NTSB: Undetectable Flight Control Malfunction Cause Of Jetliner Runway Excursion | Aero-News Network
Aero-News Network
RSS icon RSS feed
podcast icon MP3 podcast
Subscribe Aero-News e-mail Newsletter Subscribe

Airborne Unlimited -- Most Recent Daily Episodes

Episode Date

Airborne-Monday

Airborne-Tuesday

Airborne-Wednesday Airborne-Thursday

Airborne-Friday

Airborne On YouTube

Airborne-Unlimited-04.22.24

Airborne-Unlimited-04.16.24

Airborne-FlightTraining-04.17.24 Airborne-AffordableFlyers-04.18.24

Airborne-Unlimited-04.19.24

Join Us At 0900ET, Friday, 4/10, for the LIVE Morning Brief.
Watch It LIVE at
www.airborne-live.net

Tue, Mar 12, 2019

NTSB: Undetectable Flight Control Malfunction Cause Of Jetliner Runway Excursion

Flight Crew’s Actions Praised

An MD-83 airplane ran off the end of the runway during a rejected takeoff March 8, 2017, because of an undetected mechanical malfunction, according to a recently-released report from the NTSB.

Seconds after reaching the takeoff decision airspeed of 158 mph at about 5,000 feet down a 7,500-foot runway in Ypsilanti, Michigan, the captain’s attempt to raise the nose and get the plane airborne was unsuccessful and he called “abort.” The airplane decelerated following the rejected takeoff but was traveling too fast to be stopped on the remaining runway.  It departed the end of the runway at about 115 mph, traveled 950 feet across a runway safety area, struck an airport fence and came to a rest after crossing a paved road.

Investigators determined that a component of the elevator flight control system had jammed in the days before the accident flight while the aircraft was parked at Ypsilanti Airport during a wind storm with recorded gusts in excess of 60 mph.  Although the flight control system was designed and certified to withstand such horizontal gusts, computer simulation of the wind flow showed that a nearby hangar generated localized turbulence with a vertical component that could move the elevator rapidly up and down, ultimately causing it to jam.

The flight crew completed all preflight checks, including a test of the flight controls, and found no anomalies before initiating the takeoff roll on the accident flight.  The NTSB said that there was no way that the pilots could have detected the flight control jam until it was too late.

“This is the kind of extreme scenario that most pilots never encounter – discovering that their plane won’t fly only after they know they won’t be able to stop it on the available runway,” said NTSB Chairman Robert L. Sumwalt. “These two pilots did everything right after things started to go very wrong.”

Investigators said that the captain’s quick decision to abort the takeoff and the other crewmember’s coordinated efforts to assist him had likely contributed to the survivability of an accident in which there were no serious injuries among the 110 passengers and six crewmembers. The Ameristar Charters Boeing MD-83, which was transporting the University of Michigan basketball team to Washington, D.C., was substantially damaged.

The NTSB also noted that the 1,000-foot runway safety area – added to Ypsilanti airport during upgrades between 2006 and 2009 – likely contributed to the lack of serious injuries.  In 1999, in response to an NTSB recommendation, the Federal Aviation Administration began a national program to add runway safety areas to many commercial airports.

“The addition of runway safety areas at many airports are a real success story in commercial aviation, as demonstrated in Ypsilanti” said Sumwalt.  “RSAs across the nation have mitigated accidents, prevented injuries and saved lives.”

(Image provided with NTSB news release. This figure is a vertical cross-section visualization of wind simulation results showing flow pattern and horizontal “U” and vertical “W” wind magnitudes near the accident airplane’s elevators)

FMI: www.ntsb.gov

Advertisement

More News

Airborne 04.16.24: RV Update, Affordable Flying Expo, Diamond Lil

Also: B-29 Superfortress Reunion, FAA Wants Controllers, Spirit Airlines Pulls Back, Gogo Galileo Van's Aircraft posted a short video recapping the goings-on around their reorganiz>[...]

ANN's Daily Aero-Term (04.20.24): Light Gun

Light Gun A handheld directional light signaling device which emits a brilliant narrow beam of white, green, or red light as selected by the tower controller. The color and type of>[...]

Aero-News: Quote of the Day (04.20.24)

"The journey to this achievement started nearly a decade ago when a freshly commissioned Gentry, driven by a fascination with new technologies and a desire to contribute significan>[...]

Aero-News: Quote of the Day (04.21.24)

"Our driven and innovative team of military and civilian Airmen delivers combat power daily, ensuring our nation is ready today and tomorrow." Source: General Duke Richardson, AFMC>[...]

ANN's Daily Aero-Term (04.21.24): Aircraft Conflict

Aircraft Conflict Predicted conflict, within EDST of two aircraft, or between aircraft and airspace. A Red alert is used for conflicts when the predicted minimum separation is 5 na>[...]

blog comments powered by Disqus



Advertisement

Advertisement

Podcasts

Advertisement

© 2007 - 2024 Web Development & Design by Pauli Systems, LC