
Critical Energy Infrastructure Protection
Description
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This book presents edited contributions from the NATO Advanced Training Course (ATC) entitled 'Critical Energy Infrastructure Protection: Innovative Structures and Materials for Blast and Ballistic Protection', held as a virtual event from 22 - 25 March 2021. The principal aim of the course was to gather specialists from NATO member and partner countries interested in protecting their critical infrastructure against terrorist attacks, and to share research and practical experience in this field. The meeting provided a forum for participants and speakers to disseminate their recent work, and also served to promote the exchange of ideas and international cooperation among scientists and engineers. The focus was on the physical protection of critical infrastructure in the face of certain types of intentional threat or accident, such as explosions, impacts and blast waves, and the experts shared their experience on topics including the mitigation of risks, classification of vulnerabilities, improvement of resilience, advanced protective materials, dynamic testing of materials and structures, simulations, and numerical prediction methods.
The book will be of interest to all those whose work involves protecting critical infrastructure from the threat of terrorist attacks.
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Content
- Intro
- Title Page
- Foreword
- Preface
- NATO Advanced Training Course Photos
- Contents
- Introduction to Critical Energy Infrastructure Protection: Risks and Vulnerabilities
- Industrial Risks and Domino Effects: Resilience, Risks and Optimal Layouts
- Critical Infrastructure: Design and Behavior of Materials Under Impact and Explosion Loads
- An Overview of Theoretical and Experimental Techniques for Material Behavior Characterization in Shock Physics
- Blast Mitigation Using Crushable Core Systems
- Round-Robin Exercise for Compression Testing of Steel Alloy of Pressure Tank at High Strain Rate
- On the Behavior of Composite Structures at High Strain Rates
- Advanced Multi-Layered Protective Systems for Defeating High Energy Projectiles
- New Technique to Protect RC Slabs Against Explosions Using CFRP as Externally Bonded Reinforcement
- Subject Index
- Author Index
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File format: PDF
Copy protection: Watermark-DRM (Digital Rights Management)
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