GM1
FCL.745.A Advanced UPRT course – aeroplanes
ED Decision 2019/005/R
UPSET RECOVERY TRAINING EXERCISES
GENERAL
(a) The
objective of this GM is to provide instructors with further guidance on the
conduct of the various upset recovery exercises, which requires instructor
performance beyond that experienced in normal operations.
(b) Instructors
should:
(1) ensure
that the risk mitigation measures determined by the ATO are strictly adhered
to;
(2) continuously
assess the performance of the student to ensure that the training objectives
of the upset recovery exercises are achieved;
(3) understand
that all-attitude/on-aeroplane upset recovery exercises serve primarily as
resilience-builder. In other words, the training serves mainly human-factor
training objectives and not only flying skills training;
(4) understand
the differences between all-attitude UPRT and aerobatics training;
(5) have
knowledge and understanding of how:
(i) on-aeroplane
and FSTD UPRT complement each other; and
(ii) to
ensure that negative transfer of training from small aeroplanes to heavier
transport category aeroplanes is avoided. This may be achieved by observing
UPRT in an FSTD, especially in a type-specific FFS; and
(6) have
knowledge and understanding of the upset prevention theoretical knowledge and
flight instruction elements taught during the CPL(A) and ATPL(A) training
courses to ensure continuity and consistency in delivering UPRT.
Note: Instructors should
be aware that the safety and potential human factor implications of poor upset
recovery instructional technique or misleading information are more significant than in any other areas of pilot training.
(c) In order
to increase the applicant’s resilience related to the handling of aeroplane
upsets, the advanced UPRT course needs to include the development of
confidence and competence in recognising and recovering safely from upsets
under the presence of the real human factors. Such confidence building is
specifically addressed by:
(i) successfully
overcoming natural stress response (startle and surprise); and
(ii) performing
critically important counter-intuitive actions.
Advanced UPRT therefore considers pitch attitudes, bank angles,
AOA/airspeeds, sideslip and g-loads, none of which are normally experienced
during routine operations.
(d) Aeroplanes
used in this course should be:
(1) appropriately
certified and operated by the ATO in a manner that takes into account the
effects of repeated training manoeuvres on airframe fatigue life; and
(2) provide sufficient safety margins to cater for student and instructor errors.
(e) This
course complements UPRT in FSTDs by providing exposure to psycho-physiological
conditions, which cannot be delivered by the motion systems of today’s
qualified FSTDs. At completion of the course, the student should pilot to be
able to:
(1) recognise
and confirm the upset-situation;
(2) manage
stress response;
(3) apply
the correct recovery strategy timely and effectively;
(4) stay
within the defined training envelope;
(5) stabilise
the flight path after recovery; and
(6) become
competent and confident in recovering from upsets.
SPECIFIC EXERCISES
(f) Exercise 1 — Nose HIGH recovery
|
Exercise 1 Recovery from Nose HIGH upsets at various bank angles |
|
|
(1) Training objectives |
The student pilot
should: (i) recognise and
confirm the Nose HIGH situation (AOA, attitude, energy, trends); (ii) announce ‘Nose
High’; and (iii) apply the correct
recovery strategy. |
|
(2) Training tasks |
The student pilot
should: (i) regain situation
awareness; (ii) recognise and
analyse AOA, pitch, bank, energy state and trends; (iii) note natural and
synthetic indications for AOA, attitude, and energy; (iv) manage human
factors, stress response (startle and surprise, counter-intuitive actions); (v) take manual control;
(vi) identify and apply
the Nose HIGH recovery strategy; (vii) correct any
out-of-trim condition; (viii) manage nose-down
movement; (ix) manage g-load; (x) use the effects of
power to assist nose-down movement; (xi) use bank to orient
the lift vector as necessary; (xii) stabilise the
flight path after recovery using basic pitch/power settings; |
|
(3) Enabling objectives |
The student pilot
should: (i) decide if Stall
Recovery or Nose HIGH recovery is applicable; (ii) perform control
inputs deliberately; (iii) use up to full
control deflections; (iv) avoid unnecessary low or high loads; (v) use secondary flight controls (trim/power) as necessary to support primary flight control inputs (i.e. nose-down movement); (vi) apply control inputs in the correct sequence (see Table 1, Nose-HIGH Recovery Strategy); (vii) apply counter-intuitive actions as necessary: (A) unloading; (B) power-reduction in Nose-HIGH attitude (depending on engine mounting); and (C) using bank to orient the lift vector
downwards. |
Note: Refer to GM1 to Appendix 9, Table 2: Recommended nose-high recovery strategy template.
(g) Exercise 2 — Nose LOW Recovery
|
Exercise 2 Recovery from Nose LOW upsets at various bank angles |
|
|
(1) Training objectives |
The student pilot
should: (i) recognise and
confirm the situation (AOA, attitude, energy, trends); (ii) announce ‘Nose
LOW’; (iii) apply the correct
recovery strategy. |
|
(2) Training tasks |
The student pilot
should: (i) regain situation
awareness; (ii) recognise and
analyse AOA, pitch, bank, energy state and trends; (iii) note natural and
synthetic indications for AOA, attitude and energy; (iv) manage human
factors, stress response (startle and surprise, counter-intuitive actions); (v) take manual control;
(vi) identify and apply
the Nose LOW recovery strategy; (vii) correct
out-of-trim condition; (viii) decide if
aircraft is stalled; (ix) manage g-load; (x) identify the correct
direction to roll; (xi) roll to wings level to orient the lift vector upwards; (xii) manage power and drag; and (xiii) stabilise the
flight path after recovery using basic pitch/power settings. |
|
(3) Enabling objectives |
The student pilot
should: (i) perform control
inputs deliberately; (ii) use up to full
control deflections; (iii) avoid unnecessary
low or high loads; (iv) apply control
inputs in the correct sequence (see Table 2, Nose-LOW Recovery Strategy);
and (v) apply
counter-intuitive actions as necessary: (A) apply Stall Recovery in nose low attitude
first if needed; (B) unloading instead of pulling; (C) unloading to increase roll rate; (D) avoid ‘rolling-pull’; and (E) accept the priority of rolling to wings
level first, before reducing power and before pulling. |
Note: Refer to GM1 to Appendix 9, Table 3: Recommended nose-low recovery strategy template.
(h) Exercise 3 — Recovery from spiral dive
|
Exercise 3 Recovery from Spiral Dive |
|
|
(1) Training objectives |
The student pilot
should: (i) recognise the spiral
dive as a result of improper nose-up elevator input during a Nose LOW
turning situation; and (i) apply the Nose LOW
Recovery Strategy. |
|
(2) Training tasks |
The student pilot
should: (i) maintain/regain
situation awareness; (ii) recognise and
analyse AOA, pitch, bank, energy state and trends; (iii) manage human
factors, stress response (startle and surprise, counter-intuitive actions); (iv) take manual
control; (v) identify and apply
the Nose LOW recovery strategy; and (vi) stabilise the
flight path after recovery using basic pitch/power settings. |
|
(3) Enabling objectives |
The student pilot
should: (i) perform control
inputs deliberately and in the correct sequence; (ii) use up to full
control deflections, if required; and (iii) apply
counter-intuitive actions as necessary: (A) unloading instead of pulling; (B) unloading to increase roll rate; (C) avoid ‘rolling-pull’; and (D) accepting the priority of rolling to wings
level first, before reducing power and before pulling. |
(i) Exercise 4 — Stall Event Recovery
|
Exercise 4 Recovery from Stall event |
|
|
(1) Training objectives |
The student pilot
should: (i) recognise and
confirm the situation (AOA, attitude, energy, trends); (ii) announce ‘Stall’; (iii) apply the Stall
Event Recovery Strategy. |
|
(2) Training tasks |
The student pilot
should: (i) regain situation
awareness; (ii) recognise and
analyse AOA, pitch, bank, energy state and trends; (iii) note natural and
synthetic indications for high AOA/stall; (iv) manage human
factors, stress response (startle and surprise, counter-intuitive actions); (v) recover from: (A) approach to stall (B) full stall, wings level and during turn (C) slipping stall (D) skidding stall (E) accelerated stall (F) secondary stall (vi) take manual
control; (vii) identify and apply
the Stall Event Recovery Template or the aircraft manufacturer Stall
Recovery SOP; (viii) apply nose-down
elevator input to reduce AOA; (ix) manage trim; (x) consider power
reduction (if engine mounting induces a nose-up effect); (xi) accept altitude
loss; (xii) identify the
correct direction to roll to wings level; (xiii) manage power and
drag; (xiv) manage g-load and energy to avoid secondary stall; and (xv) stabilise the
flight path after recovery using basic pitch/power settings. |
|
(3) Enabling objectives |
The student pilot should: (i) perform control inputs deliberately; (ii) use up to full control deflections; (iii) apply control inputs in the correct sequence (see Table 3, Stall Event Recovery Strategy Template); and (iv) apply counter-intuitive actions as necessary: (A) unloading to reduce AOA; (B) unloading before rolling; (C) power reduction if necessary; (D) accepting altitude loss; and (E) waiting for airspeed increase before loading
again. |
Note: Refer to GM1 to Appendix 9, Table 1: Recommended stall event recovery template
(j) Exercise 5 — Recovery from spin
|
Exercise 5 Recovery from incipient
spin |
|
|
(1) Training objectives |
The pilot should: (i) recognise and
confirm the spin (AOA, yaw, attitude, energy, roll, trends); (ii) apply the OEM
Incipient Spin Recovery procedure. |
|
(2) Training tasks |
The pilot should: (i) be aware of the
aircraft response to all possible pitch and roll control inputs and to
thrust/power changes during (incipient) spin; (ii) maintain/regain
situation awareness; (iii) recognise and
analyse AOA, attitude, energy, yaw, roll, trends); (iv) note natural and
synthetic indications for high AOA, stall, spin; (v) manage human
factors, stress response (startle and surprise, counter-intuitive actions); (vi) take manual control; (vii) identify and apply the OEM Incipient Spin Recovery Procedure; (viii) manage AOA, g-load and energy to avoid secondary stall; and (ix) stabilise the
flight path after recovery using basic pitch/power settings. |
|
(3) Enabling objectives |
The pilot should: (i) perform control inputs deliberately and in the correct sequence; (ii) use up to full control deflections as required by the procedure; (iii) apply counter-intuitive actions as necessary; (iv) avoid unreflected control inputs; and (v) allow time for
control inputs to show results. |
(k) Assessment of student performance
By collecting evidence from observable behaviours, the instructor will continuously assess whether the student meets the required competency standards under the given conditions.
|
Pilot competencies and behavioural indicators in
the context of the Advanced UPRT Course |
|
(1) Application
of procedures (i) Follows
the recommended Nose HIGH or Nose LOW recovery strategy or the Stall Event
Recovery Template / STALL RECOVERY SOP (ii) Identifies
and follows operating instructions in a timely manner (iii) Correctly
operates aircraft systems and equipment (iv) Applies
relevant procedural knowledge (2) Communication
(i) Adheres
to callouts (ii) Verbalises
the essential steps during the recoveries (3) Aeroplane
flight path management — automation Disconnects
autopilot and autothrust/autothrottle before initiating the recovery (to be
simulated if the training aeroplane is not fitted with
autothrust/autothrottle) (4) Aeroplane
flight path management — manual control (i) Detects
deviations from the desired aircraft trajectory and takes appropriate action
(ii) Controls
the aircraft using appropriate attitude and power settings (iii) Contains
the aircraft within the defined flight envelope (5) Leadership
and teamwork (i) Understands
and agrees with the crew’s roles and objectives (ii) Uses
initiative and gives directions when required (iii) Admits
mistakes and takes responsibility (iv) Communicates
relevant concerns and intentions (v) Gives
and receives feedback constructively (vi) Projects
self-control in all situations (6) Problem-solving
and decision-making (i) Seeks
accurate and adequate information from appropriate sources (ii) Identifies
and verifies what and why things have gone wrong (iii) Perseveres
in working through the event safely (iv) Sets
priorities appropriately (7) Situation awareness and information management (i) Identifies
and assesses accurately the state of the aircraft and its systems (ii) Identifies
and assesses accurately the aircraft’s vertical and lateral position, and
its anticipated flight path (iii) Anticipates
accurately what could happen, plans and stays ahead of the situation (iv) Recognises
and effectively responds to indications of reduced situation awareness. (8) Workload management (i) Maintains
self-control in all situations Manages and recovers from stress response
(startle surprise), interruptions, distractions, variations and errors
effectively (ii) Reviews,
monitors and cross-checks actions conscientiously (iii) Verifies
that tasks are completed to the expected outcome (iv) Offers
and accepts assistance, delegates when necessary, and asks for help early (v) Manages
and recovers from interruptions, distractions, variations and failures
effectively |
Advanced Upset Prevention and Recovery Training (UPRT) enhances pilot resilience through practical exercises. Instructors must prioritize safety, continuously assess student performance, and understand human factors. The course covers nose-high, nose-low, spiral dive, stall, and spin recoveries, emphasizing correct techniques, stress management, and counter-intuitive actions to build pilot confidence and competence.
* Summary by Aviation.Bot - Always consult the original document for the most accurate information.
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