Water and Wastewater Engineering. Water Supply Systems Security | by Larry W. Mays (ed) | 2004 | ISBN: 9780071425315. DRINKING WATER SECURITY AND SAFETY. WATER SYSTEM EMERGENCY RESPONSE PLAN. SECURITY HARDWARE AND SURVEILLANCE SYSTEMS FOR WATER SUPPLY SYSTEMS
Water Supply Systems Security
by Larry W. Mays (ed)
2004 (464 pages)
ISBN:9780071425315
Presenting detailed coverage of the major infrastructure issues in water system security, this book provides professional guidance on designing, operating, maintaining, and rehabilitating water systems to ensure state-of-the-art security.
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Water Supply Systems Security
Preface
Acknowledgments
Chapter 1 – WATER SUPPLY SECURITY: AN INTRODUCTION
1.1: HISTORY
1.2: THE WATER SUPPLY SYSTEM:A BRIEF DESCRIPTION
1.3: WHY WATER SUPPLY SYSTEMS?
1.4: THE THREATS
1.5: PRIOR TO SEPTEMBER 11, 2001
1.6: RESPONSE TO SEPTEMBER 11, 2001
REFERENCES
Chapter 2 – MICROBIOLOGICAL CONTAMINANTS AND THREATS OF CONCERN
2.1: INTRODUCTION
2.2: ETIOLOGICAL GROUPS
REFERENCES
Chapter 3 – VULNERABILITY ASSESSMENT, EMERGENCY RESPONSE PLANNING: SUMMARY OF WHAT’S AVAILABLE
3.1: INTRODUCTION
3.2: VULNERABILITY ASSESSMENT
3.3: EMERGENCY RESPONSE PLANNING:RESPONSE, RECOVERY, AND REMEDIATION GUIDANCE
3.4: INFORMATION SHARING(www.waterisac.org)
Appendix 3a: WHAT ARE SOME POINTS TO CONSIDER IN A VULNERABILITY ASSESSMENT?
Appendix 3b: SECURITY VULNERABILITY SELF-ASSESSMENT FOR SMALL WATER SYSTEMS
Appendix 3c: WATER UTILITY RESPONSE,RECOVERY, AND REMEDIATION GUIDELINES
Appendix 3d: WATER SYSTEM EMERGENCY RESPONSE PLAN OUTLINE
REFERENCES
Chapter 4 – DRINKING WATER DISTRIBUTION SYSTEMS: AN OVERVIEW
Overview
4.1: INTRODUCTION
4.2: MODELING CONTAMINANT TRANSPORT
4.3: SIMULATION OF RESIDENTIAL WATER DEMANDS
4.4: CONDUCTING A TRACER STUDY
4.5: SUMMARY AND CONCLUSIONS
REFERENCES
Chapter 5 – CYBER THREATS AND IT/SCADA SYSTEM VULNERABILITY
Overview
5.1: INTRODUCTION
5.2: OVERVIEW OF UTILITY’S COMPUTERSYSTEM INFRASTRUCTURE
5.3: ONGOING SCADA ENCRYPTION INITIATIVESAND STANDARDS DEVELOPMENT
5.4: TOP 10 VULNERABILITIES OBSERVED IN THE COMPUTER SYSTEM INFRASTRUCTURE
5.5: VULNERABILITY ASSESSMENT APPROACH AND PLANNING TOOLS
5.6: TYPICAL ATTACK SCENARIOS
5.7: POPULAR TOOLS USED BY CYBER ATTACKERS
5.8: IDENTIFYING METHODS FOR MITIGATING SUCH ATTACKS
5.9: INCIDENT RESPONSE AND BUSINESS CONTINUITY
5.10: SUMMARY AND COMPILATION OF USEFUL INFORMATION LINKS
ACKNOWLEDGMENTS
REFERENCES
Chapter 6 – ASSESSING THE RISKS TO DRINKING-WATER SUPPLIES FROM TERRORISTS AT TACKS
6.1: INTRODUCTION
6.2: CHEMICAL AND BIOLOGICAL AGENTS
6.3: SOURCE-WATER PROTECTION
6.4: EFFICIENT HYDRO LOGIC TRACER-TEST DESIGN
6.5: PREDICTING THE OUTCOMES OF A TOXIC RELEASE
6.6: EXPERIMENTAL EXAMPLE
6.7: CONCLUSIONS
APPENDIX: DEFINITIONS FOR THE AUXILIARY FUNCTIONS
NOTATION
ACKNOWLEDGMENTS
REFERENCES
Chapter 7 – METHODOLOGIES FOR RELIABILITY ANALYSIS
7.1: INTRODUCTION
7.2: GENERAL VIEW OF SYSTEM RELIABILITY COMPUTATION
7.3: RELIABILITY ASSESSMENT METHODS
REFERENCES
Chapter 8 – DEVELOPING AN EARLY WARNING SYSTEM FOR DRINKING WATER SECURITY AND SAFETY
Overview
8.1: INTRODUCTION
8.2: NATURE OF THE THREAT
8.3: THE EARLY WARNING SYSTEM CONCEPT
8.4: THE CONSORTIUM WATER SYSTEMS
8.5: DEVELOPING AN EARLY WARNING DECISION SUPPORT SYSTEM
8.6: SENSOR RESEARCH AND DEVELOPMENT
8.7: EWS AND PUBLIC HEALTH SURVEILLANCE
8.8: SUMMARY AND CONCLUSIONS
ACKNOWLEDGMENTS
REFERENCES
Chapter 9 – RESPONDING TO A CONTAMINATION THREAT IN A DRINKING WATER NET WORK: THE POTENTIAL FOR MODELING AND MONITORING
9.1: INTRODUCTION
9.2: NETWORK CONTAMINATION THREATS
9.3: DEVELOPMENT OF MONITORING SYSTEMS
9.4: CASE STUDIES
9.5: CURRENT TRENDS IN WATER QUALITY MODELING
9.6: SUMMARY AND CONCLUSIONS
REFERENCES
Chapter 10 – RECONSTRUCTING HISTORICAL CONTAMINATION EVENTS
Overview
10.1: HISTORICAL CONTAMINATION EVENTS
10.2: GIDEON, MISSOURI
10.3: WALKERTON, ONTARIO WATERBORN EOUTBREAK
10.4: DOVER TOWNSHIP (TOMS RIVER),NEW JERSEY
10.5: REDLANDS, CALIFORNIA
10.6: SUMMARY
REFERENCES
Chapter 11 – SOURCE WATER EARLY WARNING SYSTEMS
Overview
11.1: INTRODUCTION: AN OVERVIEW OF EARLY WARNING SYSTEMS
11.2: FRAMEWORK FOR ASSESSING EARLY WARNING SYSTEMS
11.3: EARLY WARNING MONITORING METHODS
11.4: SURFACE WATER MODELS IN EARLY WARNING SYSTEMS
11.5: EARLY WARNING SYSTEMS: CASE STUDIES
11.6: RISK-BASED ANALYSIS OF EARLY WARNINGS YSTEMS
11.7: EARLY WARNING SYSTEM DESIGN AND OPERATION
ACKNOWLEDGMENTS
REFERENCES
Chapter 12 – SECURITY HARDWARE AND SURVEILLANCE SYSTEMS FOR WATER SUPPLY SYSTEMS
Overview
12.1: INTRUSION DETECTION: PERIMETER,AREA, AND INTERIOR
12.2: CLOSED CIRCUIT TELEVISION (CCTV):DETECTION, ASSESSMENT, CONTROL,AND ARCHIVE
12.3: ACCESS CONTROL: PERIMETER AREA AND INTERIOR CONTROLLED ACCESS
12.4: MONITOR/CONTROL SYSTEMS: AREA DETECTION, VIDEO SURVEILLANCE,AUTHORIZED A/C
12.5: SPECIAL APPLICATION: SECURITY SYSTEM COMPONENTS
12.6: DESIGN AND IMPLEMENTATION: GENERAL DESIGN AND IMPLEMENTATION CONSIDERATIONS
Chapter 13 – OPTIMAL LOCATION OF ISOLATION VALVES: A RELIABILITY APPROACH
13.1: INTRODUCTION
13.2: DEMAND-DRIVEN ANALYSISVS. PRESSURE-DRIVEN ANALYSIS
13.3: SEMI-PRESSURE-DRIVEN ANALYSIS
13.4: EFFECT OF VALVING ON SYSTEMRELIABILITY
REFERENCES
Chapter 14 – REMOTE MONITORING AND NETWORK MODELS: THEIR POTENTIAL FOR PROTECTING U.S. WATER SUPPLIES
Overview
14.1: INTRODUCTION
14.2: REMOTE MONITORING AND CONTROL TECHNOLOGY
14.3: EARLY WARNING SYSTEMS
14.4: REMOTE MONITORING AND NETWORKMODELING
14.5: SUMMARY AND CONCLUSIONS
ACKNOWLEDGMENTS
REFERENCES
Chapter 15 – HYDRAULIC AND WATER QUALITY MODELING FOR CONTAMINATION RESPONSE
15.1: OPERATIONAL NEEDS FOR RESPONDING TO CONTAMINATION EVENTS
15.2: ROLE OF HYDRAULIC AND WATER QUALITY MODELS
15.3: CONVENTIONAL MODELING
15.4: DEFINITIONS
15.5: THE CONNECTIVITY MATRIX
15.6: ENUMERATION OF OPERATING MODES
15.7: DELINEATION OF MAXIMUM SPREADPOTENTIAL
REFERENCES
Chapter 16 – OPTIMAL MONITORING STATIONS ALLOCATIONS FOR WATER DISTRIBUTION SYSTEMS SECURITY
16.1: INTRODUCTION
16.2: SCIENTIFIC BACKGROUND
16.3: optiMQ
16.4: CONCLUDING REMARKS
ACKNOWLEDGMENTS
NOTATION
REFERENCES
Chapter 17 – CONTINGENCY PLANNING FOR EMERGENCY WATER SUPPLY IN NON-CONVENTIONAL TIMES
17.1: INTRODUCTION
17.2: THE BIRTH OF THE ATOMIC AGE AND WORLD WAR II—HIROSHIMA AND NAGASAKI
17.3: THREE MILE ISLAND AND CHERNOBYL
17.4: RECENT TRENDS AND FUTURE RISKS
17.5: POSSIBLE CONTAMINATION OF WATER RESOURCES IN NUCLEAR CONTINGENCIES
17.6: CONTINGENCY PLANNING FOR WATER SUPPLY SYSTEMS IN NON CONVENTIONAL TIMES
17.7: CONCLUSIONS
REFERENCES
Chapter 18 – DEVELOPMENT OF THE NEXT GENERATION MICROBIOLOGICAL AND CHEMICAL DETECTION CAPABILITIES FOR WATER SUPPLIES
Overview
18.1: INTRODUCTION
18.2: MICROBIOLOGICAL DETECTION CAPABILITIES
18.3: CONCLUDING REMARKS FOR MICROBIOLOGICAL SYSTEMS OF THE FUTURE
18.4: CHEMICAL DETECTION SYSTEMS OF THE FUTURE
REFERENCES
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