. Readership: Researchers in earthquake engineering, engineers designing earthquake resistant structures, and producers of strong motion recording equipment.
This Book was ranked 14 by Google Books for keyword civil Engineering Design, Modelling & Problem Solving.
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