NTSB CAROL · Event
Event ERA16LA172
Registry · N7620B
FAA Aircraft Registry record.
Make / Model
CHAMPION 7BCM
Engine
CONT MOTOR C85 SERIES (85 hp)
Seats / Engines
2 seats · 1 engine
Last airworthiness date
19560809
ADS-B equipped
Yes — Mode-S AA4B50
Registrant of record
STANCIL JAMES T
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
A partial loss of engine power during cruise flight for reasons that could not be determined because postaccident examination of the engine revealed no anomalies that would have precluded normal operation.
Factual narrative
On April 30, 2016, about 1057 eastern daylight time, a Champion 7BCM, N7620B, was substantially damaged following a partial loss of engine power and forced landing to a grass field in Tyrone, Georgia. The airline transport pilot and one passenger were not injured. The airplane was registered to a corporation and was operated by the Dixie Wing of the Commemorative Air Force under the provisions of 14 Code of Federal Regulations Part 91 as a revenue sightseeing flight. Day, visual meteorological conditions prevailed, and no flight plan was filed. The local flight from Atlanta Regional Airport – Falcon Field (FFC), Peachtree City, Georgia originated about 1040.According to the pilot, the airplane was level at 3,000 feet above mean sea level when the engine began to lose power. He selected carburetor heat and no improvement was observed; the engine speed remained at 2,000 rpm. Carburetor heat was then turned off. The magnetos were checked and there was no significant change in performance noted. Carburetor heat was re-applied with no improvement; the pilot left it on for the remainder of the flight. The airplane would not maintain altitude, so the pilot configured the airplane for a forced landing in a field. After touchdown, the airplane nosed down in high vegetation and the main landing gear collapsed. The pilot and passenger exited the airplane and were assisted by first responders. An inspector with the Federal Aviation Administration (FAA) responded to the accident site and examined the wreckage. The airplane came to rest upright. Structural damage to the engine firewall and forward fuselage was evident. The main landing gear was collapsed under the airframe. The fuselage-mounted fuel tank contained an adequate amount of fuel. An initial cursory examination of the engine revealed no evidence of a mechanical failure. The wreckage was recovered to the operator's facility for additional examination. The examination was conducted by two FAA inspectors and the NTSB investigator-in-charge. The engine was found intact and still attached to the airframe by the engine mount. External examination of the engine case and cylinders revealed no evidence of rupture or breach. All four top spark plugs were removed. The electrodes were normal in wear when compared to a Champion Check-A-Plug chart. The electrodes were coated with a thin layer of black soot. The engine was turned through manually using the propeller. Suction and compression were observed on all cylinders and valve action was correct. The carburetor was removed and disassembled. The fuel bowl was clean and free of contaminants. No water was noted. The bowl contained a small amount of clean fuel that was light blue in color. All carburetor components were normal in appearance. The air intake to the carburetor was unobstructed. The magnetos were turned manually and produced a spark at all leads. The ignition harness was normal in appearance with no fraying or cuts noted. According to the 1053 weather observation at FFC, located about 7 miles south of the accident site, the temperature and dew point were 79 degrees F and 63 degrees F, respectively. According to the carburetor icing probability chart in FAA Special Airworthiness Information Bulletin CE-09-35 (Carburetor Icing Prevention), dated June 30, 2009, the temperature/dew point at the time of the accident was in the area of serious icing at glide power. The airline transport pilot was conducting a revenue sightseeing flight with one passenger onboard. During cruise flight, while the airplane was level at 3,000 ft mean sea level, the engine began to lose power. The pilot applied carburetor heat with no improvement; the engine speed remained at 2,000 rpm. He then turned the carburetor heat off and checked the magnetos and noted no significant change in performance. He then reapplied carburetor heat with no improvement; the pilot left the heat on for the remainder of the flight. The airplane would not maintain altitude, so he conducted a forced landing in a grass field. After touchdown, the airplane nosed down in high vegetation, and the main landing gear collapsed. The airplane sustained structural damage to the forward fuselage and engine firewall. Postaccident examination of the airframe and engine revealed no evidence of preimpact mechanical failures or malfunctions that would have precluded normal operation, and there was sufficient fuel onboard at the time of the accident. Although the weather conditions at the time of the accident were conducive to serious carburetor icing at glide power, the pilot applied carburetor heat twice, which should have melted any existing ice, but power was not restored. Therefore, the investigation could not determine the reason for the partial loss of engine power. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
Hierarchical cause / factor breakdown from the FAA bulk avdata database. Each finding tagged C (Cause) or F (Factor).
- C Not determined-Not determined-(general)-(general)-Unknown/Not determined - C
- — Environmental issues-Physical environment-Object/animal/substance-(general)-Contributed to outcome
Verbatim from NTSB's published report. Source file
NTSB_2016_ERA16LA172.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
What the literature says.
Academic papers and agency reports matching this event's aircraft type or causal vocabulary (icing). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- NASA NTRS 2026 · Contractor Report (CR)
Icing Physics Studies Using the 3D SIDRM Test Article: 2023 Icing Tests Analysis
In-flight icing is an important safety issue and is a factor that affects aircraft design and performance. Newer regulations are driving a need for improvements in airframe and engine icing simulation…
- arXiv 2025 · arXiv preprint
Multi-Agent Deep Reinforcement Learning for UAV-Assisted 5G Network Slicing: A Comparative Study of MAPPO, MADDPG, and MADQN
The growing demand for robust, scalable wireless networks in the 5G-and-beyond era has led to the deployment of Unmanned Aerial Vehicles (UAVs) as mobile base stations to enhance coverage in dense urb…
- Embry-Riddle Scholarly Commons 2025 · Journal article (JAAER)
A Mathematical Model on the Temporal Dynamics of Aviation Competitive Pricing
This study investigates the competitive dynamics of airport pricing using U.S. airport data to validate the findings. It employs linear and nonlinear ordinary differential equation models to analyze t…
- NASA NTRS 2025 · Presentation
NASA Icing Update – March 2025
This NASA Icing Update was prepared for presentation to the SAE International AC-9C Inflight Icing Technology Committee. This update includes the following topics: planned Rotational Icing Scaling tes…
- arXiv 2024 · arXiv preprint
An energy-stable phase-field model for droplet icing simulations
A phase-field model for three-phase flows is established by combining the Navier-Stokes (NS) and the energy equations, with the Allen-Cahn (AC) and Cahn-Hilliard (CH) equations and is demonstrated ana…
- NASA NTRS 2024 · Presentation
NASA Icing Update – Oct 2024
This presentation provides a status update on select NASA icing research activities for the SAE AC-9C Icing Technical Committee Meeting on Oct 21, 2024.
Browse the full corpus — academia portal ↗