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Accidents · NTSB WPR18MA087 · Final report

Eurocopter EC130 accident near Peach Springs, Arizona, February 11, 2018

On February 11, 2018, a 2010 Eurocopter EC130 (helicopter), registered N155GC, was destroyed in an accident during approach near Peach Springs, Arizona (Priv airport). It was flown under charter and air-taxi rules (Part 135). 5 people were killed and 2 people were seriously injured. The weather was visual conditions (good weather).

The NTSB's probable cause their words, unchanged

A loss of tail rotor effectiveness, the pilot’s subsequent loss of helicopter control, and collision with terrain during an approach to land in gusting, tailwind conditions in an area of potential downdrafts and turbulence.

Source: NTSB aviation accident database, copy made October 5, 2026. Docket and reports at the NTSB.

What the record shows

Date
February 11, 2018
Place
Peach Springs, Arizona · Priv · map
Type
Accident
Injuries
5 people were killed and 2 people were seriously injured.
Weather
visual conditions (good weather)
Aircraft
Eurocopter EC130 B4, built 2010 · all EC130s on the register
Registration
N155GC · no longer on the register · serial 7091
Damage
Destroyed
Flight
Flight · charter and air-taxi rules (Part 135)

The NTSB's narrative final · quoted from the NTSB record

The pilot of the helicopter was conducting his third air tour flight of the day, transporting six passengers to the operator's plateau landing site, known as Quartermaster, on the south bank of the Colorado River within the Grand Canyon. He was appropriately rated for this flight and was experienced executing approaches and landings at Quartermaster. Following an uneventful flight to the area, the pilot began a descent and approach from across the river to a ravine on the west side of the landing site. The accident helicopter was the ninth of ten helicopters scheduled to land at the site that afternoon, and because all of the pads on the east side of the site were occupied, the pilot initiated a descending left turn toward a landing pad located on the west side of the site, aligning the helicopter on an east-northeasterly heading. Photographs of the landing site windsock near the time of the accident indicated winds at magnitudes of 15 kts or greater from the north-northwest, resulting in tailwind conditions during approaches to the west pads. A pilot on the ground at the landing site reported that the accident helicopter began to decelerate as it approached the landing pads and entered a nose-up attitude, then turned left toward the landing pads, transitioned through several pitch oscillations, and drifted aft. The left turn continued through 720° of rotation before the helicopter descended into a canyon just west of the landing pads and impacted terrain. Photos indicated that the helicopter’s final impact in the canyon was immediately followed by a postcrash fire. Postaccident examination of the helicopter and engine revealed no evidence of mechanical anomalies that would have precluded normal operation.   Two pilots who landed just before the accident conducted their approaches in a similar direction as the accident pilot and both later reported that they encountered adverse wind. The pilot who landed just before the accident reported that he encountered wind conditions that necessitated full right pedal and nearly resulted in a loss of yaw control. The accident helicopter’s flight characteristics at the time of the accident would have included slowing airspeed, a high power setting, and a relative wind position that were all conducive to a loss of tail rotor effectiveness (LTE), thus it is likely that the loss of control was the direct result of LTE. The landing site was located on a plateau and provided limited approach options due to its local topography. At the time of the accident, potential demarcation lines (boundaries of updrafts and downdrafts) would have been on the pinnacles of ridges located along the approach to the Quartermaster west pads. Figure 8 shows a conceptual illustration of potential demarcation lines and wind directions based on the terrain and wind environment present around the accident site at the accident time, and suggests areas where downdrafts, updrafts and turbulence could have impacted the accident flight’s approach to the landing site. Figure 8. Conceptual display of demarcation lines at accident site The proximity of other pilots and passengers who witnessed the accident resulted in an immediate response to aid the occupants of the helicopter; however, the remote location of the accident site and communication difficulties between on-scene and outside resources made rescue coordination challenging and victim transport by helicopter to the hospital did not begin until about 6 hours after the accident. Although all seven occupants survived the impact, they all sustained significant burn injuries, and three of the occupants were likely unable to egress the helicopter. The most significant factor affecting occupant survival was the immediate postcrash fire. The accident helicopter was not equipped, nor was it required to be equipped, with a crash-resistant fuel system. Due to a lack of data regarding the crash dynamics and impact forces, the effectiveness of such a system, if installed, in delaying the onset of a postcrash fire could not be determined. The only source of local wind information at Quartermaster at the time of the accident was a windsock, which can only display wind speeds up to 15 kts. Further, windsocks cannot indicate the presence of downdrafts, turbulence, or any other local environmental conditions that may affect flight safety, particularly when landing in a confined area. The operator provided its pilots with a morning weather briefing on the day of the accident, which advised of gusty wind conditions in the area of the accident site forecast to increase throughout the afternoon. Weather advisories issued after the morning weather briefing, several hours before the accident, indicated a cold front proceeding through the area of the accident site with associated wind gusts and turbulence. This information was likely not captured by the operator and distributed to its pilots even though some of the forecasts included wind conditions above the maximum wind outlined in the company's general operations manual (GOM). Because there was no additional wind information at the landing site beyond the windsock, it could not be determined the actual wind conditions at the landing site at the time of the accident; however, pilots who landed before the accident pilot estimated the wind to be 15 to 20 knots, which is below that specified in the GOM. Although the morning briefing was not intended to be the pilots' sole source of weather information, it was likely the primary weather information the accident pilot received before the accident, as he had recently flown to Quartermaster and is not likely to have rechecked the weather.

The complete narrative as the NTSB published it. The NTSB's docket holds the report as a PDF and any photographs, statements and other documents from the investigation.

The factual record from the NTSB's investigation tables, in plain English

What happened, in order

  1. Other weather encounter during approach
  2. Loss of control in flight during approach defining event
  3. Collision with terrain or object (not controlled flight into terrain) during uncontrolled descent
  4. Fire/smoke (post-impact) during post (impact)

The NTSB's findings

  • cause Personnel issues › Task performance › Use of equip/info › Aircraft control › Pilot
  • Environmental issues › Conditions/weather/phenomena › Wind › Tailwind › Effect on operation
  • Aircraft › Aircraft oper/perf/capability › Performance/control parameters › Prop/rotor parameters › Capability exceeded
  • Aircraft › Aircraft oper/perf/capability › Performance/control parameters › Yaw control › Not attained/maintained

Pilot

  • Certificate: flight instructor, commercial pilot
  • Ratings: instructor: helicopter; instructor: instrument helicopter; instrument: helicopter; rotorcraft: helicopter
  • Flight time: 2,423.1 hours in all; 1,078.6 in this make and model; 13.6 in the last 90 days; 2 in the last 30 days; 2,396.6 as pilot in command
  • Last flight review: December 21, 2017
  • Medical certificate: Class 2 (without waivers/limitations)
  • Seat: frt
  • Injury: serious injuries

The aircraft

  • Airframe total time: 9,629.1 hours
  • Last inspection: 100-hour inspection, January 25, 2018; 168 hours since
  • Maximum gross weight: 5,350 lb
  • Seats: 8
  • Landing gear: fixed
  • Engine: Turbomeca (Safran) Arriel 2B1 (turboshaft); 15,505 hours total
  • Fire on the ground
  • Operator: Papillon Airways, Inc.

The flight

  • Departed from: BVU Boulder City NV
  • Destination: QMB Peach Springs AZ

Weather at the time

  • Light: daylight
  • Wind: from 340° at 17 knots, gusting 22
  • Sky: scat at 12,000 ft
  • Temperature: 54°F (12°C), dew point 21°F (-6°C)
  • Altimeter: 29.86 inHg

Injuries

FatalSeriousMinorNone
Flight crew1
Passengers51

Documents from the investigation the NTSB's docket: the evidence folder behind the report

54 documents, released by the NTSB on December 16, 2020. View them here, or download them; the NTSB redacts some personal details before release, and this site shows the NTSB's own titles rather than its file names.

#DocumentWhat it is
1 Pilot/operator Aircraft Accident Report, NTSB Form 6120.1 PDF, 9 pages View Download
2 Excerpt from Transcript with Pilot PDF, 3 pages View Download
3 Papillon Pilot Training Documents PDF, 11 pages View Download
4 Human Performance Factual PDF, 14 pages View Download
5 Human Performance Attachment 1 - Interview Summaries PDF, 796 pages View Download
6 Human Performance Attachment 2 - Papillon Gom Excerpts PDF, 18 pages View Download
7 Human Performance Attachment 3 - Papillon SMS Manual Excerpts PDF, 3 pages View Download
8 Human Performance Attachment 4 - Papillon Training Program Excerpts PDF, 24 pages View Download
9 Operations Group Factual Report PDF, 43 pages View Download
10 Operations Group - Attachment C - Tour Operators Route Agreement PDF, 39 pages View Download
11 Operations Group - Attachment D - Papillon Training Program PDF, 154 pages View Download
12 Operations Group - Attachment E - Airbus Service Letter PDF, 4 pages View Download
13 Operations Group - Attachment F - Pilot Training Records & Resume PDF, 60 pages View Download
14 Operations Group - Attachment G - Boulder City Field Notes PDF, 17 pages View Download
15 Operations Group - Attachment H - Accident Helicopter's Flights for A Week Prior PDF, 12 pages View Download
16 Operations Group - Attachment J - Morning Briefing Sheets (3 Weeks Prior) PDF, 22 pages View Download
17 Operations Group - Attachment K - Passenger Weather Advisory Form PDF, 2 pages View Download
18 Operations Group - Attachment M - Cancellations from Weather PDF, 4 pages View Download
19 Operations Group - Attachment O - Interview Excerpts PDF, 22 pages View Download
20 Operations Group - Attachment Q - Pilot Schedules (3 Months) PDF, 4 pages View Download
21 Operations Group - Attachment X - Interviews (All) PDF, 931 pages View Download
22 Operations Group - Attachment T - Overtorques PDF, 2 pages View Download
23 Operations Group - Attachment U - Grand Canyon National Park Special Flight Rules Area (Gcnp Sfra) Procedures Manual PDF, 150 pages View Download
24 Operations Group - Attachment W- Helicopter Timeline of Entering Into Canyon PDF, 2 pages View Download
25 Operations Group - Attachment Z - Flight Track Helicopter 53 map file Download
26 Operations Group - Attachment Ze - Pilot Information Compiled PDF, 7 pages View Download
27 Meteorology Factual Report PDF, 30 pages View Download
28 Meteorology Factual Report - Attachment 1 PDF, 5 pages View Download
29 Airworthiness Factual Report PDF, 16 pages View Download
30 Airworthiness Factual Report - Attachment 1 PDF, 4 pages View Download
31 Airworthiness Factual Report - Attachment 2 PDF, 6 pages View Download
32 Materials Laboratory Factual Report 18-041 PDF, 5 pages View Download
33 Airbus Helicopters Safety Information Notice 3297-S-00 PDF, 5 pages View Download
34 Airbus Helicopters Information Notice 3539-I-00 PDF, 3 pages View Download
35 UAS Aerial Imagery - Attachment 1- Image PDF, 1 page View Download
36 UAS - Aerial Imagery Factual Report PDF, 17 pages View Download
37 UAS Aerial Imagery - Attachment 2 - Image PDF, 1 page View Download
38 UAS Aerial Imagery-attachment 3-ORTHOMOSAIC (Google Earth File) map file Download
39 UAS Aerial Imagery-attachment 4-IMAGE (Pano) picture View Download
40 UAS Aerial Imagery-attachment 5-IMAGE (Pano) picture View Download
41 Survival Factors 6 - Specialist's Factual Report PDF, 25 pages View Download
42 Survival Factors 6 - Attachment 1 - Papillon Passenger Safety Video M4V file Download
43 Survival Factors 6 - Attachment 2 - Injury Chart PDF, 2 pages View Download
44 Survival Factors 6 - Attachment 3 - Interviews and Statements PDF, 24 pages View Download
45 Survival Factors 6 - Attachment 4 - Sar Timeline PDF, 5 pages View Download
46 Aircraft Performance Memorandum PDF, 58 pages View Download
47 Aircraft Performance Memorandum #2 - radar Data PDF, 7 pages View Download
48 _raw Archive Weather Data from 1G4 (One-minute Observations), Las, Bvu and the Papillon and Sundance Weather Stations zip file Download
49 E-mail Correspondence with Operator PDF, 13 pages View Download
50 Demarcation Line Research PDF, 3 pages View Download
51 Additional Training Documents from Operator PDF, 11 pages View Download
52 Statement of Party Representatives to NTSB Investigation PDF, 1 page View Download
53 Release of Aircraft Wreckage, NTSB Form 6120.15 PDF, 2 pages View Download
54 Federal Aviation Administration Passenger Toxicology Reports PDF, 4 pages View Download

The same docket at the NTSB · documents without a copy here are fetched from the NTSB when you open them.

Everything on this page comes from the NTSB's public records. The narrative, probable cause and findings are the NTSB's own words; the coded tables behind the report are written out in plain English, with pilots' ages, home towns and medical details left out. The documents and photographs are the NTSB's docket, shown as the NTSB released them. This site's own text never names anyone involved. A preliminary report can change; the final report usually follows one to two years later, and the page is refreshed when it does.