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GAA17CA061 · Beech 95B55

14 Nov 2016 · Plattsburgh, NY, United States

Beech 95B55 · Accident: loss of control in flight on approach

From Patrick Leahy Burlington International Airport (BTV) to Patrick Leahy Burlington International Airport (BTV)

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Event

NTSB case
GAA17CA061
Event typeAccident: someone killed or seriously injured, or the aircraft substantially damaged (NTSB definition). Incident: an occurrence that affected or could have affected safety, short of that. Glossary
Accident
InvestigationHow far the investigation had got when the record was published: preliminary, ongoing, final or completed. Unknown where the source does not say. Glossary
Completed
API-reported fatalities
0 · all aircraft and ground
Ground fatalities
Unknown
OperationWhat kind of flying it was, grouped by the rules it flew under: airline (US Part 121), air taxi and commuter (Part 135), general aviation (Part 91 and similar), military or government. Glossary
General aviation
WeatherVisual meteorological conditions (VMC): good enough to fly by looking outside. Instrument conditions (IMC): cloud or low visibility, flying by instruments. Glossary
Visual Meteorological Cond

Beech 95B55

Aircraft type
Beechcraft 55
Category
Airplane
RegistrationThe aircraft's tail number, such as N12345 or G-ABCD. Registrations are reissued, so the same one years apart can be a different aircraft. Glossary
N180GA
Operator
Unknown
Onboard fatalities
Unknown
Route
From Patrick Leahy Burlington International Airport (BTV), Burlington, VTTo Patrick Leahy Burlington International Airport (BTV), Burlington, VT
Aircraft age
About 39 years (built 1977)
Flight rulesThe regulations the flight operated under: in the US, Part 91 (general aviation), Part 121 (airlines), Part 135 (air taxi and commuter) and others; for flights abroad, the NTSB's coarser commercial or non-commercial code. Glossary
Part 91: General Aviation
Phase of flightThe stage of the flight when things started to go wrong: standing, taxi, takeoff, initial climb, en route, maneuvering, approach or landing. Glossary
Approach · VFR pattern final
Defining eventThe single coded event the NTSB judges best describes what happened (records from 2008 on). Older records name the first occurrence in the sequence instead. Glossary
Loss of control in flight
DamageDestroyed: beyond practical repair. Substantial: damage that affects the structure, performance or handling and normally needs major repair. Minor: less than that. Glossary
Substantial

Cause areas

  • Aircraft › Aircraft oper/perf/capability
  • Personnel issues › Task performance

Approximate · Coordinates from the NTSB case API, which marks them as estimated or does not say; no uncertainty radius is established.

NTSB narrative

The flight instructor of the multi-engine airplane reported that during a full-feathered, single-engine practice instrument approach in visual meteorological conditions, the pilot extended the flaps and the airspeed dropped about 20-30 knots. He further reported that the pilot added power to the operating engine and the airplane "veered" to the left and "lost more altitude resulting in a stalled condition". The flight instructor took control of the airplane, reduced power to idle on the operating engine, attempted to level the wings, and the airplane impacted the airport ramp area with "excessive vertical speed".

The airplane sustained substantial damage to both wings, both ailerons, and fuselage.

The flight instructor reported that there were no preaccident mechanical failures or malfunctions with the airframe or engine that would have precluded normal operation.

The Federal Aviation Administration has published the Airplane Flying Handbook FAA-H-8083-3B (2016). This handbook discusses multi-engine landings and spin awareness and states in part:

Landings

The final approach should be made with power and at a speed recommended by the manufacturer; if a recommended speed is not furnished, the speed should be no slower than the single-engine best rate-of-climb speed (VYSE) until short final with the landing assured, but in no case less than critical engine-out minimum control speed (VMC). Some multiengine pilots prefer to delay full flap extension to short final with the landing assured. This is an acceptable technique with appropriate experience and familiarity with the airplane.

Spin Awareness

In order to spin any airplane, it must first be stalled. At the stall, a yawing moment must be introduced. In a multiengine airplane, the yawing moment may be generated by rudder input or asymmetrical thrust. It follows, then, that spin awareness be at its greatest during VMC demonstrations, stall practice, slow flight, or any condition of high asymmetrical thrust, particularly at low speed/high AOA (angle of attack). Single-engine stalls are not part of any multiengine training curriculum.

For spin avoidance when practicing engine failures, the flight instructor should pay strict attention to the maintenance of proper airspeed and bank angle as the student executes the appropriate procedure. The instructor should also be particularly alert during stall and slow flight practice. Forward center-of-gravity positions result in favorable stall and spin avoidance characteristics, but do not eliminate the hazard.

Probable cause

The pilot's failure to maintain the proper airspeed and his exceedance of the airplane's critical angle-of-attack during a single-engine approach, which resulted in an aerodynamic stall at an altitude too low for the flight instructor to recover.

Verbatim NTSB analysis and probable cause from the NTSB dataset

Sources

NTSB record GAA17CA061
Event ID
20161109X50545
Case number
GAA17CA061
Dataset
full-current
Source SHA-256
5cf380f0061817c0331a6b2d8cc7e0ee3a79bea469a1001dc5c10e56f35f5ab3
Source notes (4)
  • Unreviewed is an editorial label, not an investigation status. API-sourced is not report-checked or human-reviewed. Explicit event totals are used without summing aircraft injury tables; onboard allocation is withheld. Unknown values remain unknown. The operation category is mapped from the NTSB-reported FAR part and has not been reviewed.
  • Filled from the NTSB case API where the bulk record had no value: investigation status, coordinates. Values present in the bulk record are kept.
  • The date is the local date, which is the same as the UTC date the NTSB stores.
  • API snapshot SHA-256: 12d16dbf4dfc662a9aa0ebcb1465f4fd4156a4942ceb2045708d04bfb0703dba; retrieved 2026-09-16T04:49:19.601Z.