Security Risk Assessment In the Chemical and Process Industry 1st edition by Genserik Reniers, Nima Khakzad, Pieter van Gelder – Ebook PDF Instant Download/Delivery: 3110497762, 9783110497762
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Product details:
ISBN 10: 3110497762
ISBN 13: 9783110497762
Author: Genserik Reniers, Nima Khakzad, Pieter van Gelder
Security Risk Assessment In the Chemical and Process Industry 1st Table of contents:
1 Introduction
References
2 American legislation and regulatory measures: a lesson for Europe?
2.1 Introduction to critical infrastructure protection and public safety and security
2.2 US critical infrastructure protection actions
2.2.1 Energy security and assurance
2.2.2 Chemical facility anti-terrorism standards
2.2.3 Maritime Transportation and Security Act 2002
2.2.4 Transportation security of hazardous materials
2.3 The EU critical infrastructure protection directive
2.4 Some European national solutions
2.5 Conclusions
Acknowledgment
References
3 Security vulnerability analysis : protecting process plants from physical and cyber threats
3.1 Introduction
3.2 Nature of threats
3.2.1 Physical threats
3.2.2 Cyber threats
3.3 Threat events and threat scenarios
3.4 Overview of SVA
3.5 Types of SVA
3.5.1 Asset based SVA
3.5.2 Scenario based SVA
3.5.3 Sneak path SVA
3.5.4 Combined studies
3.6 Stages and steps in SVA
3.7 Updating and revalidating SVA studies
3.8 PHA and SVA
3.9 Beyond SVA
3.9.1 Risk matrices and risk scoring methods
3.9.2 Rings of protection analysis
3.9.3 Security risk analysis
References
4 Security risk assessment: Some techniques
4.1 Introduction and background
4.2 Classical security vulnerability assessment methodology
4.3 The security risk factor table (SRFT) model
4.4 Rings of protection approach (barriers)
4.5 Other works on security risk management
4.6 Conclusions and future work
Acknowledgment
References
5 A methodology for the evaluation of attractiveness with respect to external acts of interference dedicated to the chemical and process industry
5.1 Introduction
5.2 Methodology for attractiveness assessment in chemical facilities
5.2.1 Overview of the methodology
5.2.2 Hazard based attractiveness index
5.2.3 Estimation of nontechnical triggers: induction index
5.3 Case studies definition
5.4 Results
5.5 Discussion
5.6 Conclusions
References
6 Applying game theory for adversarial risk analysis in chemical plants
6.1 Introduction
6.2 General intrusion detection approach in a chemical plant
6.3 Security game
6.3.1 Game theory
6.3.2 Security game
6.4 Chemical plant protection game (CPP game)
6.4.1 Players of the CPP game
6.4.2 Strategy Sets of the CPP Game
6.4.3 Payoffs of the CPP Game
6.4.4 Discussion of the parameters
6.5 Solutions of the CPP game
6.5.1 Mixed strategy
6.5.2 Nash equilibrium
6.5.3 Strong Stackelberg equilibrium
6.5.4 Bayesian Stackelberg equilibrium
6.6 Discussion
6.7 Conclusion
References
7 Dynamic security assessment: benefits and limitations
7.1 Introduction
7.2 Security: integration and continuous evaluation
7.3 Advanced security assessment methods
7.4 Benefits and limitations
7.5 Conclusions
References
8 Security vulnerability assessment: A review of Bayesian network approaches
8.1 Introduction
8.2 Bayesian network and influence diagrams
8.2.1 Bayesian networks
8.2.2 Limited memory influence diagram
8.3 Application of Bayesian network to security assessment
8.3.1 Threat assessment
8.3.2 Vulnerability assessment
8.4 Future remarks
8.4.1 Precursor based security assessment
8.4.2 Chemical clusters
8.5 Conclusions
References
9 OR methods to enhance security in the chemical process industry
9.1 Introduction
9.2 General overview on OR methods
9.3 OR and security applications
9.4 Mitigation
9.4.1 Preparedness
9.4.2 Response
9.4.3 Recovery
9.5 Conclusions
References
10 Conclusions
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Tags: Security Risk, Assessment, the Chemical, Process Industry, Genserik Reniers, Nima Khakzad, Pieter van Gelder


