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Multi-hazard Approaches to Civil Infrastructure Engineering

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Cover of 'Multi-hazard Approaches to Civil Infrastructure Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Multi-hazard Approaches to Civil Infrastructure Engineering: Mitigating Risks and Promoting Resilence
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    Chapter 2 Correlated Maps for Regional Multi-Hazard Analysis: Ideas for a Novel Approach
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    Chapter 3 Supporting Life Cycle Management of Bridges Through Multi-Hazard Reliability and Risk Assessment
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    Chapter 4 Natural Hazard Probabilistic Risk Assessment Through Surrogate Modeling
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    Chapter 5 Risk and Decision-Making for Extreme Events: Climate Change and Terrorism
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    Chapter 6 Progressive Collapse Simulation of Vulnerable Reinforced Concrete Buildings
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    Chapter 7 Probabilistic Seismic Assessment of Existing Buildings: The CNR-DT212 Italian Provisions
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    Chapter 8 Multi-Hazard Multi-Objective Optimization of Building Systems with Isolated Floors Under Seismic and Wind Demands
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    Chapter 9 Energy Efficiency and Seismic Resilience: A Common Approach
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    Chapter 10 Probabilistic Evaluation Framework for Fire and Fire Following Earthquake
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    Chapter 11 Progressive Collapse Resistance for Steel Building Frames: A Cascading Multi-Hazard Approach with Subsequent Fire
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    Chapter 12 Strategies for Enhancing Fire Performance of NSM FRP-Strengthened Reinforced Concrete Beams
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    Chapter 13 Experimental and Analysis Methods for Blast Mitigating Designs in Civil Infrastructure
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    Chapter 14 Wood-Frame Residential Buildings in Windstorms: Past Performance and New Directions
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    Chapter 15 An Engineering-Based Approach to Predict Tornado-Induced Damage
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    Chapter 16 Performance-Based Hurricane Engineering: A Multi-Hazard Approach
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    Chapter 17 Wall of Wind Research and Testing to Enhance Resilience of Civil Infrastructure to Hurricane Multi-Hazards
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    Chapter 18 Accounting for Unknown Unknowns in Managing Multi-hazard Risks
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    Chapter 19 Bayesian Risk Assessment of a Tsunamigenic Rockslide at Åknes
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    Chapter 20 Rock Moisture Dynamics, Preferential Flow, and the Stability of Hillside Slopes
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    Chapter 21 Innovation in Instrumentation, Monitoring, and Condition Assessment of Infrastructure
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    Chapter 22 Theories of Risk Management and Multiple Hazards: Thoughts for Engineers from Regulatory Policy
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    Chapter 23 Disaster Risk Reduction Strategies in Earthquake-Prone Cities
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    Chapter 24 Community Resilience: The Role of the Built Environment
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    Chapter 25 Digital Technologies, Complex Systems, and Extreme Events: Measuring Change in Policy Networks
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Title
Multi-hazard Approaches to Civil Infrastructure Engineering
Published by
Springer International Publishing, January 2016
DOI 10.1007/978-3-319-29713-2
ISBNs
978-3-31-929711-8, 978-3-31-929713-2
Editors

Paolo Gardoni, James M. LaFave

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X Demographics

The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 143 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 143 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 44 31%
Student > Master 21 15%
Student > Doctoral Student 10 7%
Student > Bachelor 9 6%
Researcher 8 6%
Other 20 14%
Unknown 31 22%
Readers by discipline Count As %
Engineering 80 56%
Environmental Science 5 3%
Earth and Planetary Sciences 4 3%
Social Sciences 3 2%
Energy 2 1%
Other 15 10%
Unknown 34 24%