AP.III.A.R2a
Risk managementEffects of:
Crosswind
From the FAA library
- Chapter 2: Aeronautical Decision-Making › Mitigating Risk › The PAVE Checklist
that individual pilot’s current level of experience and proficiency. For example, the aircraft may have a maximum crosswind component of 15 knots listed in the aircraft flight manual (AFM), and the pilot has experience with 10 knots of direct ... crosswind. It could be unsafe to exceed a 10 knot crosswind component without additional training. Therefore, the 10 knot crosswind experience level is that pilot’s personal limitation until additional training with a certificated flight instructor (CFI) provides the pilot…
- Chapter 11: Aircraft Performance › Performance Charts › Sample Problem 10
Crosswind and Headwind Component Chart Every aircraft is tested according to Federal Aviation Administration (FAA) regulations prior to certification. The aircraft is tested by a pilot with average piloting skills in 90° crosswinds with a velocity ... stalling speed of the aircraft is 45 knots, it must be capable of landing in a 9-knot, 90° crosswind. The maximum demonstrated crosswind component is published in the AFM/POH. The crosswind and headwind component chart allows for figuring…
- Pilot/Controller Glossary › T
extension of departure and is used when issuing control instructions for separation, spacing or sequencing. b. Crosswind Leg- A flight path at right angles to the landing runway off its upwind end. c. Downwind Leg- A flight path parallel ... landing runway in the direction opposite to landing. The downwind leg normally extends between the crosswind leg and the base leg. d. Base Leg- A flight path at right angles to the landing runway off its approach end. The base…
- Pilot/Controller Glossary › C
wind conditions, the word means a wind not parallel to the runway or the path of an aircraft. (See CROSSWIND COMPONENT.) CROSSWIND COMPONENT- The wind component measured in knots at 90 degrees to the longitudinal axis of the runway. CRUISE…
- Chapter 4. Air Traffic Control › Section 3. Airport Operations › 4-3-3. Traffic Patterns
airplanes in varying degrees. Figure 4-3-4 is an example of a chart used to determine the headwind, crosswind, and tailwind components based on wind direction and velocity relative to the runway. Pilots should refer to similar information provided ... Continue straight ahead until beyond departure end of runway. 5. If remaining in the traffic pattern, commence turn to crosswind leg beyond the departure end of the runway within 300 feet of pattern altitude…
- Chapter 6. Emergency Procedures › Section 3. Distress and Urgency Procedures › 6-3-3. Ditching Procedures
horizon attitude by rapid and positive use of the controls. f. After Touchdown. In most cases drift, caused by crosswind can be ignored; the forces acting on the aircraft after touchdown are of such magnitude that drift will be only ... touchdown. This is more important with high wing aircraft, for they are laterally unstable on the water in a crosswind and may roll to the side in ditching…