NTSB CAROL · Event
Event ATL05LA156
Registry · N5213M
FAA Aircraft Registry record.
Make / Model
CESSNA 172S
Year of manufacture
2002 · 3 years old at event
Engine
LYCOMING IO-360-L2A (180 hp)
Seats / Engines
4 seats · 1 engine
Last airworthiness date
20020711
ADS-B equipped
Yes — Mode-S A68F72
Registrant of record
FLIGHT TRAINING AIRCRAFT LLC
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
A loss of engine power for undetermined reasons.
Factual narrative
On August 31, 2005, at 1815 eastern daylight time, a Cessna 172S, N5213M, registered to RAMZ Enterprises Inc., operated by Airborne Systems as a 14 CFR Part 91 instructional flight, made a forced landing on initial takeoff climb in the vicinity of Opa Locka West Airport, Opa Locka, Florida. Visual meteorological conditions prevailed and no flight plan was filed. The airplane received substantial damage. The student pilot reported no injuries. The flight originated from Opa Locka West Airport at 1815 on August 31, 2005. The student pilot stated he departed Fort Lauderdale Executive Airport at 1715 with a full load of fuel and flew to Opa Locka West Airport. He entered closed traffic, and completed about 6 touch and go landings to runway 09 before the accident. He had just made a touch and go landing and was between 50 to 100 feet AGL on initial climb out when the engine sputtered and lost power. The pilot lowered the nose and made a forced landing on the runway. There was insufficient runway remaining to stop the airplane. The airplane went off the end of the runway about 150 feet, encountered a 3 foot drop off, collapsed the nose wheel, and came to a complete stop. The student pilot exited the airplane unassisted and with out injury. Further examination of the airplane revealed the firewall was buckled. The left and right wings were removed and 40 gallons of 100-low lead fuel was drained from the fuel tanks. The fuel strainer was drained and there was no evidence of fuel contamination. The fuel lines from the wing fuselage juncture to the fuel strainer revealed no evidence of blockage, and the fuel screens were free of contamination. Damage to the engine was confined to crushing of the air induction box and paper filter. The engine assembly was removed and transported to an authorized repair facility for an examination. The engine was mounted in a test stand and an alternate fuel, battery source, and electric fuel pump was attached. A test club propeller, engine controls, and a magneto grounding wires were installed. The engine was started and ran through multiple cycles from idle power to full power. The engine idled smoothly between 550 to 650 rpm and exhibited 25 rpm rise when the mixture was cut off. After the engine warmed up, the throttle was advanced to 2,000 rpm and a magneto check was completed. The throttle was advanced to full power and back to the idle position. The engine was shut down with the mixture control. The student pilot stated he had just completed a touch and go landing and was between 50 to 100 feet AGL on initial climb out when the engine sputtered and lost power. He lowered the nose and made a forced landing on the runway. There was insufficient runway remaining to stop the airplane. The airplane went off the end of the runway about 150 feet, encountered a 3 foot drop off, collapsed the nose wheel, and came to a complete stop. Forty gallons of 100-low lead fuel was drained from the fuel tanks. The fuel strainer was drained and there was no evidence of fuel contamination. The fuel lines from the wing fuselage juncture to the fuel strainer revealed no evidence of blockage, and the fuel screens were free of contamination. The engine assembly was removed and transported to an authorized repair facility for an examination. The engine was mounted in a test stand and an alternate fuel, battery source, and electric fuel pump was attached. A test club propeller, engine controls, and a magneto grounding wires were installed. The engine was started and ran through multiple cycles from idle power to full power. The engine idled smoothly between 550 to 650 rpm and exhibited 25 rpm rise when the when the mixture was cut off. After the engine warmed up, the throttle was advanced to 2,000 rpm and a magneto check was completed. The throttle was advanced to full power and back to the idle position. The engine was shut down with the mixture control. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2005_ATL05LA156.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 (stall, fuel contamination). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
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Computational Analysis of Steady State Aerodynamics of Transonic Truss-Braced Wing Configuration in Deep Stall
This study presents a computational investigation of steady state aerodynamics of the Subsonic Ultra-Green Aircraft Research (SUGAR) Transonic Truss-Braced Wing (TTBW) configuration over a wide range …
- arXiv 2023 · arXiv preprint
Automating Bird Diverter Installation through Multi-Aerial Robots and Signal Temporal Logic Specifications
This paper tackles the task assignment and trajectory generation problem for bird diverter installation using a fleet of multi-rotors.
- arXiv 2023 · arXiv preprint
Variation of Critical Crystallization Pressure for the Formation of Square Ice in Graphene Nanocapillaries
Two-dimensional square ice in graphene nanocapillaries at room temperature is a fascinating phenomenon and has been confirmed experimentally.
- arXiv 2023 · arXiv preprint
Polycrystallinity enhances stress build-up around ice
Damage caused by freezing wet, porous materials is a widespread problem, but is hard to predict or control. Here, we show that polycrystallinity makes a great difference to the stress build-up process…
- arXiv 2022 · arXiv preprint
Enhanced Prediction of Three-dimensional Finite Iced Wing Separated Flow Near Stall
Icing on three-dimensional wings causes severe flow separation near stall. Standard improved delayed detached eddy simulation (IDDES) is unable to correctly predict the separating reattaching flow due…
- Embry-Riddle Scholarly Commons 2021 · Journal article (JAAER)
Analysis on the Negative Emotional, Physiological, and Cognitive Responses Elicited from of the Activation of a Stall Alarm
Failing to identify an aerodynamic stall can lead to the inability of an aircraft to sustain flight. To warn pilots of an impending or fully-developed stall, many aircraft have safety devices installe…
Browse the full corpus — academia portal ↗