CEN22LA362
2022-07-30 · Longmont, Colorado, United States · None · 1 aircraft · Status: Completed
Airport LMO
Current FAA registration · N6587E
- Make / Model
- CESSNA 172N
- Year of manufacture
- 1978 · 44 years old at event
- Engine
- LYCOMING 0-320 SERIES (180 hp)
- Seats / Engines
- 4 seats · 1 engine
- Last airworthiness date
- 19781222
- ADS-B equipped
- Yes — Mode-S A8ADC4
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
The flight instructor’s failure to properly supervise the student pilot, which resulted in a continued unstablized approach for landing, and the instructor’s delayed recovery that resulted in a loss of control and impact with terrain.
Factual narrative
On July 30, 2022, at 0911 mountain daylight time, a Cessna 172N, N6587E, sustained substantial damage when it was in involved in an accident near Broomfield, Colorado. The flight instructor and student pilot were uninjured. The airplane was operated as a Title 14 Code of Federal Regulations Part 91 instructional flight. The flight instructor stated that during the fifth touch-and-go landing, the student pilot’s landing approach was unstable. While the airplane was 20 ft above the runway, the airplane’s right main landing gear wheel was about 5 ft from the runway edge. The instructor told the student pilot to go around. The student pilot applied full engine power, but there was no “major increase of thrust from the engine.” The flight instructor then took the controls from the student. He said the airplane climbed very slowly out of ground effect and the flaps were at 40°. He retracted flaps, one notch at a time, and knew that upon incrementally retracting flaps, the airplane would sink to the ground. The instructor stated that he retracted flaps to 20° to reduce drag, but the airplane sank and was not accelerating with full engine power. The airplane then impacted the grass/ditch area on the left side of runway 29. The airplane sustained substantial damage to the left and right wings. The flight instructor stated he believed that the engine was not producing full power. Postaccident examination of the airframe revealed no mechanical anomalies that would have precluded normal operation. Postaccident engine testing revealed that the engine met the engine manufacturer’s test specifications. The flight instructor stated that the approach during the student’s fifth landing became unstable. The airplane was near the runway edge when the instructor told the student pilot to initiate a go-around. The instructor said that full engine power was applied, but there was no major increase in thrust. The flight instructor then took the controls from the student but was unable to regain control of the airplane. The airplane then impacted the ground alongside the runway and sustained substantial damage to the wings. Postaccident examination of the airframe and testing of the engine revealed no mechanical anomalies that would have resulted in the engine not producing full power. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
FAA avdata. C = Cause, F = Factor.
- — Aircraft-Aircraft oper/perf/capability-Performance/control parameters-(general)-Not attained/maintained
- — Personnel issues-Action/decision-Info processing/decision-(general)-Instructor/check pilot
- — Personnel issues-Action/decision-Action-Lack of action-Instructor/check pilot
- — Personnel issues-Action/decision-Action-Delayed action-Instructor/check pilot
Verbatim from NTSB's published report. Source file
NTSB_2022_CEN22LA362.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 (loss of control, go-around). All research papers
- Embry-Riddle Scholarly Commons 2025 · Journal article (JAAER) A Scoping Review of Aviation Loss of Control Inflight Research
Loss of control – inflight (LOC-I) contributes to aircraft accidents at unacceptably high rates. Significant industry efforts and research have aimed to improve LOC-I prevention, detection, and recove…
- NASA NTRS 2025 · Conference Paper A Training Study to Improve Monitoring During A Go-Around
As part of an FAA program to improve go-around (GA) safety, we were asked to determine if we could improve the performance of the Pilot Monitoring (PM) during a GA maneuver.
- Flight Safety Foundation 2024 · FSF / AeroSafety World Go-Around Safety Forum Findings
Foundation Go-Around Safety Forum technical findings — examines why pilots fail to execute go-arounds when criteria are met (stabilized approach gate not met, energy state out of envelope, traffic con…
- SKYbrary (Eurocontrol) 2024 · SKYbrary article Loss of Control In-Flight (LOC-I) — SKYbrary Knowledge Base
SKYbrary comprehensive knowledge-base entry on Loss of Control In-Flight — definitions, contributing factors, accident case studies (Air France 447, Colgan 3407), and prevention strategies.
- Semantic Scholar 2024 · Article (International Conference on Networking and Services) Risk Assessment of Loss of Control In-Flight Trajectories for Urban Air Mobility Safety
In Urban Air Mobility (UAM), maintaining a minimum separation between aircraft is a safety requirement, which becomes challenging amidst congested air traffic and off-nominal conditions, such as Loss …
- Embry-Riddle Scholarly Commons 2023 · Conference paper Utilizing Deep Learning to Predict Unstabilized Approaches for General Aviation Aircraft
Unstabilized approaches pose a major hazard for general aviation aircraft. In the period from 2009 to 2019, 3,257 general aviation accidents occurred during the landing phase of flight in which loss o…