Aviation Crash Map

Boeing 737-7CT N567WN

3 April 2024 · Gulf of America, United States · Serious injuries

Summary

On 3 April 2024 at about 12:23 local time, a Boeing 737-7CT registered N567WN, operated by Southwest Airlines Co, was involved in an accident near Gulf of America, United States. 145 people were on board and 2 were seriously injured, one had minor injuries. The NTSB has published a probable cause for this accident; it is quoted in full below.

The record

Date
at 12:23
Classification
Accident
Location
Gulf of America, United States
Coordinates
28.3350, -86.4328
Aircraft
Boeing 737-7CT
Registration
N567WN
Category
Airplane
Year built
2002
Engines
2
Operating rule
Part 121: Air Carrier
Phase of flight
Not recorded
Route
New Orleans → Orlando
Aircraft damage
Not recorded
Weather
VMC
Light
Day
NTSB number
DCA24FA143

People

2 people were seriously injured.

On board Died Serious Minor Uninjured
145 0 2 1 142

Probable cause

The pilot’s inadvertent encounter with convectively induced turbulence from a broken line of embedded thunderstorms moving across the region. Contributing to the accident was the failure of the air traffic controller to issue pertinent weather information along the airplane’s route of flight due, in part, to the sector over-saturation and frequency congestion caused by damaged communication equipment and the inability to split the sector to alleviate some of the traffic volume.

Quoted verbatim from the NTSB record. This site does not paraphrase or interpret it.

Read the full NTSB narrative

The initial flight plan was created to minimize the exposure to any potential turbulence and thunderstorms. While en route, the flight crew used the available resources to deviate around visible weather; however, rapid development of cloud buildups prevented them from avoiding turbulence. The flight crew attempted to notify the flight attendants (FAs) of the potential for turbulence. The FAs were completing cabin service when the captain made the announcement, but only one FA was able to secure himself in a jumpseat before the airplane entered the turbulence. One FA and one passenger were in the aft galley area during the encounter and sustained serious injuries. Another FA was in the aisle and received minor injuries. A review of National Weather Service (NWS) products confirmed the passage of a squall line north of the location of the encounter with turbulence. Radar imagery depicted extreme intensity echoes below the airplane’s flight path, with light intensity echoes reaching the airplane’s cruising altitude at the time of the encounter. The NWS issued inflight weather advisories for the potential for severe embedded convective activity and turbulence associated with those storms, but there is no evidence that the flight crew was alerted. The convective echoes, high echo tops, and very unstable airmass defined this event as a convectively induced turbulence event. Jacksonville (ZJX) Air Route Traffic Control Center (ARTCC) had adequate radar coverage over the area at the time of the encounter to identify the severe weather hazard. The Center Weather Service Unit had issued a morning weather briefing warning of a broken line of thunderstorms that was expected to cross the area. A review of the air traffic control (ATC) audio revealed that the west radar sector (R30) controller did not advise the flight crew of the precipitation ahead of them as required, likely due to the increased workload the R30 controller experienced at the time. The R30 (NEPTA) sector at the time of the accident experienced increased traffic due to sector splits at adjacent ARTCCs. In addition, a fire in 2023 at the remote communications air ground facility (RCAG) site that serviced NEPTA caused damage to equipment that was critical to the NEPTA sector communications, so a temporary mobile RCAG was provided. The temporary frequencies were low-power 10-watt transmitters with limited coverage, which caused delays in transmissions, and multiple “dead spots.” These issues increased frequency congestion on an already overloaded sector because many transmissions had to be repeated multiple times. The need for the R30 controller on duty at the time of the accident to repeat missed transmissions increased the workload on the controller and increased frequency congestion.

Quoted verbatim from the NTSB record.

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