NTSB CAROL · Event
Event ATL99LA037
Aircraft involved
Probable cause & findings
Inadequate planning/decision by the pilot, which resulted in fuel exhaustion due to an inadequate supply of fuel.
Factual narrative
On January 2, 1999, about 1601Eastern Standard Time, a Piper PA-24-250, N7295P, collided with an unknown object during a forced landing near Colbert, Georgia. The airplane was operated by the owner under the provisions of Title 14 CFR Part 91, and Instrument Flight Rules (IFR). Instrument meteorological conditions prevailed at the accident site and an IFR flight plan was filed for the personal flight. There were no injuries to the commercial pilot and the airplane was substantially damaged. The flight originated at Allaire Airport in Belmar, NJ, at 1028 the same day destined for the Gwinnett County Airport, Lawrenceville, Georgia. According to the pilot, the visual preflight inspection of the aircraft fuel tanks revealed that both tanks were filled to the bottom of the filler neck which the pilot believed was appropriately full (see attached flight manual). After starting the engine, fuel began leaking from the fuel sump drain hose. The pilot operated the spring loaded valve handle inside the airplane which apparently stopped the leak. No fuel was witnessed leaking from the drain hose thereafter. The pilot had estimated the flight would take close to five hours with anticipated head winds. Shortly after departing, according to the pilot, the engine began running rough upon which he began a deviation to another airport. During this time, the engine began running smoothly whereupon the pilot continued to his initial destination. According to the pilot, after an uneventful five hours of flight, during descent, the engine began running rough. The pilot stated, he decided the tanks had been exhausted and immediately asked Air Traffic Control for help to the nearest airport located in Athens, Georgia. After descending through the clouds at 600 feet, the pilot lowered the landing gear and applied full flaps. The airplane was landed on a wet and slightly downhill road. The pilot stated that the right wing hit something before the airplane settled over a drainage ditch along the side of the road (see attached Pilot/Operator Aircraft Accident Report). The following airplane endurance approximations are based on data obtained in the Piper Airplane PA-24-250 Aircraft Information Manual: The airplane cruising endurance based on 75% power and 90 gallons of fuel on board is 5.4 hours. Note, this cruising range figure includes 45 minutes fuel reserve plus allowance for fuel used during taxi, takeoff, climb, and cruise at the stated power. The usable fuel capacity on this airplane when the fuel tanks are filled to the top of the filler necks is 90 gallons, however when the tanks are filled to the bottom of the filler necks, the approximated quantity of usable fuel is 80 gallons. The actual flight time of this aircraft was 5.55 hours. According to a Federal Aviation Administration inspector who examined the airplane, four feet of the main right wing was torn off, the main landing gear was broken off, the left horizontal stabilizer was bent, and one propeller blade was bent. The inspector also noted that only residual fuel was found in the selector valve and no leaks were found in the fuel system. The preflight inspection of the fuel tanks by the pilot revealed the tanks were filled to the bottom of the filler neck, which the pilot believed was appropriately full. After starting the engine, fuel began leaking from the fuel sump drain hose. The pilot operated the spring loaded valve handle inside the airplane which apparently stopped the leak. Shortly after departing, the engine began running rough upon which the pilot began a deviation to another airport. During this time, the engine began running smoothly whereupon the pilot continued to his initial destination. During descent, the engine began running rough and the pilot decided the tanks had been exhausted. The pilot performed a forced landing causing substantial damage. The airplane cruising endurance based on 75% power and 90 gallons of fuel on board is 5.4 hours. However, the usable fuel capacity on this airplane when the fuel tanks are filled to the bottom of the filler necks is approximately 80 gallons. The actual flight time of this aircraft was 5.55 hours. A Federal Aviation Administration inspector who examined the airplane noted only residual fuel was found in the selector valve and no leaks were found in the fuel system. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_1999_ATL99LA037.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 (fuel exhaustion). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- AOPA Air Safety Institute 2023 · Safety advisor
Safety Advisor: Fuel Awareness
AOPA Air Safety Institute safety advisor on preventing fuel-exhaustion and fuel-starvation accidents in general aviation. Covers pre-flight fuel planning, reserve requirements (14 CFR 91.151, 91.167),…
- NASA NTRS 2019 · Abstract
U.S. Civil Rotorcraft Accidents, 1963 through 1997
The U.S. National Transportation Safety Board (NTSB) has recorded 8,436 rotorcraft accidents during the period mid - 1963 through the end of 1997.
- NASA NTRS 2019 · Contractor Report (CR)
A study of carburetor/induction system icing in general aviation accidents
An assessment of the frequency and severity of carburetor/induction icing in general-aviation accidents was performed. The available literature and accident data from the National Transportation Safet…
- NASA NTRS 2018 · Other
Parachuting to Safety
NASA's Langley Research Center awarded Ballistic Recovery Systems, Inc., three Small Business Innovation Research (SBIR) contracts to research and develop a new, low cost, lightweight recovery system …
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