What: BE19 Musketeer Sport Regis#6509T
Where: LAFAYETTE Indiana, PURDUE UNIVERSITY AIRPORT
When: 01/18/2009 7:00 pm
Who: pilot Brian McMillen of North Liberty and his wife Jill
Why: sleet caused the aircraft’s windshield to ice up. The plane undershot the runway while trying to land, but the couple escaped the crash uninjured.
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Jackson Hole Taxiway Excursion

Click to view full size photo at Airliners.net
Contact photographer Klaus EckerWhat: American Airlines 757-200 en route from Chicago to Jackson Wyoming
Where: Jackson Hole Wyoming
When: December 29, 2010
Who: 171 passengers, 10 crew
Why: On landing in snowy Jackson Hole, the pilot announced the brakes were not working properly, and the plane overran the runway nose-first into what is described as a deep snowbank. Jackson Hole had 7 inches of snow overnight and light snow was falling as the plane slid 350 feet past the runway overrun. There were no reports of injury or damage. Passengers disembarked via stairway after airport crews plowed an access route. Traffic was diverted from the runway, as passengers were shuttled to the gate, and snow equipment was engaged to dig the plane out.Dust Storm Diverts Turkish Plane
What: Turkish Airlines flight TK-260 en route from Istanbul to Kayseri.
Where: Nevsehir
When: Sunday
Who: 194 passengers
Why: The plane could not land at it’s scheduled Erkilet Airport destination, because of the wind and limited visibility due to dust. The flight was rerouted to Kapadokya Airport in Nevsehir where it made an emergency landing. Passengers were bused to Kayseri.- Aviation Attorney | Crash | Falling Parts | Indonesia | lightning | Piper | weather | wind
The Mystery of Why?
Maintenance, maintenance, maintenance. I’ve said this too many times to count.
Here’s a question: The event below was a maintenance ferry flight. Every time I hear about a post maintenance ferry flight that crashed, I wonder how that maintenance was performed, and what they forgot to do. Maybe they performed maintenance perfectly—I don’t know. It’s just what strikes my mind when that ferry flight goes down. What did that maintenance crew miss? It’s too much like having a brake failure accident while bringing the family car home from the brake shop. But this accident was PRE-inspection. So maybe it is like having the brakes fail on the way to the brake shop…
On January 19, 2014, at 12:20 , a PT. Intan Angkasa Piper PA-31-350 Navajo Chieftain, PK-IWT, flying from from Sentani to Tual crashed on approach to Dumatubun Airport, Maluku, Indonesia. The pilot and three passengers were fatally injured and the airplane was destroyed.
Some reports say it was hit by lightning, but most planes are designed not to catch fire when struck by lightning; careful lightning protection has been engineered into the aircraft. The current tends to travel through the conductive aluminum exterior skin and off an extremity like a wing tip. Additional shielding protects components from haywire side effects called “lightning indirect effects” and bursting into flames is not one of those effects, except in the fuel system, where even a spark is lethal.
So, again, I question maintenance, and the integrity of the fuel system. Was the aluminum skin around the fuel system thick enough to withstand a lighting strike?
Or perhaps it was something else entirely. The flight was described as being pounded by rain and fierce winds (they had just refueled in a thunderstorm)…and the wing fell off before the plane crashed. So was it the gale force winds that caused the wing to come off? Inquiring minds want to know. As always, the investigation is key to finding out why the wing came off and the plane crashed.
Those aboard were a pilot, a technician and two airline employees.
Sri Lankan Air Force Plane Crashed in Hokandara; 4 Dead, 1 Injured
A Sri Lankan Air Force plane crashed in Hokandara, at around 6:15 a.m. on December 12.The Antonov-32 aircraft was heading from Bandaranaike International Airport to Ratmalana airport when it crashed into a rubber estate in Wanaguru Mawatha.
Atleast 4 people were killed in the accident while another was shifted to Sri Jayawardenapura Hospital with burn injuries. Authorities said he was later transferred to the General Hospital considering the seriousness of his injuries.
Air force spokesperson Wing Commander Gihan seneviratne confirmed the accident saying that in his last communication with the control tower, the pilot reported that the airstrip was not visible due to bad weather.
The accident remains under investigation.
- Air Algérie | Crash | ice | Interim Report | Mali | McDonnell Douglas | Swiftair
BEA on SwiftAir Air Algeria (Burkina Faso to Algiers) Crash July 2014
Accident 24 July 2014 in Gossi, Mali to the MD-83 registered EC-LTV operated by Swiftair S.A.
Press release from the BEA and the Commission d’Enquêtes Accidents et Incidents de l’Aviation civile (Mali)
Following the publication of the Interim Report on 20 September 2014 in Bamako (Mali), investigative work has continued, based on the analysis of the accident flight parameters. Progress made in this work has led the Republic of Mali Commission of Inquiry and the BEA to communicate jointly the following information.On 24 July 2014, the MD-83 registered EC-LTV was performing scheduled night flight AH 5017 from Ouagadougou (Burkina Faso) to Algiers (Algeria). Takeoff occurred at 01h15, the climb towards the cruise altitude took place without any significant events, and the crew made several heading changes in order to fly around a storm cell. The autopilot and the autothrottle were engaged. The aeroplane reached the cruise altitude of 31,000 ft, that’s to say about 9,500 m. The autopilot then switched to the mode that maintains the altitude and the autothrottle to the mode that maintains the speed (Mach).
About two minutes after levelling off at an altitude of 31,000 ft, calculations performed by the manufacturer and validated by the investigation team indicate that the recorded EPR , the main parameter for engine power management, became erroneous on the right engine and then about 55 seconds later on the left engine. This was likely due to icing of the pressure sensors located on the engine nose cones. If the engine anti-ice protection system is activated, these pressure sensors are heated by hot air.
Analysis of the available data indicates that the crew likely did not activate the system during climb and cruise.
As a result of the icing of the pressure sensors, the erroneous information transmitted to the autothrottle meant that the latter limited the thrust delivered by the engines. Under these conditions, the thrust was insufficient to maintain cruise speed and the aeroplane slowed down. The autopilot then commanded an increase in the aeroplane’s pitch attitude in order to maintain the altitude in spite of this loss of speed.
This explains how, from the beginning of the error in measuring the EPR values, the aeroplane’s speed dropped from 290 kt to 200 kt in about 5 minutes and 35 seconds and the angle of attack increased until the aeroplane stalled.
About 20 seconds after the beginning of the aeroplane stall, the autopilot was disengaged. The aeroplane rolled suddenly to the left until it reached a bank angle of 140°, and a nose-down pitch
of 80°The recorded parameters indicate that there were no stall recovery manœuvres by
the crew.However, in the moments following the aeroplane stall, the flight control surfaces remained deflected nose-up and in a right roll.
CORRECTIVE ACTIONS
At least two similar events occurred, in June 2002 and in June 2014, with no serious consequences.
The event in June 2002 was the subject of an NTSB investigation report. On 4 June 2002, the McDonnell Douglas MD-82, registered N823NK performing Spirit Airlines flight 970, suffered a loss of thrust on both engines, in cruise at an altitude of 33,000 ft, that is about 10,000 m. The two pressure sensors, located on the engine nose bullets, were blocked by ice crystals, leading to incorrect indications and over-estimation of the EPR. The crew noticed the drop in speed and the precursor indications of a stall just before disengagement of the autopilot and putting the aeroplane into a descent. They had not activated the engine anti-ice systems. This event occurred during the day, outside the clouds.
On 8 June 2014, the MD83 registered EC-JUG belonging to Swiftair, which was performing a passenger transport flight at flight level FL 330, suffered a drop in speed while it was flying during the daytime above the cloud layer. The crew detected the problem, put the aeroplane into a descent and activated the engine anti-ice systems without reaching a stall situation, then continued the flight.
This background, as well as the data on the accident to flight AH5017, was shared with the European Aviation Safety Agency (EASA) and through EASA with the American authorities (FAA); they should serve as the basis for future publication of corrective measures aimed at assisting crews in identifying and responding to similar situations to those encountered at the time of this accident.
NEXT STEPS
The investigative work is continuing, in particular on the analysis of:
the flight parameters to complete the scenario described above,
possible crew reactions, despite the absence of Cockpit Voice Recorder data from the accident flight, which remain unusable to this day,
the training and follow-up of Swiftair crews,
previous events and the follow-up undertaken.The publication of the final report is planned before the end of December 2015.
Download Interim below:
https://airflightdisaster.com/wp-content/uploads/2015/04/ec-v140724.e1.en_.pdf
- Agusta Westland | Crash | fog | private | UK | visibility | weather
London Investigates Agusta Westland Helicopter Crash
London’s Air Accidents Investigation Branch is working the first helicopter accident in London since 1976. A review of helicopter flight regulation over the UK capital is already underway.
In low broken clouds with visibility of 2,300 feet, the AgustaWestland struck a crane on January 16 on top of the Tower at St George Wharf and fell to the street around 8 a.m.. The pilot had diverted to Battersea heliport due to bad weather.
Warning lights were on the building but not on the crane. (Crane lights had an allowed shut off around daylight.
