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Introduction to Strain-Based Structural Health Monitoring of Civil Structures

Brief Description
A comprehensive introduction to strain-based structural health monitoring of civil structures, with focus on measurement and data analysis Introduction to Strain-Based Structural Health Monitoring of Civil Structures focuses on the SHM of civil structures and infrastructure, and develops the relevant topics of measurement and data analysis... Read More
Format: Hardback
$17899
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A comprehensive introduction to strain-based structural health monitoring of civil structures, with focus on measurement and data analysis

Introduction to Strain-Based Structural Health Monitoring of Civil Structures focuses on the SHM of civil structures and infrastructure, and develops the relevant topics of measurement and data analysis from a fundamental to advanced level.

The book contains an overview of the available and emerging strain monitoring technologies like traditional strain-gauges and vibrating wire sensors, discrete and distributed fibre optic sensors, and large area electronics. The fundamentals of error analysis, as well as typical sources of errors in measurements, are discussed. Sources of strain in typical construction materials such as concrete, steel, timber, and composite materials are also discussed, while both basic and advanced data interpretation and analysis for monitoring concrete and steel structures are presented in detail.

Methods applicable to a large spectrum of beam-like structural elements and civil structures, such as bridges, buildings, and pipelines, are summarised. These methods are developed at three scales: local scale (material or structural), global (structural) scale, and integrity scale, and are illustrated with practical examples.

Key features:

  • Defines and describes SHM and identifies its main components and stakeholders.
  • Explores the potential and benefits as well as the limitations of SHM.
  • Introduces strain-based structural health monitoring of civil structures, with focus on measurement and data analysis.
  • Covers the physical principles, advantages, and limitations of various types of sensors.
  • Covers fundamental error analysis and presents typical sources of errors.
  • Covers the sources of short- and long-term strain, and how to interpret the strain measurement.
  • Includes basic and advanced model-based methods for data analysis.
  • Contains the basic strain-based SHM methods for monitoring various types of structures at local, global, and integrity scale.
  • Suitable as a guide for practising engineers, a reference for infrastructure owners, and a textbook for researchers and SHM university courses.
  • A valuable companion to Glisic & Inaudi’s Fibre Optic Methods for Structural Health Monitoring.

Introduction to Strain-Based Structural Health Monitoring of Civil Structures is essential, state-of-the-art reading for civil and structural engineers and professionals in SHM, as well as teachers, researchers, and students in civil engineering.

Book Details

INFORMATION

ISBN: 9781118495353

Publisher: John Wiley & Sons Inc

Format: Hardback

Date Published: 11 July 2024

Country: United States

Imprint: John Wiley & Sons Inc

Audience: Professional and scholarly

DIMENSIONS

Spine width: 28.0mm

Width: 184.0mm

Height: 261.0mm

Weight: 851g

Pages: 368

About the Author

Branko Gliőić is Professor and Chair of Civil and Environmental Engineering at Princeton University, USA. His main areas of interest are SHM methods, advanced sensory systems, SHM analysis and data management, smart and adaptable structures, heritage structures, and more broadly, sustainable, resilient, and livable built environment, engineering education, and engineering and the arts. He received degrees in civil engineering and mathematics from the University of Belgrade and his doctorate from the Swiss Federal Institute of Technology, Lausanne (EPFL). Prior to joining Princeton, he was employed at SMARTEC SA, Switzerland, where he was involved in research and engineering in numerous structural health monitoring projects.

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