NYC00LA120
2000-04-23 · LANCASTER, Ohio, United States · Minor · 1 aircraft · Status: Completed
Airport LHQ
Aircraft involved
Probable cause & findings
The pilot's improper recovery from a bounced landing. A factor in the accident was the pilot's decision to operate the airplane over the maximum gross weight and his improper landing flare.
Factual narrative
On April 23, 2000, about 1150 Eastern Daylight Time, a Cessna 150, N66430, was substantially damage during takeoff from the Fairfield County Airport, Lancaster, Ohio. The certificated private pilot and passenger received minor injuries. Visual meteorological conditions prevailed for the personal local flight. No flight plan had been filed, and the flight was conducted under 14 CFR Part 91. According to a witness, the airplane became airborne about halfway down Runway 10; it reached an altitude of 10 to 20 feet; and then descended to 5 feet. At this point, some hangars blocked the witness's view, and he thought the pilot had aborted the takeoff. The witness then spotted the airplane about 20 feet above the runway, and watched it start another descent. The witness heard the pilot declare an emergency over UNICOM, and saw the airplane execute a 180-degree turn. He then watched the airplane contacted the ground, bounce back into the air 20 to 30 feet, and contact the ground a second time before nosing over. According to a Federal Aviation Administration (FAA) Inspector, the pilot stated he experienced no mechanical failures or malfunctions with the airplane. At the accident site, another FAA Inspector verified with the pilot and passenger the following numbers; pilot's weight 250 pounds, passenger's weight 220 pounds, fuel onboard 30 gallons, and an airplane basic weight of 1,107 pounds. The combined weights equaled 1,768 pounds, about 168 pounds over the maximum gross weight of the airplane. During a subsequent interview, the pilot stated that the above numbers were incorrect. Adding that he actually weighted 220 pounds, his passenger actually weighted 205 pounds, and that the airplane had 19 gallons of fuel onboard at the time of the accident. Using the new numbers, the original Inspector determined the airplane's weight as 1,700 pounds, about 100 pounds over the maximum gross weight of the airplane. In an interview conducted by a safety board investigator, the pilot stated that he preflighted the airplane, boarded his passengers, and started the engine on the first attempt. He then taxied the airplane onto the runway, held the brakes, and advanced the throttle. The engine responded, and rpm stabilized around 2,500. The pilot released the brakes, and the airplane accelerated "normally." At 70 mph and approximately 1,000 feet down the runway, the pilot applied back pressure to the yoke, and the airplane began to climb at 200 feet per minute. Approximately 3,500 feet past the point the airplane became airborne, the pilot felt he had insufficient engine power to continue departure. The pilot added that the engine noise remained constant from takeoff, but the airspeed was decreasing. He also added that when he was 1,000 feet agl and approximately 250 feet north of Runway 10, he noticed that the power available was less than the power required for the departure. The pilot was then asked why he did not return and land on Runway 10, if he was at 1,000 feet agl with an operating engine. He had no response. The pilot reported no mechanical problems with either the engine or the airframe. At 1153 an automated weather facility located at the airport recorded the following: wind 080 degrees magnetic at 5 knots, 10 mile visibility, clear, temperature 55 degrees Fahrenheit, dew point 46 degrees Fahrenheit, and an altimeter of 29.93 inches of mercury. The pilot experienced decreasing airspeed during takeoff climb, and he elected to return to land. The aircraft landed hard, bounced, and nosed over. According to the pilot he lifted off at 70 mph about 1,000 feet down the runway. The pilot reported the climb rate was 200 feet per minute. About 3,500 feet from the lift off point, he felt he had insufficient engine power to continue the departure. The pilot added that the engine noise remained constant from takeoff, but the airspeed was decreasing. He also added that when he was 1,000 feet above the ground, he noticed that the power available was less than what was needed for the departure. The pilot was then asked why he did not return and land on the runway, if he was at 1,000 feet agl with an operating engine. He had no response. The pilot reported no mechanical problems with the aircraft. According to a witness, the airplane became airborne about halfway down the runway; reached an altitude of 10 to 20 feet; and then descended to 5 feet and outside his view behind hangars. The aircraft reappeared about 20 feet above the runway, and he watched it start another descent. The witness heard the pilot declare an emergency over UNICOM, and saw the airplane execute a 180-degree turn. He then watched the airplane contacted the ground, bounce back into the air 20 to 30 feet, and contact the ground a second time before nosing over. Source: NTSB Aviation Accident Database (Pre-2008 Archive) Retrieved: 2026-02-12
Verbatim from NTSB's published report. Source file
NTSB_2000_NYC00LA120.txt.
Findings + structured fields enriched from FAA avall.mdb.
Full investigation docket on
data.ntsb.gov ↗.
Search this event elsewhere
External sources are reported, not agency: signal that something happened, not fact about what happened.
- TallyAero Live Wire Aviation press
- NTSB CAROL Agency ↗
- NTSB Docket Agency ↗
- Aviation Safety Network Aviation press ↗
- Kathryn's Report Aviation press ↗
- Aviation Herald Aviation press ↗
- AVweb Aviation press ↗
- Pilots of America Community ↗
- Reddit /r/flying Community ↗
- FlightAware Aviation press ↗
- AOPA accident database Aviation press ↗
- Google News News ↗
- DuckDuckGo News ↗
Related research
Matched on aircraft type. All research papers
- arXiv 2025 · arXiv preprint Visual Heading Prediction for Autonomous Aerial Vehicles
The integration of Unmanned Aerial Vehicles (UAVs) and Unmanned Ground Vehicles (UGVs) is increasingly central to the development of intelligent autonomous systems for applications such as search and …
- arXiv 2025 · arXiv preprint FalconWing: An Ultra-Light Indoor Fixed-Wing UAV Platform for Vision-Based Autonomy
We introduce FalconWing, an ultra-light (150 g) indoor fixed-wing UAV platform for vision-based autonomy. Controlled indoor environment enables year-round repeatable UAV experiment but imposes strict …
- arXiv 2024 · arXiv preprint Enhanced Equivalent Circuit Model for High Current Discharge of Lithium-Ion Batteries with Application to Electric Vertical Takeoff and Landing Aircraft
Conventional battery equivalent circuit models (ECMs) have limited capability to predict performance at high discharge rates, where lithium depleted regions may develop and cause a sudden exponential …
- Embry-Riddle Scholarly Commons 2024 · Conference paper A Double Taboo? An Exploratory Study of Mental Health Perceptions amongst Black Aerospace Professionals
This exploratory study delves into the often-overlooked realm of mental health perceptions among Black aerospace professionals, shedding light on a double taboo within a historically stigmatized indus…
- Semantic Scholar 2023 · Article (AIAA SCITECH 2023 Forum) The Impact of Multi-Stack Fuel Cell Configurations on Electrical Architecture for a Zero Emission Regional Aircraft
All-electric aircraft can eliminate greenhouse gas emissions during aircraft mission, but the low predicted energy storage density of batteries (=0.5 kWh/kg), and their life cycle, limits aircraft pay…
- Embry-Riddle Scholarly Commons 2022 · Conference paper Creating the Next Generation of Aviation Professionals: Creating Diversity in the Next Generation
Covid-19, mandatory retirement age, the 1500 Hour ATP rule and lack of future aviation professionals has lead to a global industry crisis.