Aviation Crash Map

Degraw DEBIRD N140DG

4 August 2024 · Napoleon, Michigan, United States · Fatal

Summary

On 4 August 2024 at about 00:58 local time, a Degraw DEBIRD registered N140DG was involved in an accident near Napoleon, Michigan, United States. One person was on board and one died. The aircraft was substantially damaged. No probable cause has been published yet; this accident is still under investigation.

The record

Date
at 00:58
Classification
Accident
Location
Napoleon, Michigan, United States
Nearest airport
Private (PVT)
Coordinates
42.1829, -84.2778
Aircraft
Degraw DEBIRD
Registration
N140DG
Category
Gyrocraft
Year built
1997
Engines
1
Operator
Not recorded
Operating rule
Part 91: General Aviation
Purpose of flight
Personal
Phase of flight
Not recorded
Aircraft damage
Substantial
Weather
VMC
Light
Dusk
NTSB number
CEN24FA298

People

1 person died.

On board Died Serious Minor Uninjured
1 1 0 0 0

Probable cause

The NTSB has not published a probable cause for this record. The investigation is still open; a final report usually follows one to two years after the accident.

Nothing about the cause is stated here that is not in the source record.

Read the full NTSB narrative

On August 3, 2024, about 2058 central daylight time, a De Bird gyroplane, N140DG, was substantially damaged during an accident near Napoleon, Michigan. The pilot was fatally injured. The gyroplane was operated as a Title 14 Code of Federal Regulations Part 91 personal flight. The husband of the pilot reported that his wife was conducting an evening pleasure flight in the gyroplane. He said that the weather conditions at the time of the accident were good and that his wife was very experienced in the accident gyroplane. He estimated that she had about 800 flight hours in the accident gyroplane. He was about ΒΌ mile away from their private airstrip and he could hear the gyroplane as it advanced down the runway, took off, and began its climb. He said that he did not hear anything unusual until he heard two loud thumps. He noted that during a normal takeoff the gyroplane would be about 150 ft above ground level (agl) when it reached the departure end of the runway. After hearing the thump noises, he boarded and took off in another gyroplane that he owned to search for the accident gyroplane but could not locate it. When asked if he heard any unusual engine sounds, he said that he could not be sure as the gyroplane was farther away after starting the takeoff. The airstrip consisted of a single turf runway oriented about 160/340 degrees with trees lining the majority of the length on both sides. The accident takeoff was made on runway 34. The accident gyroplane was found in wooded terrain about 200 ft left of the centerline, and about 250 ft short of the departure end of runway. The gyroplane was upright but leaning to its left side and was supported by trees. There was crushing of the forward and left side of the fuselage. The left main landing gear was fractured. The horizontal and fixed tail surfaces were found a short distance away from the fuselage on opposite sides of surrounding trees. The location of the tail surfaces at the accident site was consistent with separation before the gyroplane descended into the trees. The tail surfaces had two separate areas of damage with features consistent with having been impacted by the main rotor. Examination of the main rotor blades revealed yellow paint transfer that was also consistent with the main rotor impacting the tail of the gyroplane. The tail boom of the gyroplane was partially separated from the fuselage and only remained attached by the two rudder cables. The fracture of the tail boom was consistent with the aft end of the boom bending toward the right prior to failure. This was consistent with a potential rotor strike to the tail considering the counterclockwise rotation direction of the main rotor blades as viewed from above. The accident gyroplane flight control system consisted of a cyclic control and a collective control which adjusted the main rotor blade pitch dependent on the blade location while rotating. The directional control was accomplished by a single moveable vertical surface below the horizontal stabilizer and between the two fixed vertical stabilizers. Examination of the gyroplanes control system confirmed continuity of the cyclic, collective, and directional control systems. All identified breaks were consistent with impact damage. Examination of the gyroplanes engine was limited but continuity of the reciprocating and valve train system was verified by rotating the engine. During rotation, compression could be felt on all cylinders. No preimpact anomalies were found during the examination. The rotor drive system was intact except for a separation of the drive coupling in the top of the fuselage. All three main rotor blades were intact from root to tip but with bending at various locations along their length due to impact. All of the main rotor system components were intact with all damage consistent with impact damage.

Quoted verbatim from the NTSB record.

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