Piper PA-28-161 accident near Fort Pierce, Florida, August 17, 2023
On August 17, 2023 at about 4:02 pm local time, a 2002 Piper PA-28-161, registered N9855S, was destroyed in an accident during maneuvering (aerobatics) near Fort Pierce, Florida (Treasure Coast International A airport). It was an instructional flight under general aviation rules (Part 91). 1 person was killed and 1 person was seriously injured. The weather was visual conditions (good weather).
The NTSB's probable cause their words, unchanged
The left seat instructor’s intentional maneuvering of the airplane in an aerobatic steep turn for which it was not approved, which resulted in an exceedance of the structural limitations of the airplane and an inflight breakup.
Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.
What the record shows
- Date
- August 17, 2023 · about 4:02 pm local time
- Place
- Fort Pierce, Florida · Treasure Coast International A · map
- Type
- Accident
- Injuries
- 1 person was killed and 1 person was seriously injured.
- Weather
- visual conditions (good weather)
- Aircraft
- Piper PA-28-161 NO SERIES, built 2002 · all PA-28-161s on the register
- Registration
- N9855S · registry record · serial 2842151
- Damage
- Destroyed
- Flight
- Instructional flight · general aviation rules (Part 91)
The NTSB's narrative final · quoted from the NTSB record
Two flight instructors were taking part in a flight school proficiency check. The instructor seated in the left seat was employed by the flight school and was administering the check to the newly-hired instructor in the right seat. The left seat instructor stated that he was demonstrating an EASA [European Union Aviation Safety Agency] maneuver at the time of the accident. He described that the maneuver involved a power-off aerodynamic stall and recovery without the use of engine power. The left seat instructor described that he pitched the airplane up and entered a full aerodynamic stall with the engine power at idle. After the airplane stalled, he recalled pitching to a glide airspeed of 73 knots to recover from the stall. He stated that during the recovery, with power at idle, the right wing departed the airplane, and the airplane banked abruptly to the right. The airplane then descended and impacted a small building that housed a recreational vehicle (RV). Both wings and the horizontal stabilator separated from the airplane in flight and were located about 600 to 700 ft away from the fuselage. A performance study using ADS-B data and a forensic metallurgical examination of the fractured wing surfaces were conducted following the accident. The performance study found that the airplane made four steep turns in the final few minutes of recorded data before the inflight breakup. The final two 180° turns observed in the flight track data had a significantly smaller turn radius compared to previous maneuvers. The second to last steep turn had a radius of 280 ft and the airplane accelerated to over 100 knots airspeed while still in the turn, resulting in a calculated bank angle of over 70° left wing down. The final turn started with a radius of 200 ft that tightened as the airplane accelerated. With the airplane’s true airspeed at 99 knots, for a 200-ft turn radius, the resulting bank angle was over 75° left wing down. These calculated bank angles, and thus the calculation of any resulting load factors, derived from ADS-B data were approximate values that were dependent upon the accuracy of the recorded GPS data. The Federal Aviation Administration (FAA) Airplane Flying Handbook stated in part that steep turn maneuvers consisted of single to multiple 360° and 720° turns, in either or both directions, using a bank angle between 45° and 60°. The chapter specifically provided guidance pertaining to the dangers of exceeding those bank angles and the structural limitations of general aviation airplanes. The forensic metallurgical examination found that the left and right main spars fractured in ductile overstress following wing loads that exceeded the design capability of the airplane. The right wing likely fractured first, and the local deformation associated with the spar fracture was consistent with the upward loading on the wing. The left wing failure was secondary, showing local downward deformation at the fracture location. The left wing failure likely occurred due to a sudden elastic relaxation of the overloaded left wing in response to the rapid load change from the right wing failure, combined with downward air loads on the left wing associated with a subsequent roll to the right from the loss of lift on the right side of the airplane. Further metallurgical examination of both the right and left wing main spar lower caps found that fatigue cracks initiated in areas of fretting damage. The cracks were not yet large enough to impact the strength of the spar under the accident loading conditions since none of the fractures initiated at or intersected any fatigue cracks. Therefore, although fatigue cracks were present, they did not contribute to the in-flight breakup. The uniform deformation and upward bending on both sides of the spar box was indicative of a steep turn maneuver that grossly exceeded the structural limitations of the airplane. The airplane was operating in the normal category at the time of the accident. The airplane’s pilot operating handbook prohibited aerobatic maneuvers, which included turns beyond 60° of bank, and included a load limit of 3.8g while operating in the normal category. The airplane was operated by a large flight school. The “EASA” maneuver the left seat flight instructor stated that he was demonstrating was not a part of the operator’s Instructor Briefing Sheet Test for the proficiency check being administered. In summary, the analysis of the airplane’s flight path based on the recorded data and the postaccident metallurgical examination findings were indicative of the pilots performing a series of increasingly aggressive, aerobatic steep turns, which ultimately exceeded the design capability of the airplane, resulting in its inflight breakup. The surviving instructor reported that he was flying the airplane at the time of the inflight breakup, but his recollection of the last moments of flight and the maneuver being demonstrated was not consistent with the steep turns identified in the ADS-B performance study. The flight school did not have a safety management system (SMS) or a flight data monitoring (FDM) program, nor were they required to have such programs. The operator did have an Aviation Safety Action Program (ASAP). A review of the ASAP database by the operator found no relevant reports involving the accident pilots or accident airplane. If the flight school had a flight data monitoring program (FDM) and safety management system (SMS), they could have had additional methods of identifying and monitoring flight data for exceedances of normal flight envelope parameters. Without SMS or FDM, flight schools have limited tools to assure that standard operating procedures are being followed.
The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.
The factual record from the NTSB's investigation tables, in plain English
What happened, in order
- Aircraft structural failure during maneuvering (aerobatics) defining event
The NTSB's findings
- Personnel issues › Action/decision › Info processing/decision › Decision making/judgment › Instructor/check pilot
- Aircraft › Aircraft structures › Wing structure › Spar (on wing) › Capability exceeded
Flight instructor
- Certificate: flight instructor, commercial pilot
- Ratings: multi-engine land; single-engine land; instructor: airplane multi-engine; instructor: airplane single-engine; instructor: instrument airplane; instrument: airplane
- Flight time: 1,681 hours in all; 421 in this make and model; 208 in the last 90 days; 84 in the last 30 days; 1,558 as pilot in command; 1,309 on instruments
- Last flight review: February 3, 2022
- Medical certificate: Class 1 (with waivers/limitations)
- Seat: left
- Injury: serious injuries
Flight instructor
- Certificate: flight instructor, commercial pilot
- Ratings: multi-engine land; single-engine land; instructor: airplane multi-engine; instructor: airplane single-engine; instructor: instrument airplane; instrument: airplane
- Flight time: 287 hours in all; 92 in this make and model; 21 in the last 90 days; 9 in the last 30 days; 200 as pilot in command
- Last flight review: August 7, 2023
- Medical certificate: Class 2 (with waivers/limitations)
- Seat: rgt
- Injury: fatal
The aircraft
- Airframe total time: 16,756 hours
- Last inspection: 100-hour inspection, June 29, 2023; 87 hours since
- Maximum gross weight: 2,440 lb
- Seats: 4
- Landing gear: fixed
- Engine: Lycoming O-320 (piston); 10,202 hours total
The flight
- Departed from: FPR Ft. Pierce FL at 3:37 pm
- Flight plan: none
- A second pilot was aboard
Weather at the time
- Light: daylight
- Wind: from 220° at 8 knots
- Visibility: 10 statute miles
- Sky: clear
- Temperature: 90°F (32°C), dew point 75°F (24°C)
- Altimeter: 30.00 inHg
- Observation at 12:30 pm from FPR, 9 miles away
Weather report (METAR): KFPR 171630Z 22008KT 10SM VCTS CLR 32/24 A3000 RMK AO2 LTG DSNT N AND SE T03220244
Injuries
| Fatal | Serious | Minor | None | |
|---|---|---|---|---|
| Flight crew | 1 | 1 |
Documents from the investigation the NTSB's docket: the evidence folder behind the report
15 documents, released by the NTSB on November 21, 2024. View them here, or download them; the NTSB redacts some personal details before release, and this site shows the NTSB's own titles rather than its file names.
Other NTSB records under N9855S the same tail number, which may have belonged to a different aircraft at the time
Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.
