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Atlas / NTSB / ERA24LA087

NTSB CAROL · Event

Event ERA24LA087

2024-01-10 Hohenwald, Tennessee, United States Airport · 0M3 None 1 aircraft Status: Completed

Registry · N7UT

FAA Aircraft Registry record.

Make / Model

CESSNA 150M

Year of manufacture

1974 · 50 years old at event

Engine

CONT MOTOR 0-200 SERIES (100 hp)

Seats / Engines

2 seats · 1 engine

Last airworthiness date

19740913

ADS-B equipped

Yes — Mode-S A951B0

Registrant of record

VOLUNTEER AVIATION FOUNDATION INC

Source: FAA Aircraft Registry (releasable master file).

Aircraft involved

Probable cause & findings

The pilot’s failure to use carburetor heat in conditions conducive to the formation of carburetor ice, which resulted in a partial loss of engine power due to fuel starvation. Contributing to the outcome was her failure to attain a proper touchdown point during the subsequent diversionary landing, which resulted in a runway excursion.

Factual narrative

On January 10, 2024, about 0815 central standard time, a Cessna 150M, N7UT, was substantially damaged when it was involved near Hohenwald, Tennessee. The student pilot was not injured. The airplane was operated as a Title 14 Code of Federal Regulations Part 91 instructional flight. The student pilot reported that she was conducting a solo cross-country flight. The first leg was planned from Tullahoma Regional Airport/William Northern Field (THA), Tullahoma, Tennessee, to Hassell Field Airport (M29), Clifton, Tennessee, which was about 90 nm. Shortly after receiving a weather briefing and flight instructor signoff for the solo flight, the student pilot ensured the fuel was topped off. The preflight inspection and engine run-up were normal with no irregularities found. The subsequent takeoff and climb to the cruising altitude were normal. About 80 nm into the flight, while cruising at 2,500 ft mean sea level and 2,400 rpm, the engine began to run rough. The pilot moved the throttle to full, confirmed that the mixture was full rich, and checked the fuel selector valve. The pilot did not report using carburetor heat at any point during her troubleshooting efforts. The engine continued to progressively operate rougher with a subsequent decrease in rpm and the pilot was unable to maintain altitude. The pilot elected to divert to Paul Bridges Field Airport (0M3), Hohenwald, Tennessee. While on final approach, the airplane was high and fast; however, the pilot did not believe the airplane was high enough to bleed off airspeed and make a 180° turn to lose altitude, so she continued the approach and landed long down the runway. Unable to stop the on the remaining runway using full brakes, the airplane exited the paved surface of the runway and struck a fence resulting in substantial damage to the wings and elevator. A visual inspection of the engine was conducted at the accident scene, and a visual inspection of fuel samples from the engine and wing drains found no sign of water or obstructions. A postaccident engine run was conducted and revealed no anomalies that would have prevented normal operation. According to the FAA carburetor icing chart, the temperature, 2°C, and dew point, -2°C, recorded at the weather reporting station closest to the accident site, were conducive to “serious icing” at cruise power settings. The student pilot was on a solo cross-country flight when the accident occurred. She noticed no irregularities during the preflight inspection, engine run-up, or climb out. About 80 nautical miles (nm) into the flight, while operating at 2,500 ft mean sea level, the engine began to run rough. The pilot moved the throttle and mixture to full, but the engine continued to progressively operate rougher with a subsequent decrease in engine rpm. Unable to maintain altitude, the pilot diverted to the nearest airport. While on final approach, the airplane was high and fast, and she did not believe there was enough altitude to complete a 180° turn to bleed off airspeed, so she continued the approach. The airplane landed long down the runway, exited the paved surface, and collided with a fence resulting in substantial damage to the wings and elevator. Postaccident examination and a test run of the engine did not reveal evidence of any preexisting anomalies or failures that would have prevented normal operation. The recorded temperature and dew point near the accident site were conducive to “serious icing” at cruise engine power settings. The pilot described the troubleshooting tasks she performed while trying to diagnose the reason for the loss of engine power, but did not report using carburetor heat. Based on this information, carburetor ice likely formed during the cruise portion of the flight, which resulted in a partial loss of engine power and a forced landing. During the approach, the pilot was high, fast, and landed long resulting in a runway excursion. 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).

  • Personnel issues-Task performance-Use of equip/info-Use of equip/system-Pilot
  • Environmental issues-Conditions/weather/phenomena-Temp/humidity/pressure-Conducive to carburetor icing-Effect on equipment
  • Aircraft-Aircraft oper/perf/capability-Performance/control parameters-Descent/approach/glide path-Not attained/maintained

Verbatim from NTSB's published report. Source file NTSB_2024_ERA24LA087.txt. Findings + structured fields enriched from FAA avall.mdb. Full investigation docket on data.ntsb.gov ↗.

Related research

What the literature says.

Academic papers and agency reports matching this event's aircraft type or causal vocabulary (icing, fuel starvation, runway excursion). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.

Browse the full corpus — academia portal ↗