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SH.IV.B.R6

Risk management

Main rotor(s), tail rotor, and tail strike hazards, as applicable.

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From the FAA library

  • Chapter 11: Helicopter Emergencies and Hazards › Autorotation › Technique (How to Practice)

    When the collective is raised, the opposite antitorque pedal used in powered…

  • Chapter 3: Identifying Hazards & Associated Risks › Using the PAVE Checklist to Identify Hazards › Pilot Hazards

    Using the PAVE Checklist to Identify Hazards As described in Chapter 1, the PAVE checklist provides a means to identify hazards using four convenient hazard “buckets.” Using all four checklist categories before a flight captures most hazards normally encountered. This ... section discusses hazards associated with each category. Pilot Hazards “P” hazards can be classified in terms of both capability and aeromedical factors as follows: 1. Qualification–Does the pilot possess the appropriate pilot certificate, category, class, and type rating needed…

  • Chapter 2: Aerodynamics of Flight › Hovering Flight › Translating Tendency (Drift)

    Translating Tendency (Drift) During hovering flight, a single main rotor helicopter tends to move in the direction of tail rotor thrust. This lateral (or sideward) movement is called translating tendency. [Figure 2-27] To counteract this tendency, one or more ... following features may be used. All examples are for a counterclockwise rotating main rotor disk. Figure 2-27. A tail rotor is designed to produce thrust in a direction opposite torque. The thrust produced by the tail rotor is sufficient…

  • Chapter 11: Helicopter Emergencies and Hazards › System Malfunctions › Loss of Tail Rotor Effectiveness (LTE)

    catastrophic. LTE is an aerodynamic condition and is the result of a control margin deficiency in the tail rotor. It can affect all single-rotor helicopters that utilize a tail rotor. The design of main and tail rotor blades ... tail boom assembly can affect the characteristics and susceptibility of LTE but will not nullify the phenomenon entirely. Translational lift is obtained by any amount of clean air through the main rotor disk. Chapter 2, Aerodynamics of Flight, discusses translational…

  • Chapter 3: Identifying Hazards & Associated Risks › Why Hazards Result in Aviation Accidents › Understanding the Risks Posed by Hazards

    hazardous attitude. Most pilots sincerely believe that they will respond to hazards appropriately and take actions necessary to avoid accidents. However, a pilot’s attitude affects perception of hazards, the analysis of the potential threat, and performance of an appropriate ... response. Since attitude influences behavior, pilots should consider their own attitude and the antidote to any hazardous attitude. [Figure 3-2] The pilots in the two fatal accidents described above exhibited several of these hazardous attitudes. If they had recognized…

  • Chapter 2: Aeronautical Decision-Making › RISK › Hazard and Risk

    Hazard and Risk Two defining elements of ADM are hazard and risk. Hazard is a real or perceived condition, event, or circumstance that a pilot encounters. When faced with a hazard, the pilot makes an assessment of that hazard based ... upon various factors. The pilot assigns a value to the potential impact of the hazard, which qualifies the pilot’s assessment of the hazard—risk. Therefore, risk is an assessment of the single or cumulative hazard facing a pilot; however…