NTSB CAROL · Event
Event LAX07CA152
Aircraft involved
Probable cause & findings
The pilot's failure to maintain an adequate airspeed during an aborted landing that resulted in a stall/mush.
Factual narrative
On May 5, 2006, about 1135 Pacific daylight time, a Stinson 108, N97648, collided with terrain during an aborted landing at Auburn Municipal Airport (AUN), Auburn, California. The pilot was operating the airplane under the provisions of 14 CFR Part 91. The private pilot and one passenger were not injured; the airplane sustained substantial damage. The local personal flight departed Auburn about 1100. Visual meteorological conditions prevailed, and no flight plan had been filed. The pilot stated in a written report that prior to departing he had spent an hour observing local wind conditions and air traffic. He conducted a preflight examination of the airplane, and adjusted air in all of the tires. He reported that there were 22 gallons of useable fuel on board. The pilot planned on conducting a 30-minute flight. Prior to departure, the wind was 6 knots out of the north gusting to 12 knots. He proceeded to taxi to runway 25 for departure, but observed the winds shifting, and elected to turn around for a departure from runway 7. After departing in a westerly direction and clearing Auburn airspace, the pilot decided to return to the airport. He entered a left traffic pattern for runway 7. During this time, he monitored the windsock, and noted winds varying from a left quartering headwind to a direct left crosswind. He then checked the automated weather observation system (AWOS), which was reporting variable winds from the north at 9 knots, gusting to 16 knots. Upon touchdown, the pilot experienced a strong gust from the north, and applied full power with the intention of aborting the landing. The airplane then stalled, and landed hard between the runway and parallel taxiway, spreading the main landing gear and bending the airframe structure behind the cabin. The pilot stated that the airplane and engine had no mechanical failures or malfunctions during the flight. A witness, who is a flight instructor, observed the accident from the ramp south of runway 7. He had just cancelled a tail wheel flight lesson 10 minutes prior due to excessive crosswinds. He was facing away from the runway, but turned around as he heard the power applied to the accident airplane. As he turned, he saw the airplane approaching him, nose up at an altitude of 15-20 feet. The nose continued to climb, and he feared it might stall. The right wing then dropped, and the tail and right landing gear collided with the ground. The airplane continued to skid along the ground until it came to rest between the runway and taxiway. The airplane collided with terrain during an aborted landing. The pilot observed weather and airport traffic for an hour before departing. He planned on conducting a 30-minute local flight. When he returned to the airport and was in the traffic pattern, he observed the windsock, and noted varying crosswind and quartering headwind conditions; these were confirmed to be 9 knots gusting to 16 knots when he then checked the automated weather observation system (AWOS). Upon touchdown, the pilot experienced a strong gust from the north, and he applied full power with the intention of aborting the landing. The airplane lifted off and began a climb, then stalled, and landed hard between the runway and parallel taxiway, spreading the main landing gear and bending the airframe structure behind the cabin. The pilot stated that the airplane and engine had no mechanical failures or malfunctions during the flight. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2007_LAX07CA152.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). 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 · Conference Paper
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…
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