NTSB CAROL · Event
Event LAX04LA112
Aircraft involved
Probable cause & findings
loss of engine power for undetermined reasons.
Factual narrative
On February 1, 2004, at 1627 Pacific standard time, a Piper PA-28-181, N4861F, collided with power lines during a forced landing following a loss of engine power at Palmdale, California. Continental Flight Center was operating the rental airplane under the provisions of 14 CFR Part 91. The commercial pilot and three passengers were not injured; the airplane sustained substantial damage. The personal cross-country flight departed Bullhead City, Arizona, about 1445 mountain standard time, en route to Agua Dulce, California. Visual meteorological conditions prevailed, and no flight plan had been filed. The pilot submitted a written report. He stated that he climbed to 4,500 feet after departure. He descended to 3,500 feet near Barstow, California. He climbed again south of Palmdale. He had just retarded the throttle to begin his descent into Agua Dulce where he planned to refuel. The engine immediately lost power, and he felt roughness and a vibration. He turned the electric fuel boost pump on, and switched fuel tanks. The engine continued to sputter. He tried to contact Palmdale's air traffic control tower, but determined that he could not make the field. He set up to land on a road. The airplane collided with power lines on the way down. The rudder separated from the airplane, but the pilot landed the airplane on the road. The nose gear separated at the curb. The right wing collided with a tree, and part of the wing separated. The airplane came to rest in a parking lot. The left fuel tank did not sustain mechanical damage, but the right tank was ruptured. The recovery agent drained about 1 quart of a blue fluid from the left tank. The National Transportation Safety Board investigator-in-charge (IIC) examined the airplane at Aircraft Recovery Service, Littlerock, California, on February 10, 2004. The fuel selector valve was on the right tank. The IIC drained about 50 milliliters of a blue fluid that smelled like aviation gasoline from the gascolator. The carburetor air box was not contaminated. The throttle and mixture controls at the carburetor were in the closed position and moved freely. The IIC removed the top spark plugs. All of the electrodes were oval and gray. The electrodes for cylinders no. 3 and 4 were lighter gray than the others. All of the gaps were similar, and none of them exhibited mechanical damage. The IIC removed the rocker covers. He manually rotated the crankshaft with the propeller. The vacuum pump and accessory gears rotated freely. He obtained thumb compression on all cylinders in firing order. He observed spark in firing order from the top ignition harness leads. The IIC removed the drain plug from the carburetor and drained about 75 milliliters of a clear, light blue fluid that smelled like aviation gasoline. The IIC installed the drain plug, rocker covers, and spark plugs. Both of the propeller blades were bent aft. A mechanic plumbed a fuel can into the fuel system. He ran the engine, which started immediately, for about 1 minute at 750 rpm. The IIC did not observe any leaks, and the engine did not hesitate, sputter, or backfire. The IIC had the mechanic shut the engine down with the mixture control due to heavy vibration from the unbalanced, damaged propeller. The airplane collided with power lines during a forced landing following a loss of engine power. After about 2 hours 40 minutes of flight, the pilot retarded the throttle to begin his descent into an airport where he planned to refuel. The engine immediately lost power, and he felt roughness and a vibration. He turned the electric fuel boost pump on, and switched fuel tanks. The engine continued to sputter. He could not make a nearby airfield, and set up to land on a road. The airplane collided with power lines on the way down and the rudder separated from the airplane. The pilot was able to land on the road and then collided with multiple obstacles during the ground roll. Examination revealed that the fuel selector valve was on the right tank. The left fuel tank did not sustain mechanical damage, but the right tank was ruptured. There was about 1 quart of fuel in the left tank. There was about 50 milliliters of fuel in the gascolator and the carburetor contained about 75 milliliters of fuel. Fuel was added to the airplane and the engine was test run using the airplane systems. The engine started immediately. There were no leaks, and the engine did not hesitate, sputter, or backfire. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2004_LAX04LA112.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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