IL.XIV.B.R9
Risk managementEnergy management.
From the FAA library
- Chapter 5: Aerodynamics of Flight › Angle of Attack Indicators
proximity to the critical AOA. [Figure 5-42] These devices can give a visual representation of the energy management state of the airplane. The energy state of an airplane is the balance between airspeed, altitude, drag, and thrust and represents…
- Chapter 8: Flight Instruments › Angle of Attack Indicators
proximity to the critical AOA. [Figure 8-31] These devices can give a visual representation of the energy management state of the airplane. The energy state of an airplane is the balance between airspeed, altitude, drag, and thrust and represents…
- Glossary › Domestic Reduced Vertical Separation Minimum
approaches. Flight strips. Paper strips containing instrument flight information, used by ATC when processing flight plans. FMS. See flight management system. FOD. See foreign object damage. Fog. Cloud consisting of numerous minute water droplets and based at the surface; droplets ... based at the surface, and is distinguished from haze by its wetness and gray color.) Force (F). The energy applied to an object that attempts to cause the object to change its direction, speed, or motion. In aerodynamics…
- Chapter 1: Risk Management and Single-Pilot Resource Management › Single-Pilot Resource Management (SRM) › SRM and the 5P Check
pilot. Additionally, fatigue and low-altitude hypoxia serve to rob the pilot of much of his or her energy by the end of a long and tiring flight day. This leads to a transition from a decision-making mode ... execute approaches with the expectation that they will land out of the approach every time. When using a risk management thought process, the pilot realizes that changing conditions (the 5 Ps again) may cause the pilot to divert or execute…
- Chapter 7: Aircraft Systems
energy necessary to accomplish work. Driven by a revitalization of the general aviation (GA) industry and advances in both material and engine design, reciprocating engine technology has improved dramatically over the past two decades. The integration of computerized engine management…
- Chapter 7: Aircraft Systems › Reciprocating Engines
integration of computerized engine management systems has improved fuel efficiency, decreased emissions, and reduced pilot workload. Reciprocating engines operate on the basic principle of converting chemical energy (fuel) into mechanical energy. This conversion occurs within the cylinders of the engine…