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ICAO Press Release: Safety Conference

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    Fatigue or not-fatigue? That is the Question


    After the crash of the Colgan Air flight in Buffalo, the new fatigue regulations hold the promise of increased safety for commercial pilots now that they are scheduled travel time plus 8 hours of sleep time (ten hours) sandwiched between flights.

    But the fatigue regulations do not apply to cargo pilots.

    The discrepancy has to do with the expense of insurance covering the lives of hundreds of passengers vs. the lives of a couple of pilots on a cargo flight; but the NTSB isn’t buying it. Cargo pilots, many of whom fly at night, are just as likely to get fatigued as commercial pilots.

    Should cargo pilots, who fly largely at night and who don’t have to maintain the same kind of scheduling as commercial passenger airlines be entitled to the same kind of fatigue protections?

    What do you think?

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  • NTSB ASSISTS GOVERNMENT OF LEBANON IN AVIATION ACCIDENT


    NTSB Advisory
    National Transportation Safety Board
    Washington, DC 20594
    January 25, 2009

    NTSB ASSISTS GOVERNMENT OF LEBANON IN AVIATION ACCIDENT

    The National Transportation Safety Board will dispatch an aviation investigator to assist the government of Lebanon in its investigation of the crash of an Ethiopian Airlines B- 737-800 (ET-ANB) off the coast of Lebanon.

    At approximately 2:30 a.m. local time on January 25, the aircraft crashed into the Mediterranean Sea shortly after takeoff.

    NTSB Chairman Deborah A.P. Hersman has designated senior investigator Dennis Jones as the U.S. Accredited Representative. His team will include technical advisors from the Federal Aviation Administration and Boeing.

    The investigation is being conducted by the Directorate General of Civil Aviation of the Government of Lebanon, which will release all information on the progress of the investigation. The agency’s phone number in Lebanon is (961) 1 628195 and the agency’s email address is: dgca@beirutairport.gov.lb.

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    NTSB PRESS RELEASE: NTSB CITES LACK OF BIRD STRIKE RESISTANT WINDSHIELD REQUIREMENTS IN FATAL CRASH OF HELICOPTER IN LOUISIANA

    National Transportation Safety Board
    Washington, DC 20594

    FOR IMMEDIATE RELEASE: November 24, 2010
    SB-10-45

    The National Transportation Safety Board today released a
    final report on a fatal crash involving a transport-category
    helicopter caused by a bird strike. The Board said the lack
    of requirements for bird strike-resistant windshields
    contributed to the crash, and called on the FAA to develop
    such requirements.

    On January 4, 2009, a dual-engine Sikorsky S-76C++
    helicopter (N748P), registered to and operated by PHI, Inc.,
    crashed into marshy terrain near Morgan City, Louisiana
    approximately 7 minutes after takeoff from Amelie,
    Louisiana, on a charter flight to an oil rig in the Gulf of
    Mexico. Both pilots and 6 of the 7 passengers were killed
    in the crash.

    The aircraft had reached level cruise flight at 850 feet
    mean sea level and 135 knots when the cockpit voice recorder
    recorded a loud bang, followed by sounds consistent with
    rushing wind and a power reduction on both engines. The
    aircraft crashed several seconds later. Feathers and other
    bird debris were collected from the canopy and windshield of
    the aircraft. Laboratory analysis identified the remains as
    coming from a female red-tailed hawk; the average weight of
    such a bird is 2.4 pounds.

    The investigation revealed that the impact of the bird on
    the canopy just above the windshield near the engine control
    quadrant likely jarred the fire extinguisher T-handles out
    of their detents and moved them aft, pushing both engine
    control levers into or near the flight idle position,
    reducing fuel to both engines. The pilots were probably
    disoriented from the broken windshield and rushing air and
    were unable to react in time to maintain control of the
    helicopter.

    The helicopter was originally equipped with laminated glass
    windshields that complied with European bird-strike
    resistance standards. PHI replaced the windshields with
    lighter-weight, aftermarket cast acrylic windshields that
    did not have any bird-strike resistance standards.

    The NTSB determined that the helicopter crashed because of
    the sudden loss of power to both engines following the bird
    strike and the subsequent disorientation of the crewmembers.
    Contributing to the accident, the Board said, were the lack
    of FAA regulations and guidance requiring helicopter
    windshields to be resistant to bird strikes, the lack of
    protections that would prevent the T-handles from
    inadvertently dislodging out of their detents, and the lack
    of a master warning light and audible system to alert the
    flight crew of a low-rotor speed condition.

    Recommendations were issued to the FAA dealing with, among
    other things, the design of S-76C++ fire extinguisher T-
    handles and engine control quadrants, and similar designs of
    other helicopters, and of audible low-rotor alarm systems;
    certification standards for helicopter windshields; and
    simultaneous dual-engine power loss training for helicopter
    pilots.

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    NASA TV TO BROADCAST JAPANESE CARGO CRAFT FLIGHT TO SPACE STATION

    HOUSTON — NASA plans live television coverage of the launch, grapple and berthing of the second unpiloted Japanese cargo ship that will deliver more than four tons of food and supplies to the International Space Station.

    The Japan Aerospace Exploration Agency (JAXA) is scheduled to launch an H-IIB rocket from the Tanegashima Space Center in southern Japan at 12:29 a.m. CST (3:29 p.m. Japan time) on Thursday, Jan. 20. The launch vehicle will send the Kounotori2 H-II Transfer Vehicle (HTV2) orbit on a week-long rendezvous with the station. “Kounotori” is the Japanese word for white stork, emblematic of delivering happiness and joy.

    On Jan. 27, Expedition 26 Flight Engineers Cady Coleman and Paolo Nespoli will command the station’s robotic arm, Canadarm2, to reach out, grapple Kounotori2, and attach it to the Earth-facing port of the Harmony module.

    In the following days, a pallet loaded with spare station parts will be extracted from a slot in the cargo ship and attached to an experiment platform outside the Japanese Kibo module. Other cargo will be transferred internally to the station.

    The cargo vehicle will be filled with trash, detached from the station and sent to burn up in the Earth’s atmosphere at the end of March.

    NASA Television’s programming schedule for HTV2 events includes (all times CST):

    Thursday, Jan. 20:

    12 a.m. — Launch coverage, anchored from NASA’s Johnson Space Center in Houston, begins. Launch is scheduled at 12:29 a.m. Thursday, Jan. 27:

    5 a.m. — Grapple coverage, anchored from Johnson, begins. The grapple of HTV2 is scheduled at 5:44 a.m.

    8 a.m. — Berthing coverage, anchored from Johnson, begins. The attachment should be complete at approximately 10 a.m.

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    Southwest Airlines Flight Attendants’ Union Ratifies Boeing 737-800 Tentative Agreement

    DALLAS, Nov. 18, 2010
    Southwest Airlines is pleased to announce that its Flight Attendants, represented by the Transport Workers Union (TWU) Local 556, voted to ratify a tentative agreement reached with the Company in September to add the Boeing 737-800 to the current collective bargaining agreement. With this positive vote, the Flight Attendants’ current contract will also be extended by one year, becoming amendable May 31, 2013, and will include the potential for wage rate increases based on the Company’s financial performance. TWU 556 is made up of more than 9,700 Flight Attendants.

    “Since we began evaluating the opportunity to introduce the Boeing 737-800 into our fleet, the TWU negotiating committee and Leadership Team quickly grasped the potential benefits along with the added operational complexities associated with this decision,” said Mike Van de Ven, Southwest Airlines Executive Vice President and Chief Operating Officer. “This was an important step in our due diligence process, and we are pleased that our hard working Flight Attendants recognize the long-term benefits of adding this new aircraft to our fleet.”

    The decision to add the -800 still isn’t final. The carrier is still waiting for a ratification vote with its Pilots’ Union, SWAPA, and is continuing to evaluate network and configuration options. Any details regarding firm orders with Boeing, timing, and quantity of deliveries are still to be determined. If the Company pursues the -800, a joint committee would meet to work on the logistical details related to scheduling and bidding procedures that adding a fourth Flight Attendant will require.

    After nearly 40 years of service, Southwest Airlines continues to differentiate itself from other low fare carriers–offering a reliable product with exemplary Customer Service. Southwest Airlines is the nation’s largest carrier in terms of originating domestic passengers boarded, now serving 69 cities in 35 states. Southwest also is one of the most honored airlines in the world known for its commitment to the triple bottom line of Performance, People, and Planet. To read more about how Southwest is doing its part to be a good citizen, visit southwest.com/cares to read the Southwest Airlines One ReportTM. Based in Dallas, Southwest currently operates more than 3,100 flights a day and has nearly 35,000 Employees systemwide.

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    Comair Crash: Kentucky 2006-Findings

    Lexington: U.S. District Judge Karl Forester ruled that two pilots who took off on the wrong runway were negligent in the August 2006 Comair crash.

    A jury is deciding if punitive damages will apply.

    On August 27, 2006, about 0606:35 eastern daylight time, Comair flight 5191, a Bombardier CL-600-2B19, N431CA, crashed during takeoff from Blue Grass Airport, Lexington, Kentucky. The flight crew was instructed to take off from runway 22 but instead lined up the airplane on runway 26 and began the takeoff roll. The airplane ran off the end of the runway and impacted the airport perimeter fence, trees, and terrain. The captain, flight attendant, and 47 passengers were killed, and the first officer received serious injuries. The airplane was destroyed by impact forces and postcrash fire. The flight was operating under the provisions of 14 Code of Federal Regulations Part 121 and was en route to Hartsfield-Jackson Atlanta International Airport, Atlanta, Georgia. Night visual meteorological conditions prevailed.

    FINDINGS

    1) The captain and the first officer were properly certificated and qualified under Federal regulations. There was no evidence of any medical or behavioral conditions that might have adversely affected their performance during the accident flight. Before reporting for the accident flight, the flight crewmembers had rest periods that were longer than those required by Federal regulations and company policy.

    2) The accident airplane was properly certified, equipped, and maintained in accordance with Federal regulations. The recovered components showed no evidence of any structural, engine, or system failures.

    3) Weather was not a factor in this accident. No restrictions to visibility occurred during the airplane’s taxi to the runway and the attempted takeoff. The taxi and the attempted takeoff occurred about 1 hour before sunrise during night visual meteorological conditions and with no illumination from the moon.

    4) The captain and the first officer believed that the airplane was on runway 22 when they taxied onto runway 26 and initiated the takeoff roll.

    5) The flight crew recognized that something was wrong with the takeoff beyond the point from which the airplane could be stopped on the remaining available runway.

    6) Because the accident airplane had taxied onto and taken off from runway 26 without a clearance to do so, this accident was a runway incursion.

    7) Adequate cues existed on the airport surface and available resources were present in the cockpit to allow the flight crew to successfully navigate from the air carrier ramp to the runway 22 threshold.

    8) The flight crewmembers’ nonpertinent conversation during the taxi, which was not in compliance with Federal regulations and company policy, likely contributed to their loss of positional awareness.

    9) The flight crewmembers failed to recognize that they were initiating a takeoff on the wrong runway because they did not cross-check and confirm the airplane’s position on the runway before takeoff and they were likely influenced by confirmation bias.

    10) Even though the flight crewmembers made some errors during their preflight activities and the taxi to the runway, there was insufficient evidence to determine whether fatigue affected their performance.

    11) The flight crew’s noncompliance with standard operating procedures, including the captain’s abbreviated taxi briefing and both pilots’ nonpertinent conversation, most likely created an atmosphere in the cockpit that enabled the crew’s errors.

    12) The controller did not notice that the flight crew had stopped the airplane short of the wrong runway because he did not anticipate any problems with the airplane’s taxi to the correct runway and thus was paying more attention to his radar responsibilities than his tower responsibilities.

    13) The controller did not detect the flight crew’s attempt to take off on the wrong runway because, instead of monitoring the airplane’s departure, he performed a lower-priority administrative task that could have waited until he transferred responsibility for the airplane to the next air traffic control facility.

    14) The controller was most likely fatigued at the time of the accident, but the extent that fatigue affected his decision not to monitor the airplane’s departure could not be determined in part because his routine practices did not consistently include the monitoring of takeoffs.

    15) The Federal Aviation Administration’s operational policies and procedures at the time of the accident were deficient because they did not promote optimal controller monitoring of aircraft surface operations.

    16) The first officer’s survival was directly attributable to the prompt arrival of the first responders; their ability to extricate him from the cockpit wreckage; and his rapid transport to the hospital, where he received immediate treatment.

    17) The emergency response for this accident was timely and well coordinated.

    18) A standard procedure requiring 14 Code of Federal Regulations Part 91K, 121, and 135 pilots to confirm and cross-check that their airplane is positioned at the correct runway before crossing the hold short line and initiating a takeoff would help to improve the pilots’ positional awareness during surface operations.

    19) The implementation of cockpit moving map displays or cockpit runway alerting systems on air carrier aircraft would enhance flight safety by providing pilots with improved positional awareness during surface navigation.

    20) Enhanced taxiway centerline markings and surface painted holding position signs provide pilots with additional awareness about the runway and taxiway environment.

    21) This accident demonstrates that 14 Code of Federal Regulations 91.129(i) might result in mistakes that have catastrophic consequences because the regulation allows an airplane to cross a runway during taxi without a pilot request for a specific clearance to do so.

    22) If controllers were required to delay a takeoff clearance until confirming that an airplane has crossed all intersecting runways to a departure runway, the increased monitoring of the flight crew’s surface navigation would reduce the likelihood of wrong runway takeoff events.

    23) If controllers were to focus on monitoring tasks instead of administrative tasks when aircraft are in the controller’s area of operations, the additional monitoring would increase the probability of detecting flight crew errors.

    24) Even though the air traffic manager’s decision to staff midnight shifts at Blue Grass Airport with one controller was contrary to Federal Aviation Administration verbal guidance indicating that two controllers were needed, it cannot be determined if this decision contributed to the circumstances of this accident.

    25) Because of an ongoing construction project at Blue Grass Airport, the taxiway identifiers represented in the airport chart available to the flight crew were inaccurate, and the information contained in a local notice to airmen about the closure of taxiway A was not made available to the crew via automatic terminal information service broadcast or the flight release paperwork.

    26) The controller’s failure to ensure that the flight crew was aware of the altered taxiway A configuration was likely not a factor in the crew’s inability to navigate to the correct runway.

    27) Because the information in the local notice to airmen (NOTAM) about the altered taxiway A configuration was not needed for the pilots’ wayfinding task, the absence of the local NOTAM from the flight release paperwork was not a factor in this accident.

    28) The presence of the extended taxiway centerline to taxiway A north of runway 8/26 was not a factor in this accident.

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