Aviation Crash Map

Wilson William M CRICKET MC12 N2SZ

1 June 2013 · Doylestown, Pennsylvania, United States · Fatal

Summary

On 1 June 2013 at about 15:44 local time, a Wilson William M CRICKET MC12 registered N2SZ, operated by Szabo John M, was involved in an accident near Doylestown, Pennsylvania, United States. One person was on board and one died. The aircraft was substantially damaged. The NTSB has published a probable cause for this accident; it is quoted in full below.

The record

Date
at 15:44
Classification
Accident
Location
Doylestown, Pennsylvania, United States
Nearest airport
Doylestown Airport (DYL)
Coordinates
40.3308, -75.1353
Aircraft
Wilson William M CRICKET MC12
Registration
N2SZ
Category
Airplane
Engines
2
Operator
Szabo John M
Operating rule
Part 91: General Aviation
Purpose of flight
Personal
Phase of flight
Not recorded
Route
Doylestown → Doylestown
Aircraft damage
Substantial
Weather
VMC
Light
Day
NTSB number
ERA13LA263

People

1 person died.

On board Died Serious Minor Uninjured
1 1 0 0 0

Probable cause

The pilot's failure to abort the takeoff after detecting the airplane’s degraded performance. Contributing to the accident were the likely loss of power from the left engine for reasons that could not be determined during the postaccident examination of the engine, and the operation of the airplane above the design gross weight, which resulted in decreased single-engine performance.

Quoted verbatim from the NTSB record. This site does not paraphrase or interpret it.

Read the full NTSB narrative

Although the gross weight at takeoff could not be determined, the airplane was a minimum of 30 pounds above the design gross weight (375 pounds), but 15 pounds under the builder-designated gross weight. Because the airplane was an experimental amateur built airplane, the builder can waiver from the design criteria, including gross weight; however, decreased performance will likely occur. After rotation, the airplane flew several feet above the runway until about 2,100 feet down the 3,004-foot-long runway. The airplane then began a shallow climb and proceeded about ½ nautical mile west-northwest from the departure end of the runway flying at a low altitude. Two witnesses reported hearing sounds consistent with an engine(s) malfunction, while another witness located less than 200 feet from the accident site did not hear sputtering sounds. As the airplane approached a road for a forced landing with traffic ahead, it pitched up, rolled to the left, and collided with power lines then the ground. While two explosions were noted, the first likely occurred when the airplane collided with the power lines and would not have likely caused any burn injury to the pilot, while the second occurred at ground contact and was likely the result of rupture of the fuel tank, which resulted in the pilot's burn injuries. The drugs detected in the toxicology testing were consistent with those administered by medical personnel. No evidence of preimpact failure or malfunction was noted to the flight controls, and examination of the heat-damaged engines revealed good compression in each cylinder. Both propeller blades of the right propeller were fractured, consistent with the engine developing power at impact, while both propeller blades of the left propeller were not fractured, which was consistent with the engine not developing power at impact. The reason for the lack of power from the left engine could not be determined during the postaccident examination of the engine. Though it could not be determined whether the pilot intentionally remained close to the runway for more than 2/3's of its length, this would have been different from his past practices. Further, a prudent pilot would have initiated a normal climb after rotation for safety purposes. Therefore, the lack of climb performance should have been a clear indicator to the pilot to abort the takeoff, which he could have safely performed within the remaining runway distance. Accounting for environmental conditions but excluding any issue related to inefficiency of the accident airplane's engines, propellers, or airframe, the single-engine and both-engine rate-of-climb at design gross weight would have been about 160- and 960 feet per minute, respectively. No determination could be made as to the actual values for the accident airplane. The operation of the airplane above the design gross weight would have further decreased the single-engine climb performance, although the exact decrease in performance could not be determined.

Quoted verbatim from the NTSB record.

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