NTSB CAROL · Event
Event FTW02LA101
Registry · N9265L
FAA Aircraft Registry record.
Make / Model
PEGASUS POWRACHUTE 582 E DRIVE
Year of manufacture
2004
Engine
ROTAX 582E (65 hp)
Seats / Engines
2 seats · 1 engine
Last airworthiness date
20071031
ADS-B equipped
Yes — Mode-S ACD786
Registrant of record
TURVEY TOMMIE M
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
the pilot's delay in taking immediate remedial action after the flight encountered icing conditions, which resulted in a collision with terrain. A contributing factor to the accident was the icing condition.
Factual narrative
On March 24, 2002, at 1500 mountain standard time, a Grumman AA-5 airplane, N9265L, was substantially damaged when it impacted terrain during an emergency descent/landing following an-flight encounter with weather near Lamar, Colorado. The airplane was registered to and operated by the pilot. The instrument-rated commercial pilot, and his one passenger, sustained minor injuries. Instrument meteorological conditions (IMC) prevailed, and an instrument flight rules (IFR) flight plan was filed for the 14 Code of Federal Regulations Part 91 personal flight. The cross-country flight originated from the Centennial Airport, Denver, Colorado, at 1230, and was destined for the Augusta Airport, Wichita, Kansas, with an intermediate fuel stop at the Garden City Regional Airport, Garden City, Kansas. According to the pilot, he contacted the Denver Automated Flight Service Station (DEN AFSS) and obtained a weather briefing for the flight to Garden City. The briefer informed the pilot of IFR conditions along the route of flight and an airmet for icing conditions in the northern 1/3 of the state of Colorado; however, the route of flight was not within the airmet's boundaries. The pilot then filed an IFR flight plan to Garden City. The flight departed and climbed to a cruising altitude of 9,000 feet. The pilot stated that the airplane was in IMC when he observed that the airplane's groundspeed was less than he expected, and the outside air temperature was slightly below freezing. He contacted air traffic control (ATC), requested a descent to 7,000 feet, and initiated a descent. The pilot stated that the flight was near Lamar when rime ice began to accumulate on the airplane's windshield, wings, and vertical stabilizer. The flight continued and was 25-30 miles past Lamar when the pilot advised ATC that the airplane could not maintain altitude due to icing. ATC recommended that the pilot reverse course and divert to the Lamar Municipal Airport (LAA) in Lamar. The pilot then turned back toward LAA. The pilot stated that the airplane remained in a shallow descent; however, he was able to maintain 80 mph airspeed. The flight broke out of the cloud layer at 4,500 feet, and with the assistance of a handheld GPS, the pilot proceeded direct to LAA. The pilot stated that his view was obstructed by the ice on the windshield. The entire windshield was covered with ice, except for a 6-inch radius semi-circle that was cleared by the airplane's windshield defroster. The flight continued toward Lamar; however, the flight encountered rising terrain. Subsequently, the airplane impacted the ground and traveled 100 feet before coming to a stop upright, approximately 1 mile southeast of LAA. During the impact, the firewall was wrinkled, the engine mount was damaged, and both wings sustained structural damage. The pilot obtained a weather briefing for an IFR flight. The briefer informed the pilot of IFR conditions along the route of flight and an airmet for icing conditions in the northern 1/3 of the state of Colorado; however, the route of flight was not within the airmet's boundaries. The pilot then filed an IFR flight plan. The flight departed and climbed to a cruising altitude of 9,000 feet. The pilot stated that the airplane was in IMC when he observed that the airplane's groundspeed was less than he expected, and that the outside air temperature was slightly below freezing. He contacted air traffic control (ATC), requested a descent to 7,000 feet, and initiated a descent. Rime ice began to accumulate on the airplane's windshield, wings, and vertical stabilizer. The flight continued and was 25-30 miles past the nearest airport when the pilot advised ATC that the airplane could not maintain altitude due to icing. ATC recommended that the pilot reverse course and divert to the airport. The pilot then turned back toward the airport. The pilot stated that the airplane remained in a shallow descent; however, he was able to maintain 80 mph airspeed. The flight broke out of the cloud layer at 4,500 feet. The pilot's outside view was obstructed by the ice covered windshield, except for a 6-inch radius semi-circle that was cleared by the airplane's windshield defroster. The flight continued toward the airport; however, it encountered rising terrain, and subsequently, the airplane impacted the ground. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2002_FTW02LA101.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, imc). 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 ↗