The Air Force Operational Risk Management Program And Aviation Safety


The Air Force Operational Risk Management Program And Aviation Safety
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The Air Force Operational Risk Management Program And Aviation Safety


The Air Force Operational Risk Management Program And Aviation Safety
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Author : Matthew G. Cho
language : en
Publisher:
Release Date : 2003-04

The Air Force Operational Risk Management Program And Aviation Safety written by Matthew G. Cho and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2003-04 with Aircraft accidents categories.


Aviation mishaps are extremely costly in terms of dollar value, public opinion, and human life, The Air Force drastically reduced Class A mishap rates in its formative years. The rate plummeted from 44.22 mishaps per 100,000 flight hours in 1947 to 2.33 mishaps in 1983 and has held steady around 1.5 mishaps since. The Air Force implemented the Operational Risk Management (ORM) program in 1996 in an effort to protect their most valuable resources: aircraft and aviators. An AFIT thesis conducted in 1999 by Capt Park Ashley studied the Army similar Risk Management (RM) program. Ashley concluded that since his analysis found that RM did not affect the Army's mishap rates, the AF should not expect to see its rates decline due to ORM implementation.



Operational Risk Management And Military Aviation Safety


Operational Risk Management And Military Aviation Safety
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Author : Park D. Ashley
language : en
Publisher:
Release Date : 1999-09-01

Operational Risk Management And Military Aviation Safety written by Park D. Ashley and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1999-09-01 with Aeronautics, Military categories.


The Air Force Class A aviation mishap rate has hovered around 1.5 mishaps per 100,000 flight hours since 1985. Recent attention on Air Force accidents has caused the leadership to seek to reduce its mishap rate. The Army's Class A aviation mishap rate declined after it implemented risk management (RM) principles in 1987. This reduction caught the attention of Air Force leadership who have since stated that the application of operational risk management (ORM) is how the Air Force will reduce, even eliminate, mishaps. With current budget constraints, ORM is considered to be the most cost-effective way the Air Force can reduce its mishap rate. The purpose of this research was to determine whether the Air Force can expect its mishap rate to significantly decline due to ORM implementation. This determination is based on the relationship between the Army's implementation of RM and its aviation mishap rate. The analysis of the Army's aviation mishap rates and available causal data was performed primarily using discontinuous piecewise linear regression. Results showed that the effect of RM was not reflected in the Army's mishap rates. As a result, the Air Force should not expect its mishap rate to significantly decline due to ORM implementation.



Air Show Performers


Air Show Performers
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Author : Manolis Karachalios
language : en
Publisher: CRC Press
Release Date : 2023-12-07

Air Show Performers written by Manolis Karachalios and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2023-12-07 with Technology & Engineering categories.


Air shows are high-risk activities that must be conducted with careful thought towards the general public, spectators, and flying and nonflying participants to ensure that the activity is as safe as reasonably possible. The impromptu, ad hoc, unrehearsed or unplanned must never be attempted. This book offers a holistic overview of the state of safety, including safety cultural variables, safety risk parameters, and human performance factors, in the international air show community. This book aims to close the knowledge gap on safety management in air shows. It imparts to the aviation sector and other high-risk and high-performance industries the experience and knowledge that airshow performers have gained regarding risk assessment, psychological aspects, and mindfulness techniques used for safe and effective performances. The book highlights how resilient safety culture can change the air show community's mentality to deliver safer and more spectacular air show events and promotes the culture of excellence that the air show community is wedded to. The reader will obtain a thorough understanding of safety issues in air shows. Air Show Performers: Safety, Risk Management, and Psychological Factors is a critical read for professionals within the international air show community including nonflying participants. Its appeal extends to practitioners in aviation, health and safety and events management. “[...] For sure, this book will become a reference and a source of inspiration for future generations of Display Pilots.” Jacques Bothelin, French Aerobatic Jet Team Leader, Honorary Board Member European Airshow Council Manolis Karachalios was the Hellenic Air Force’s F-16 Demo Team “ZEUS” Display Pilot for the 2010–2012 display seasons. Dr. Karachalios holds a Master of Business Administration (MBA) in Aviation Management from Coventry University, and a Doctor of Philosophy (PhD) in Aerospace Sciences from the University of North Dakota focusing on air show safety and development. Daniel Kwasi Adjekum has over 25 years of experience in aviation as a former Ghana Air Force squadron commander, command pilot, and air display safety director. He was also an airline pilot and is currently an aviation safety consultant and professor of aviation. He is an Internationally recognized aviation safety subject-matter expert and an International Air Transport Association (IATA) certified Safety Management Systems (SMS) implementation and control expert.



U S Air Force Mishap Prevention Program Air Force Instruction Afi 91 202 Main Usaf Document And Air National Guard Supplement About Aviation Nuclear And Space Safety


U S Air Force Mishap Prevention Program Air Force Instruction Afi 91 202 Main Usaf Document And Air National Guard Supplement About Aviation Nuclear And Space Safety
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Author : U. S. Military
language : en
Publisher:
Release Date : 2017-09-18

U S Air Force Mishap Prevention Program Air Force Instruction Afi 91 202 Main Usaf Document And Air National Guard Supplement About Aviation Nuclear And Space Safety written by U. S. Military and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-09-18 with categories.


Two critical mishap program documents, one for the USAF and one for the Air National Guard, are reproduced here. This instruction implements Air Force Policy Directive (AFPD) 91-2, Safety Programs. It establishes mishap prevention program requirements, assigns responsibilities for program elements and contains program management information. Purpose - Minimize loss of Air Force resources and protect Air Force people from death, injuries or illnesses by managing risks on- and off-duty. This program applies to all operations except where otherwise prescribed or specified in Status-of-Forces Agreements. Mishap Prevention Program - Commanders at all levels are responsible for developing and implementing a mishap prevention program. Safety staffs at all levels assist commanders with the implementation and integration of risk management into all on-duty operations and missions, and off-duty activities. Chapter 1 * PROGRAM OVERVIEW * Purpose * Mishap Prevention Program * Mishap Prevention Program Disciplines (Aviation, Ground, etc. * Applying Standards * Program Responsibilities * General Guidance Related to Recording Occupational Injuries and Illnesses * Chapter 2 * SAFETY ORGANIZATION * Safety Staff * Unit Safety Representative (USR) * Safety Education/Training * Safety Office Vehicles and Equipment * Library * Councils and Committees * Non-USAF Councils and Committees * Major Range and Test Facility Base (MRTFB) Safety Programs * Range Safety Programs * Chapter 3 * SAFETY EVALUATIONS, INSPECTIONS, STAFF ASSISTANCE VISITS AND OTHER INSPECTIONS * Chapter 4 * HAZARD IDENTIFICATION AND REPORTING * Hazard Identification * Reporting Criteria * Hazard Reporting Procedures * Additional Reporting Procedures * Employee Appeal Procedures * Risk Reduction and Mitigation * Chapter 5 * INFORMATION AND DATA ANALYSIS * Information Protection * Safety Information * Recurring Publications * Methods of Information Distribution * Mishap Analysis Program * Mishap Prevention Analysis Methods * Use of Analyzed Data * Safety Analysis Team (SAT) Process * Air Force Culture Assessment Safety Tool (AFCAST) * Organizational Safety Assessment (OSA) * Standard Mishap Metrics * Calculating Federal Employee Compensation Metric (Rate) * Chapter 6 * DEPLOYMENT AND CONTINGENCY SAFETY * Deployment and Contingency Safety Program * AFFOR/SE * AFFOR Deployed Unit Safety Functions and Organizations * Mishap Prevention Program * Monthly, Quarterly and Annual Safety Awards * AFFOR/SE Visits * AFFOR Hazard Review Board (HRB) * Theater Safety Engagement Program * Chapter 7 * AVIATION SAFETY * Program Management * Plans * Programs * Aero Club Operations * Training Meetings and Briefings * Inspections/Assessments and Monitoring * Airfield Maintenance, Construction and Waivers * Chapter 8 * GROUND SAFETY * Oversight Requirements * Host Ground Safety Staff Responsibilities * Tenant Unit and GSU Responsibilities * Ground Unit Safety Representative (USR) Responsibilities * Hazard Identification and Abatement * Air Force Occupational Safety and Health (AFOSH) Guidance * Department of Labor (DoL) Inspection * DoL Occupational Safety and Health Administration (OSHA) Visit Summary * Chapter 9 * WEAPONS SAFETY * Program Management * Weapons Safety Personnel Management and Manning Plan * Explosives Safety Standards * Weapons Safety Personnel * Weapons Safety Program Requirements * Missile Safety * Nuclear Surety * Directed Energy Weapons (DEW) * Munitions Rapid Response Team * Department of Defense Explosives Safety Board (DDESB) * Weapons Safety Training * Weapons Safety Committees * Chapter 10- SPACE SAFETY * Program Management * Program Overview * Space Control Systems * Design, Development, Integration and Testing * Launch, Range and Reentry Safety * Orbital Safety * Space Safety Council (SSC) * Space Safety Training * Space Nuclear Safety * Space Asset Interaction with Directed Energy Systems * Chapter 11 * SYSTEM SAFETY * Overview * Responsibilities * System Safety



21st Century U S Military Documents


21st Century U S Military Documents
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Author : Department of Defense
language : en
Publisher:
Release Date : 2017-08-24

21st Century U S Military Documents written by Department of Defense and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-08-24 with categories.


Three Air Force documents provide unique information about USAF operations of this aircraft.Contents: C-21 Operations Procedures - C-21 Aircrew Evaluation Criteria - C-21 Aircrew TrainingChapter 1 * GENERAL INFORMATION * 1.1. General * 1.2. Applicability * 1.3. Key Words Explained * 1.4. Deviations and Waivers * 1.5. Supplemental Procedures * 1.6. Local Supplement Coordination Process * 1.7. Improvement Recommendations and Review * 1.8. Definitions * 1.9. Aircrew Operational Reports * Chapter 2 * COMMAND AND CONTROL * 2.1. General * 2.2. Execution Authority * 2.3. Pilot in Command Responsibility and Authority * 2.4. Mission Clearance Decision * 2.5. Operational C2 Reporting * 2.6. Mission Commander (MC) * 2.7. Not Used * 2.8. C2 Agency Telephone Numbers * 2.9. Close Watch Missions * 2.10. Law Enforcement Support * Chapter 3--AIRCREW COMPLEMENT/MANAGEMENT * 3.1. General * 3.2. Aircrew Complement * 3.3. Aircrew Member Qualification * 3.4. Pilots * 3.5. Not used * 3.6. Not used * 3.7. Aircrew Management * 3.8. Scheduling Restrictions * 3.9. Fatigue Countermeasures Management Program * 3.10. Crew Rest/En route Ground Time * 3.11. Alerting Procedures * 3.12. Stage Management * 3.13. Standby Force Duty * 3.14. Orientation Flights and Incentive Flights * 3.15. Interfly * 3.16. Mission Essential Personnel (MEP) * 3.17. Mission Mobility Observers (MMO) * Chapter 4 * AIRCRAFT OPERATING RESTRICTIONS * 4.1. Objective * 4.2. MEL Policy * 4.3. Waiver Protocol * 4.4. Technical Assistance * 4.5. MEL Table Definitions/Column Identifiers * 4.6. Not used * 4.7. Supplements * 4.8. Not used * 4.9. Gear Down Flight Operations * Chapter 5 * OPERATIONAL PROCEDURES * 5.1. Checklists * 5.2. Duty Station * 5.3. Flight Station Entry * 5.4. Takeoff and Landing Policy * 5.5. Landing Gear and Flap Operating Policy * 5.6. Outside Observer/Jump Seat Duties * 5.7. Seat Belts * 5.8. Aircraft Lighting * 5.9. Portable Electronic Devices * 5.10. Tobacco Use on Air Force Aircraft * 5.11. Advisory Calls * 5.12. Stabilized Approach * 5.13. Communications Policy * 5.14. Crew Resource Management (CRM) * 5.15. Use of Automation * 5.16. Transportation of Pets * 5.17. Alcoholic Beverages * 5.18. Runway, Taxiway, and Airfield Requirements * 5.19. Aircraft Taxi and Taxi Obstruction Clearance Criteria and Foreign Object Damage (FOD) Avoidance * 5.20. Fuel Jettison Procedures * 5.21. Aircraft Speed * 5.22. Bird/Wildlife Aircraft Strike Hazard (BASH) Programs * 5.23. Functional Check Flights (FCFs) and Acceptance Check Flights (ACFs) * 5.24. Participation in Aerial Events * 5.25. Traffic Alert and Collision System (TCAS) * 5.26. Radio Altimeter * 5.27. Not used * 5.28. Not used * 5.29. Aircraft Recovery from Unprepared Surfaces * 5.30. Mode S * 5.31. Engine Running Offload and Onload (ERO) Procedures * 5.32. Takeoff and Landing Data (TOLD) * 5.33. Mobility Aircrew Fall Protection * 5.34. Aviation Safety Action Program (ASAP) * Chapter 6 * AIRCREW PROCEDURES * Section 6A--Pre-Mission * 6.1. Aircrew Uniform * 6.2. Personal Requirements * 6.3. Pre-Mission Actions * 6.4. Aircrew Publications Requirements * 6.5. Airfield Review * 6.6. Aircrew Intelligence Briefing * Section 6B--Predeparture * 6.7. Global Decision Scheduling System 2 (GDSS2) Account * 6.8. Flight Crew Information File (FCIF) * 6.9. Flight Crew Bulletins (FCB) * 6.10. Mission Kits * 6.11. Route Navigation Kits * 6.12. Briefing Requirements * 6.13. Call Signs * 6.14. Instrument Flight Rules * 6.15. Flight Plan/Data Verification * 6.16. Departure Planning * 6.17. Weather Minimums for Takeoff use Table 6 * 6.18. Alternate Planning * 6.19. Departure Alternates * 6.20. Destination Requirements (for filing purposes) * 6.21. Adverse Weather * 6.22. Operational Risk Management (ORM) * Section 6C--Preflight * 6.23. Hazard Identification and Mitigation * 6.24. AFTO Forms 781 Series * 6.25. Aircraft Servicing and Ground Operations * 6.26. Aircraft Recovery Away from Main Operating Base (MOB) * 6.27. Aircrew Flight Equipmen



Flying Safety


Flying Safety
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Author :
language : en
Publisher:
Release Date : 1992

Flying Safety written by and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1992 with Aeronautics categories.




Safety Management Systems In Aviation


Safety Management Systems In Aviation
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Author : Professor Alan J Stolzer
language : en
Publisher: Ashgate Publishing, Ltd.
Release Date : 2015-08-28

Safety Management Systems In Aviation written by Professor Alan J Stolzer and has been published by Ashgate Publishing, Ltd. this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-08-28 with Transportation categories.


While some countries have been engaged in Safety Management System (SMS) programs for a few years, it is still non-existent in many other countries. In this second edition of Safety Management Systems in Aviation, the authors have extensively updated relevant sections to reflect developments since the original book of 2008. New sections include: a brief history of FAA initiatives to establish SMS, data-driven safety studies, developing a system description, SMS in a flight school, and measuring SMS effectiveness.



Air Force System Safety Handbook Costs Objectives Policy And Process Risk Assessment Flight Mishaps Analysis Techniques Contractors Nuclear And Explosive Hazards Biomedical Safety


Air Force System Safety Handbook Costs Objectives Policy And Process Risk Assessment Flight Mishaps Analysis Techniques Contractors Nuclear And Explosive Hazards Biomedical Safety
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Author : U. S. Military
language : en
Publisher:
Release Date : 2017-04-25

Air Force System Safety Handbook Costs Objectives Policy And Process Risk Assessment Flight Mishaps Analysis Techniques Contractors Nuclear And Explosive Hazards Biomedical Safety written by U. S. Military and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-04-25 with categories.


The Air Force System Safety Handbook was prepared as a resource document for program office system safety managers and system safety engineers. It is not designed to answer every question on the topic of system safety nor is it a cookbook that guarantees success. The handbook provides considerable insight to the general principles, objectives, and requirements of applying system safety concepts to the Air Force system acquisition and logistical support processes. Programs vary greatly in their scope and complexity, requiring a tailored system safety effort. Assigned to this difficult task are military and government personnel with varied education and experience backgrounds. These system safety practitioners need a comprehensive understanding of the system safety process and the complexities of applying it to a given program. This handbook will assist in providing much of the necessary information but additional, more detailed guidance will be required from the program office and their higher headquarters system safety experts. The ultimate objective of any organization within the Air Force is maximizing combat capability. One element in this maximizing process is protecting and conserving combat weapon systems and their support equipment. Preventing mishaps and reducing system losses is one important aspect of conserving these resources. System safety contributes to mishap prevention by minimizing system risks due to hazards consistent with other cost, schedule, and design requirements. The fundamental objective of system safety is to identify, eliminate or control, and document system hazards. 1.0 Introduction To System Safety * 2.0 System Safety Policy And Process * 3.0 Risk Assessment * 4.0 System Safety Program * 5.0 System Safety Program Plan (Sspp) * 6.0 Other Management Tasks (Ref 30) * 7.0 Design And Integration Tasks * 8.0 Design Evaluation, Compliance, And Verification * 9.0 Analysis Techniques * 10.0 System Safety Life-Cycle Activities * 11.0 Program Office System Safety * 12.0 Contracting For System Safety * 13.0 Evaluating Contractor System Safety * 14.0 Facilities System Safety * 15.0 Supplementary Requirements * 16.0 Nuclear Safety * 17.0 Explosives Safety * 18.0 System Safety In Logistics * 20.0 Test And Evaluation Safety



Human Performance Enhancement In High Risk Environments


Human Performance Enhancement In High Risk Environments
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Author : Paul E. O'Connor
language : en
Publisher: Bloomsbury Publishing USA
Release Date : 2009-12-22

Human Performance Enhancement In High Risk Environments written by Paul E. O'Connor and has been published by Bloomsbury Publishing USA this book supported file pdf, txt, epub, kindle and other format this book has been release on 2009-12-22 with Psychology categories.


This book presents a collection of works written by military researchers on the human performance research being carried out in the military. Human Performance Enhancement in High-Risk Environments: Insights, Developments, and Future Directions from Military Research takes the breakthrough work being done by the military on human performance issues and presents it in a way that is applicable to a wider audience of high-risk professions and industries, including police forces, fire fighters, the security industry, military contracting, and more. Human Performance Enhancement in High-Risk Environments focuses on selection, training, safety, and interface design—essential steps in the process of putting the right people in the right positions with the right equipment to handle dangerous work. The book's 16 chapters are each written by military experts, emphasizing lessons learned from their own experiences and research, while highlighting the relevance of their findings to other domains in which highly trained personnel operate complex machinery with high consequences of error.



In Time Aviation Safety Management


In Time Aviation Safety Management
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Author : National Academies of Sciences, Engineering, and Medicine
language : en
Publisher: National Academies Press
Release Date : 2018-04-12

In Time Aviation Safety Management written by National Academies of Sciences, Engineering, and Medicine and has been published by National Academies Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-04-12 with Technology & Engineering categories.


Decades of continuous efforts to address known hazards in the national airspace system (NAS) and to respond to issues illuminated by analysis of incidents and accidents have made commercial airlines the safest mode of transportation. The task of maintaining a high level of safety for commercial airlines is complicated by the dynamic nature of the NAS. The number of flights by commercial transports is increasing; air traffic control systems and procedures are being modernized to increase the capacity and efficiency of the NAS; increasingly autonomous systems are being developed for aircraft and ground systems, and small aircraftâ€"most notably unmanned aircraft systemsâ€"are becoming much more prevalent. As the NAS evolves to accommodate these changes, aviation safety programs will also need to evolve to ensure that changes to the NAS do not inadvertently introduce new risks. Real-time system-wide safety assurance (RSSA) is one of six focus areas for the National Aeronautics and Space Administration (NASA) aeronautics program. NASA envisions that an RSSA system would provide a continuum of information, analysis, and assessment that supports awareness and action to mitigate risks to safety. Maintaining the safety of the NAS as it evolves will require a wide range of safety systems and practices, some of which are already in place and many of which need to be developed. This report identifies challenges to establishing an RSSA system and the high-priority research that should be implemented by NASA and other interested parties in government, industry, and academia to expedite development of such a system.