NTSB CAROL · Event
Event ANC00LA117
Aircraft involved
Probable cause & findings
The pilot's failure to attain clearance from trees during takeoff from a touch-and-go landing. A factor associated with the accident is the pilot's failure to attain a proper touchdown point.
Factual narrative
On September 8, 2000, about 1300, Alaska daylight time, a Cessna 180 airplane, N2347C, sustained substantial damage after colliding with trees and terrain shortly after takeoff from a private airstrip near Sterling, Alaska, at 60 degrees, 32 minutes north latitude, 150 degrees, 52 minutes west longitude. The airplane is owned and operated by the pilot, and was being operated as a visual flight rules (VFR) personal/pleasure flight under the provisions of Title 14, CFR Part 91, when the accident occurred. The airline transport pilot and the one passenger were not injured. Visual meteorological conditions prevailed, and no flight plan was filed for the local flight. The flight originated from Kenai, Alaska, about 1245. In a telephone interview on January 29, 2001, the pilot reported that during a touch-and-go landing on the 1,300-foot gravel runway, the airplane touched down approximately 500-1000 feet beyond the landing threshold. Immediately after touchdown, the pilot applied power and initiated the takeoff. Shortly after becoming airborne, the airplane collided with trees and terrain approximately 50 feet beyond the departure end of the runway. The pilot reported that the airplane encountered turbulence and a downdraft shortly after departure. The airplane sustained substantial damage to both wings and the fuselage. No mechanical anomalies or failures were reported with the airplane that may have contributed to the accident. The pilot reported that she was doing a touch-and-go landing on the 1,500 feet gravel runway. Immediately after touchdown, approximately 500-1000 foot beyond the landing threshold, the pilot applied power and initiated the takeoff. Shortly after becoming airborne, the airplane collided with trees and terrain approximately 50 feet beyond the departure end of the runway. No mechanical anomalies or failures were reported with the airplane that may have contributed to the accident. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2000_ANC00LA117.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 (turbulence). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- arXiv 2026 · arXiv preprint
Direct Numerical Simulations of Ice-Ocean Boundary Turbulence
Turbulent heat and freshwater transport at ice-ocean interfaces controls glacier and iceberg melt rates, yet the underlying physics remains poorly constrained.
- Embry-Riddle Scholarly Commons 2025 · Journal article (JAAER)
Political Turbulence and Aviation Safety: A Cross-National Analysis of Political Stability's Effects on Aviation Accidents
To what extent does political stability affect aviation safety? This research aims to link domestic political conditions and public safety through the consideration of aviation accident frequency.
- arXiv 2025 · arXiv preprint
Explainable LiDAR 3D Point Cloud Segmentation and Clustering for Detecting Airplane-Generated Wind Turbulence
Wake vortices - strong, coherent air turbulences created by aircraft - pose a significant risk to aviation safety and therefore require accurate and reliable detection methods.
- arXiv 2024 · arXiv preprint
Does small-scale turbulence matter for ice growth in mixed-phase clouds?
Representing the glaciation of mixed-phase clouds in terms of the Wegener-Bergeron-Findeisen process is a challenge for many weather and climate models, which tend to overestimate this process because…
- arXiv 2023 · arXiv preprint
Effects of electrostatic interaction on clustering and collision of bidispersed inertial particles in homogeneous and isotropic turbulence
In sandstorms and thunderclouds, turbulence-induced collisions between solid particles and ice crystals lead to inevitable triboelectrification.
- SKYbrary (Eurocontrol) 2023 · SKYbrary article
Wake Vortex Turbulence — SKYbrary Knowledge Base
SKYbrary wake vortex turbulence comprehensive article — generation mechanics, dissipation factors, separation standards (ICAO LIGHT/MEDIUM/HEAVY/SUPER + recategorisation RECAT-EU).
Browse the full corpus — academia portal ↗