NTSB CAROL · Event
Event WPR22FA098
Registry · N72297
FAA Aircraft Registry record.
Make / Model
BELL UH-1H
Year of manufacture
1967 · 55 years old at event
Engine
LYCOMING T53-L-13 (1400 hp)
Seats / Engines
15 seats · 1 engine
Last airworthiness date
20100810
ADS-B equipped
Yes — Mode-S A9AEAD
Registrant of record
AMERICAN AG AVIATION INC DBA
Source: FAA Aircraft Registry (releasable master file).
Aircraft involved
Probable cause & findings
The pilot’s loss of situational awareness for reasons that could not be determined given the available evidence, which led to controlled flight into terrain. Contributing to the accident was the pilot’s decision to operate the helicopter while ill and fatigued.
Factual narrative
HISTORY OF FLIGHTOn February 16, 2022, about 2130 Pacific standard time, a Bell UH-1H helicopter, N72297, was substantially damaged when it was involved in an accident near Coalinga, California. The pilot was fatally injured. The helicopter was operated as a Title 14 Code of Federal Regulations Part 137 aerial application flight. The pilot had planned to conduct spray operations over five separate jobsites during night conditions. A ground crew supervisor and two others were supporting the operation. The ground crew operated out of two support trucks that were equipped with a radio for communicating with the pilot and had a landing pad mounted above the tanks containing fuel and chemicals. The pilot arrived at work at 1630 and subsequently departed for the first of the five planned flights. See figure 1. Figure 1. Google Earth image of the five job sites, the accident site, and the airstrip. Note: The white arrows denote the direction of travel. The red line indicates the location of large power distribution lines. The two insets show the proximity of the power distribution lines to the fourth job site and the accident site. The pilot arrived at the first job location about 1800. While at that job site, the pilot told the ground crew that the GPS was acting up. He completed operations at the first job site and then traveled about 5 miles north to the second job site. After completing operations there, the pilot traveled about 29 miles west to the third job site. He began operations at that job site but canceled the job about 2130due to increased wind, which caused difficulty lining up the helicopter to the support truck. One ground crewmember reported that the pilot became confused about the number of loads remaining at the third job site and had to be told twice about the number of loads remaining. The ground crew foreman (who was not part of the ground crew at the job sites) explained that the pilot was usually very aware of the loads left to be applied and that it was odd that a ground crewmember would have to tell the pilot that information. In addition, the ground crew supervisor reported that, while at the third job site, the pilot stated that he was cold and that the heater on the helicopter was acting up. The pilot departed and traveled west about 1 mile, overflew the fourth job site, canceled it, and directed the ground crew to go to the fifth job site. The pilot then departed the area without announcing his intentions. One ground crewmember saw the helicopter “lift off, making a passenger-side [left] turn toward the south, over the [power distribution] wires and leveling out.” The last communication with the pilot occurred about 2138 and involved the pilot questioning a ground crewmember about how he determined the wind speed at the fifth job site. About 2200, when the helicopter had not arrived at the fifth job site and the pilot did not respond to radio calls, the ground crew supervisor alerted his employer and then called 911. None of the ground crewmembers supporting the operation reported hearing a mayday call over the radio. The helicopter was found in an orchard about 0300 the next day. The wreckage was located about 9 miles southeast of the fourth job site and about 3 miles northwest of Harris Ranch Airport (3O8) Coalinga, California. According to another pilot, the accident pilot was known to land at the airport when taking breaks. The ground crew supervisor stated that it would not have been normal for the pilot to take off to the store without telling the ground crew, and for the pilot to take a load of pesticides to Harris ranch. One ground crewmember stated that the pilot did not indicate that he needed a break. A set of power distribution lines was located about 120 ft east of the accident site. The power distribution line towers were about 100 ft tall and ran generally north and south parallel to an interstate highway and alongside the fourth job site and 3O8. The power distribution lines and the towers near the accident site showed no evidence of damage. PERSONNEL INFORMATIONMultiple people reported that the pilot thought that he had contracted COVID19. A family member reported that, 2 days before the accident flight, the pilot asked questions about the symptoms of COVID-19 and went to sleep immediately after dinner. Both the pilot’s wife and an employee of his business reported that, on the day before the accident, the pilot told them that he tested positive for COVID-19. One ground crewmember reported that, when he communicated with the pilot on the night of the accident, the pilot would already be talking as he keyed the microphone and that he would release the microphone before he stopped talking. A pilot who was trained to operate the accident helicopter by the accident pilot reported that the accident pilot “insisted” that ferry flights be flown at 500 ft above ground level. This pilot also stated that, because of the power lines, the accident pilot would not have considered flying the helicopter lower than that altitude on the night of the accident. METEOROLOGICAL INFORMATIONA witness to the meteorological conditions on the night of the accident (one of the operator’s fixed-wing pilots who searched for and located the missing helicopter) reported that the moon was full and that visibility was unlimited. According to the US Naval Observatory, on the day of the accident, the sun set at 1742, and moonrise occurred at 1651. The moon phase was full with 100% of the moon’s disk illuminated. WRECKAGE AND IMPACT INFORMATIONThe helicopter came to rest on its left side in an orchard, as shown in figure 2. The orchard was at an elevation of about 385 ft mean sea level and consisted of 12-ft trees spaced about 15 ft apart. An area of disturbed ground and felled trees extended back from the helicopter about 120 ft on a magnetic bearing of 170°. The fuselage had rotated about 180°. Figure 2. Aerial view of the accident site and the power distribution lines (left side). All major components of the helicopter were observed near the accident location. The forward area of the fuselage exhibited damage consistent with a nose-low, left-bank impact. Flight control continuity was established for all flight controls to the hydraulic servos for the respective systems and from the hydraulic servos to the respective flight control surfaces. Both rotor systems exhibited damage consistent with rotation at impact. The helicopter was equipped with forward-facing LED supplemental lights. Examination of the pilot’s collective control revealed that both supplemental light switches were in the ON position. According to a pilot employed by the operator, the helicopter’s supplemental lights were used for night spraying, and the pilot would not normally use the lights for ferry flights because the lights were oriented upward and the beam would be too high for straight-and-level flight. Examination of the engine revealed that it remained secured to the engine mounts and that a section of the firewall had separated and become wrapped around the power output shaft. Tree debris and airframe wire were found between the compressor inlet guide vanes, consistent with ingestion at impact. A teardown of the engine axial compressor section at the engine manufacturer’s facility revealed that all blades exhibited hard-body impact damage and trailing-edge tip bending opposite the direction of rotation. Postaccident examination of the airframe and engine revealed no mechanical malfunctions or failures that would have precluded normal operation. The annunciator panel, master caution, rpm warning, and fire warning lights were recovered from the instrument panel. No light filaments appeared to be stretched. MEDICAL AND PATHOLOGICAL INFORMATIONThe Fresno County Sheriff–Coroner’s Office, Fresno, California, performed an autopsy on the pilot. His cause of death was head injury due to blunt impact. The pilot’s postmortem COVID-19 test was negative, and a blood sample sent to the Federal Aviation Administration (FAA) was negative for carbon monoxide. The autopsy report stated that the pilot was dressed in (among other things) two jackets, and long johns. Toxicology testing performed by the FAA Forensic Sciences Laboratory identified ethanol in the pilot’s femoral blood but not in his urine and found acetaminophen in the pilot’s subclavian blood and urine. Acetaminophen is an over-the-counter analgesic and fever reducer commonly marketed with the name Tylenol. It is generally not considered impairing. A pack of Plaquenil (hydroxychloroquine) and a bottle of ibuprofen were found at the accident site. The pilot departed the operator’s ramp for five nighttime aerial application operations. He was supported by three ground crewmembers, who described normal interactions with the pilot during the landings to the truck. About 2.5 hours later, while at the third job site, the pilot indicated that the wind had increased and that he was having difficulty lining up the helicopter with the support truck (for landing). The pilot also reported that the helicopter’s heater was not working and that he was cold, even though he was dressed for the outside conditions. The pilot also exhibited confusion and difficulty with communicating with the ground crew. The pilot subsequently canceled the third and fourth jobs, directed the ground crew to the fifth job site, and then departed the fourth jobsite with chemicals still in the helicopter’s tanks and without stating his intentions—two actions that were reportedly not typical for the pilot. The helicopter was last seen heading south above a large set of power lines that were about 100 ft high and close to the fourth job site. The last location of the helicopter was also near an airstrip that the pilot commonly used when taking breaks. The helicopter impacted terrain in a nose-low left bank. Postaccident examination of the recovered airframe and engine revealed no evidence of any mechanical anomalies that would have precluded normal operation. Before the accident, the pilot had told two family members that he had tested positive for COVID-19. Hydroxychloroquine and ibuprofen were found in the debris field, and acetaminophen was found in one of the pilot’s specimens. His postmortem COVID-19 test was negative. A low level of ethanol was detected in a single specimen from the pilot but not in two others, which indicated that the source was not from ingestion and thus was not a factor in the accident. Given the evidence of the pilot’s conversations about COVID-19, the medicines found at the accident site, and the reported change in the pilot’s normal behavior pattern as the night progressed suggested that the pilot might have reported to work ill and was experiencing worsening symptoms or fatigue. The location of the accident is consistent with the pilot deciding to fly to the airstrip with the intentions of taking a break. The full moon and clear night would have provided ample illumination for a transition to the airstrip, which was parallel with the power distribution lines in the area. Even though the pilot was likely operating the helicopter at 500 ft above ground level, the altitude that the pilot used for ferry flights, the pilot likely lost situational awareness and descended the helicopter into the terrain while enroute to the airstrip. Source: NTSB Aviation Accident Database Retrieved: 2026-02-12
NTSB Findings
Hierarchical cause / factor breakdown from the FAA bulk avdata database. Each finding tagged C (Cause) or F (Factor).
- — Personnel issues-Physical-Health/Fitness-Physical fitness-Pilot
- — Personnel issues-Task performance-Use of equip/info-Aircraft control-Pilot
Verbatim from NTSB's published report. Source file
NTSB_2022_WPR22FA098.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 (controlled flight into terrain). Sourced from NASA NTRS, NTSB Safety Studies, FAA CAMI, AOPA Air Safety Institute, Embry-Riddle Scholarly Commons, arXiv, and the Semantic Scholar academic graph.
- Flight Safety Foundation 2023 · FSF / AeroSafety World
Controlled Flight Into Terrain (CFIT) — A 2023 Industry Refresh
Foundation 2023 CFIT data refresh — three decades after the original CFIT Task Force eliminated >95% of air-carrier CFIT, the GA + Part 135 communities still account for most CFIT fatalities.
- NASA NTRS 2019 · Technical Publication (TP)
Flight Simulator Evaluation of Synthetic Vision Display Concepts to Prevent Controlled Flight Into Terrain (CFIT)
In commercial aviation, over 30-percent of all fatal accidents worldwide are categorized as Controlled Flight Into Terrain (CFIT) accidents, where a fully functioning airplane is inadvertently flown i…
- NASA NTRS 2019 · Other
Preliminary Effect of Synthetic Vision Systems Displays to Reduce Low-Visibility Loss of Control and Controlled Flight Into Terrain Accidents
An experimental investigation was conducted to study the effectiveness of Synthetic Vision Systems (SVS) flight displays as a means of eliminating Low Visibility Loss of Control (LVLOC) and Controlled…
- NASA NTRS 2019 · Technical Memorandum (TM)
Rating the Relevance of QUORUM-Selected ASRS Incident Narratives to a "Controlled Flight into Terrain" Accident
An exploratory study was conducted to identify commercial aviation incidents that are relevant to a "controlled flight into terrain" (CFIT) accident using a NASA-developed text processing method.
- Embry-Riddle Scholarly Commons 2001 · Journal article (JAAER)
Controlled Flight into Terrain: How the Airlines and the Federal Aviation Administration are Addressing the Problem
Controlled Flight into Terrain (CFIT) is not a new problem. It has been around since the beginning of manned flight. A CFIT accident occurs when an airworthy aircraft, under the control of a pilot, is…
- Embry-Riddle Scholarly Commons 2023 · Conference paper
Aircraft Energy Management: A Best Practice for Integrating Safety and Efficiency
Aircraft Energy Management: A Best Practice for Integrating Safety and Efficiency The airplane is the quintessential energy system, constantly transforming, transferring, distributing, storing, and ex…
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