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This book presents practical guidelines and recommendations for the design in seismic-prone regions.
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This book focuses on the seismic design of Structures, Piping Systems and Components (SSC). further, it delves into geotechnical aspects related to the earthquake design, analysis of multi degree-of-freedom systems, and seismic design of RC structures and steel structures.
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Under overarching umbrella of earthquake engineering and technology, systematic categorization of various ongoing research details pertaining to earthquake engineering and disaster management has been introduced in this book.
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Design of Wind and Earthquake Resistant Reinforced Concrete Buildings explains wind and seismic design issues of RCC buildings in brief and provides design examples based on recommendations of latest IS codes essential for industrial design.
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Research in structural vibration control deals with catastrophic failures of civil structures during natural hazards.
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This systematically sets out useful engineering equations and computational models for analysing large outdoor fire dynamics, and presents practical approaches to risk... Læs mere
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This book challenges reconstruction as a replica to physically preserve damaged built heritage by critically examining... Læs mere
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Integrated earthquake simulation evaluates earthquake hazards and disasters by carrying out a sequence of numerical simulations of such aspects as earthquake wave... Læs mere
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This book summarizes the most essential concepts that every engineer designing a new building or evaluating an existing structure should consider to control the damage caused by drift (deformation) induced by earthquakes.
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The Endurance Time Method (ETM) is used for seismic analysis of simple and complex structural systems and civil engineering infrastructure as well as producing optimal and cost effective structural and detail designs.