Cessna 208B N877FE
14 July 2022 · Salt Lake City, Utah, United States · Minor injuries
Summary
On 14 July 2022 at about 00:52 local time, a Cessna 208B registered N877FE, operated by Corporate Air, was involved in an accident near Salt Lake City, Utah, United States. One person was on board and one had minor injuries. The aircraft was substantially damaged. The NTSB has published a probable cause for this accident; it is quoted in full below.
The record
- Date
- at 00:52
- Classification
- Accident
- Location
- Salt Lake City, Utah, United States
- Nearest airport
- Salt Lake City Intl (SLC)
- Coordinates
- 40.7884, -111.9778
- Aircraft
- Cessna 208B
- Registration
- N877FE
- Category
- Airplane
- Year built
- 1990
- Engines
- 1
- Operator
- Corporate Air
- Operating rule
- Part 135: Air Taxi & Commuter
- Purpose of flight
- Business
- Phase of flight
- Not recorded
- Route
- Hailey → Unknown
- Aircraft damage
- Substantial
- Weather
- VMC
- Light
- Day
- NTSB number
- WPR22LA251
People
1 person had minor injuries.
| On board | Died | Serious | Minor | Uninjured |
|---|---|---|---|---|
| 1 | 0 | 0 | 1 | 0 |
Probable cause
The pilot’s inability to maintain control of the airplane when it encountered a microburst during a landing attempt and a go-around near known thunderstorm activity. Contributing to the accident was an inadequate amount of wind sensors and wind shear detection equipment used by the ATC tower to detect microburst activity at the airport.
Quoted verbatim from the NTSB record. This site does not paraphrase or interpret it.
Read the full NTSB narrative
The pilot of the cargo flight was aware of thunderstorms west of the destination airport, but he did not use onboard radar during the flight to track the progress of the thunderstorms. Shortly after the pilot checked in on the airport’s air traffic control (ATC) frequency, the controller made a transmission to all aircraft on the frequency to expect light-to-moderate precipitation when abeam the airport. The controller then made another transmission to all aircraft on the frequency about a pilot report (PIREP) regarding a windshear gain of 20 knots on an 8- to 9-mile final approach. The airplane was cleared for a visual approach, and the pilot was instructed to follow and land after a Boeing 757. The pilot reported that he encountered a left quartering headwind while on final approach. The pilot also reported that while the airplane was in the landing flare, the tower reported that the Boeing 757 had encountered windshear while landing. Shortly thereafter, the airplane, while still airborne, started drifting sideways across the runway. The pilot then initiated a go-around because he was unable to maintain directional control of the airplane due to the wind. After adding power and climbing to about 30 ft above ground level (agl), the pilot lowered the left wing to stop the airplane from drifting off the runway centerline. He encountered a “downdraft” that caused the airplane to descend and impact terrain, resulting in substantial damage to the wings and fuselage. Thunderstorms were forecast for the airport in several different weather forecast products, to include terminal aerodrome forecast (TAF), graphical forecast for aviation (GFA), and a convective Significant Meteorological Information (SIGMET). A convective SIGMET was issued after the pilot had departed and was valid for the accident site. The convective SIGMET forecast an area of thunderstorms with little movement and with cloud tops above flight level 450. A convective SIGMET implies the potential for wind shear, lightning, severe turbulence, among other things. This aviation forecast information was consistent with the weather conditions that the accident flight encountered. Upper air weather information for the destination airport about the time of the accident indicated an unstable environment from the surface to 25,000 ft. The Automated Surface Observing System (ASOS) located about 5,000 ft south-southeast of the accident site, about 2 minutes after the accident, reported the windspeed was 29 knots gusting to 48 knots with thunderstorms and light rain. Video imagery a few minutes before and through the time of the accident revealed that virga was descending toward the airport with gusting winds and rain. Microbursts can be found in and beneath convective clouds and can be embedded in heavy rain or virga. Video showed that a microburst encountered the ground about 2 minutes before the airplane landed with gusting surface winds and associated rainfall moving toward the landing runway. The National Weather Service issued three airport weather warnings that were valid at the time of the accident. The first warning was for outflow wind gusts of 30 mph/26 knots or greater. The second and third warnings were for lightning within 5 miles of the airport. Although the pilot was en route to the destination airport when these warnings were issued and would thus not have known about them, the pilot could have had better situational awareness of convective activity along and near the route of flight if he had operated the airplane’s onboard weather radar. The investigation determined that ATC tower at the airport used only the center field/airport wind sensor information for wind information (to be distributed to pilots) and runway configuration. About the time of the accident, the wind sensor that SLC ATC tower used reported a wind gust of 16 knots, whereas the airport’s ASOS was reporting wind between 25 and 29 knots with gusts to 48 knots. The ATC tower wind sensor did not report a wind gust above 25 knots near the accident time, and neither of the airport’s windshear display systems indicated a microburst alert until about 10 minutes after the accident. The circumstances of this accident showed that dangerous weather conditions can impact arriving and departing aircraft operating on the southern part of the airport. Additional wind sensors, if properly positioned on and around the airport and runways, could have identified the microburst activity in enough time for the controller to have provided the information to the pilot before the attempted landing. Wind information from only one sensor would not allow the comparison of wind from other sensors and provide information from the departure and approach ends of the runways.
Quoted verbatim from the NTSB record.
Other Cessna 208 accidents
| Date | Aircraft | Location | Operator | Outcome | Died |
|---|---|---|---|---|---|
| 28 Feb 2022 | Cessna 208B | Campbellton, Texas, United States | Revolution Flight | No injuries | - |
| 10 Sep 2022 | Cessna 208B | Oriximina, Brazil | - | Fatal | 1 |
| 26 Jun 2022 | Cessna 208 | Elfin Cove, Alaska, United States | Kalinin Partners LLC | No injuries | - |
| 11 May 2022 | Cessna 208 | Boituva, Brazil | - | Fatal | 2 |
| 18 Mar 2022 | Cessna 208B | Grapevine, Texas, United States | Martinaire Aviation LLC | No injuries | - |
| 30 Aug 2022 | Cessna 208B | Timika, Indonesia | - | Unknown | - |
Other accidents in this area
| Date | Aircraft | Location | Operator | Outcome | Died |
|---|---|---|---|---|---|
| 16 Apr 2022 | Robinson R44 II | Salt Lake City, Utah, United States | Utah Helicopter LLC | No injuries | - |
| 9 Jun 2022 | Rans S21 | Fairfield, Utah, United States | - | Minor injuries | - |
| 2 Mar 2022 | Six Chuter LEGEND | Toquerville, Utah, United States | - | Serious injuries | - |
| 25 Jul 2022 | Robinson R44 II | Cedar City, Utah, United States | Southern Utah University | Minor injuries | - |
| 20 Apr 2022 | Cessna 172I | Blanding, Utah, United States | - | Minor injuries | - |
| 24 Apr 2022 | Diamond DA 40 | Cedar City, Utah, United States | Platinum Aviation | Fatal | 4 |