DEN04CA096
2004-07-03 · Cheyenne, Wyoming, United States · Minor · 1 aircraft · Status: Completed
Airport CYS
Current FAA registration · N2KD
- Make / Model
- CESSNA T210J
- Year of manufacture
- 1969 · 35 years old at event
- Engine
- CONT MOTOR GTSIO-520-C (340 hp)
- Seats / Engines
- 4 seats · 1 engine
- Last airworthiness date
- 19690501
- ADS-B equipped
- Yes — Mode-S A18E36
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
the detachment of the nut and bolt that attaches the throttle control cable to the fuel induction due to improper maintenance. Contributing factors were the fiber optics wire, fence, and ditch, and the unavailability of suitable terrain on which to make a forced landing.
Factual narrative
On July 3, 2004, at 1341 mountain daylight time, a Cessna T210J, N2KD, co-registered to and operated by the pilot, was substantially damaged when it collided with a fence and drainage ditch during an off-airport forced landing at Cheyenne, Wyoming. The private pilot, the sole occupant on board, received minor injuries. Visual meteorological conditions prevailed, and no flight plan had been filed for the personal flight being operated under Title 14 CFR Part 91. The flight originated from Sycamore Strip (9F9), Fort Worth, Texas, approximately 1120 central daylight time, and was en route to Cheyenne (CYS). In a telephone interview, the pilot said that after an uneventful flight from Texas, he was cleared to land on runway 30. While on final approach, the engine lost power and he made a forced landing in a field 1-1/2 mile short of the runway. The airplane struck a fiber optics cable, then touched down in the field, went through a fence, and struck a 3-foot wide, 2-1/2-foot deep irrigation ditch. The landing gear was sheared, and the nose gear penetrated the cabin floor. The bottom half of the engine cowling was crushed, the left wing tip was torn off, the engine mounts were broken, and the vertical stabilizer was dented. A similar accounting was given in his written statement to the Federal Aviation Administration (copy attached). Post-accident examination by an FAA airworthiness inspector revealed that the bolt and nut that attaches the throttle control cable to the fuel induction was missing. Examination of the aircraft maintenance records revealed on April 1, 2004, the engine was removed from the airframe and inspected for metal contamination. Engine removal would necessitate detaching the throttle control cable from the fuel induction. The engine was reinstalled and a 100-hour/annual inspection was accomplished. The pilot said that after an uneventful flight, he was cleared to land on runway 30. While on final approach, the engine lost power and he made a forced landing in a field 1-1/2 mile short of the runway. The airplane struck a fiber optics cable, then touched down in the field, went through a fence, and struck a 3-foot wide, 2-1/2-foot deep irrigation ditch. The landing gear was sheared, and the nose gear penetrated the cabin floor. The bottom half of the engine cowling was crushed, the left wing tip was torn off, the engine mounts were broken, and the vertical stabilizer was dented. A similar accounting was given in his written statement to the Federal Aviation Administration (copy attached). Postaccident examination revealed that the bolt and nut that attaches the throttle control cable to the fuel induction was missing. Examination of the aircraft maintenance records revealed on April 1, 2004, the engine was removed from the airframe and inspected for metal contamination. Engine removal would necessitate detaching the throttle control cable from the fuel induction. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2004_DEN04CA096.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
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Related research
Matched on aircraft type or causal vocabulary (stall, maintenance). All research papers
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- Semantic Scholar 2026 · Article (Reliability Engineering & System Safety) Understanding human error in military aviation maintenance: The role of Performance shaping factors, cognitive workload and error orientation
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The implementation of predictive maintenance (PM) in aviation presents unique challenges due to strict safety requirements, complex operational environments, and regulatory constraints.
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Aircraft maintenance is a complex task involving a skilled human workforce, spare parts, and various other resources. Human factors are an inherent element of the human workforce.