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DOT Fines US Airways for Failure to Provide Wheelchair Assistance to Passengers with Disabilities

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    Historic Plane Holds Key to a Safer Future in General Aviation

    Piece of Aviation History Finds New Home in Turner, Maine

    DURHAM, Maine, Nov. 16, 2010 /PRNewswire/ — Durham-resident and family physician Dr. Louis Hanson and his historic 1946 Stinson Voyager will be featured in an upcoming documentary film about Aviation Safety Resources (ASR) (www.aviationsafetyresources.com) a Long Island-based company founded by Dario Manfredi, the son of the Stinson’s original owner. The mini-documentary, being produced by veteran New York filmmaker Kai Simonsen, will highlight the history and promise of ASR’s patented life-saving technology and serve as the foundation of a larger feature planned for the future .

    Manfredi’s father, also Dario, and his partner, Angelo Raiti, were years ahead of their time in the early 1960s when they began a quest to devise a system that would safely land a plane and its passengers in the event of a catastrophic in-flight emergency. They purchased the Stinson Model 108 Voyager 9 (Serial Number 13, Registration N39443). With the help of a parachute company and field engineers, they equipped it with special wing attachment pins, three parachutes and explosive devices that the pilot could activate to separate the fuel-bearing wings from the fuselage and bring each piece safely to earth under its own parachute.

    They tested their system in an FAA-sanctioned test flight on November 9, 1967 at Lakehurst Navel Air Station in New Jersey. The system worked as planned, separating the wings and bringing the fuselage down safely with little or no damage.

    Shortly after the test flight, Manfredi’s father was forced to sell his Stinson. He was in the process of retrofitting a second Stinson for further FAA tests and certification when a stroke took his life in 1984.
    After many years in storage, the original Stinson was reassembled, reconditioned and purchased by Dr. Hanson in 2002. A passionate recreational pilot, Dr. Hanson now houses his plane in a small hanger at Twitchell’s Airport and Seaplane Base in Turner, where his flight instructor told him of the plane’s amazing history.

    “When I Iearned about the plane’s history, I did some research and contacted Dario Manfredi to get acquainted and share my experience with the aircraft that inspired his father’s invention,” said Dr. Hanson. “I feel very fortunate to own this piece of aviation history and welcomed the opportunity to participate in the filming of the documentary.”

    Dario Manfredi and his sister Savia Giarraffa have been on a ten-year mission to update their father’s original concept and have assembled a blue-ribbon team of test pilots, parachute and ballistics experts, and avionics engineers bring their father’s invention to market. ASR currently has two patents pending with the U.S. Patent and Trademark Office – one for the TriChute Safe Landing System and another for a complementary sensor-based Smart Recovery System (SRS).

    Applying sensor systems currently available in commercial and military aircraft to General Aviation (GA), the SRS 1.0 brings all systems in GA aircraft into one black box that constantly monitors fight, alerts the pilot to problems with any device or system, and outlines corrective action. The company’s more advanced SRS 2.0 alerts the pilot, but if the pilot does not respond, it also takes action to rectify the situation by automatically deploying the appropriate safety system or device available on the aircraft.

    Dario, Savia and an ASR film team traveled from New York to Maine late last summer to meet Dr. Hanson, examine the Stinson, and fly in the plane inspired the company’s technology.
    “Hearing from Dr. Hanson out of the blue and reconnecting with our father’s airplane has been significant on many levels,” Manfredi said. “First, the very fact that the original airframe is structurally sound and being flown safely 40 years after it was disassembled in flight proves the validity of our company’s underlying technology. Second, is the emotional impact of reconnecting with our father through the plane that was the love of his life. It’s hard to explain the emotions we felt when we first laid eyes on it and recalled time we spent with our father as he worked day and night to make his dream of safer general aviation a reality.”

    Dr. Hanson calls the elder Manfredi’s efforts “inspired” and “courageous.”

    “ASR’s system would add a layer of safety that’s hard to measure,” he said. “It would provide pilots like me with a new sense of confidence and calm knowing that, in the face of unanticipated weather or mechanical failures, the system would ensure that pilots and passengers can be brought down safely and unharmed. I will certainly consider retrofitting my Stinson with this system once it is commercially available.”

    ASR screened a preview of the documentary for aircraft owners, pilots and aviation enthusiasts gathered at the AOPA Aviation Summit in Long Beach, CA, from November 9 – 11, 2010. The preview, produced by Simonsen and his production company Millennium HD, is posted at http://bit.ly/bC8AK5 and on the history page of the company’s website at www.aviationsafetyresources.com, where video of the Stinson’s original 1967 test flight also is available.

    The company continues to seek investors who want to get in on the ground floor of its emerging technology. Individuals interested in more information about ASR’s technology and investment opportunities can call 908-771-9179 or email asrco@msn.com.

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    NTSB Still Investigating

    We should remember this auxiliary battery failed after the passengers had disembarked. As the experts explain it, the battery is an auxiliary. This particular failure wouldn’t be likely to happen in the air, which technically makes it non-life threatening, although a tech or firefighter who was injured when the fire was extinguished might feel differently. I’m not trying to minimize the problem, but passengers’ lives were not threatened.

    Nevertheless, I’m looking forward to Boeing’s solution to this. All the experts tell me this is what happens with new planes. Just a matter of getting the kinks out. While it’s not unexpected that new approaches (replacing the hydraulics with high powered electrics) need some ironing out, we’ll all sleep a lot better, and fly a lot easier when the situation is addressed.

    NTSB Provides Second Investigative Update on Boeing 787 Battery Fire in Boston

    January 14, 2013
    WASHINGTON – The National Transportation Safety Board today released a second update on its investigation into the Jan. 7 fire aboard a Japan Airlines Boeing 787 at Logan International Airport in Boston.

    The lithium-ion battery that powered the auxiliary power unit on the airplane was removed and transported back to the NTSB Materials Laboratory in Washington on Jan. 10. The battery is currently being examined by NTSB investigators, who plan to disassemble it this week.

    In advance of that work, under the direction of the NTSB, radiographic examinations of the incident battery and an exemplar battery were conducted this past weekend at an independent test facility. The digital radiographs and computed tomography scans generated from this examination allowed the team to document the internal condition of the battery prior to disassembling it.

    In addition, investigators took possession of burned wire bundles, the APU battery charger, and several memory modules. The maintenance and APU controller memory modules will be downloaded to obtain any available data. Investigators also documented the entire aft electronics bay including the APU battery and the nearby affected structure where components and wire bundles were located.

    The airplane’s two combined flight data recorder and cockpit voice recorder units were transported to NTSB headquarters and have been successfully downloaded. The information is currently being analyzed by the investigative team.

    The airport emergency response group documented the airport rescue and firefighting efforts to extinguish the fire, which included interviews with first responders. Fire and rescue personnel were able to contain the fire using a clean agent (Halotron), however, they reported experiencing difficulty accessing the battery for removal during extinguishing efforts. All fire and rescue personnel responding to the incident had previously received aircraft familiarization training on the Boeing 787.

    ntsb_photo
    NTSB photo of the burned auxiliary power unit battery from a JAL Boeing 787 that caught fire on Jan. 7 at Boston’s Logan International Airport. The dimensions are 19×13.2×10.2 inches and it weighs approximately 63 pounds (new).

    In accordance with international investigative treaties, the Japan Transport Safety Board and French Bureau d’Enquêtes et d’Analyses pour la sécurité de l’aviation civile have appointed accredited representatives to the investigation. The NTSB-led investigative team is comprised of subject matter groups in the areas of airplane systems, fire, airport emergency response, and data recorders and includes experts from the Federal Aviation Administration, The Boeing Company, US Naval Surface Warfare Center’s Carderock Division, Japan Airlines (aircraft operator), GS Yuasa (battery manufacturer), and Thales Avionics Electrical Systems (APU battery/charger system).

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    LionAir Flight Updated


    On the flight prior the LionAir accident flight on the Boeing Max registered as PK-LQP, an off-duty fully-qualified Boeing 737-MAX 8 pilot was traveling home on flight JT-43. The plane encountered problems similar to the next flight that crashed it (i.e. the LionAir accident flight from Denpasar to Jakarta.) The crew aboard the earlier flight managed to land the aircraft at the destination. Based on the crew’s entry in the AFML, the engineer at Jakarta flushed the left Pitot Air Data Module (ADM) and static ADM to rectify the reported IAS and ALT disagree and cleaned the electrical connector plug of the elevator feel computer. The aircraft was subsequently released to carry out flight JT610.(A different crew manned the fatal flight.) The pilot was interviewed by the Kantor Komite Nasional Keselamatan Transportasi–Ministry of Transportation of the Republic of Indonesia (KNKT). The KNKT committee is responsible for investigating and reporting air transportation system accidents, serious incidents and safety deficiencies involving air transportation system operations in Indonesia.

    The KNKT estimates that the release of the final report for Lion B38M in August or September 2019.

    The KNKT is cooperating with Ethiopian Authorities but will make no official comment. News media reports suggest that on the earlier LionAir flight, a third pilot had occupied the observer’s seat in the cockpit of flight JT-43 and that this pilot identified the automatic trim runaway issue at hand and initiated that the trim cut out switches be used.

    The preliminary report on the LionAir crash is located HERE.

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    Review of the Security and Controls over the Civil Aviation Registry Systems – Federal Aviation Administration

    The Federal Aviation Administration (FAA) is responsible for setting, overseeing, and enforcing safety standards in the aviation industry. FAA’s Flight Standards Service promotes aviation safety by managing systems for registration of civil aircraft and airman records. These registry systems contain FAA’s official records of civil aircraft registration and ownership, and airman certification, ratings and authorizations. DOT OIG has initiated an audit of the security of the registry systems’ information.

    Audit objectives are to determine whether: (1) personally identifiable information is secure from unauthorized use or access; (2) information in the registry systems is sufficient for managing aircraft registrations and airmen’s records; and (3) registry contingency planning ensures FAA’s continued ability to accomplish its mission of aviation safety.

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  • DOT Fines Brazilian Airline for Violations of Airline Consumer Rules


    The U.S. Department of Transportation (DOT) today fined the Brazilian airline GOL $250,000 for violating a number of DOT’s rules protecting the rights of air travelers. This is the largest penalty assessed for violations of the rules adopted in April 2011.
    The airline was ordered to cease and desist from further violations of the Department’s airline consumer rules.
    “We adopted these rules to ensure that passengers are treated with respect when they buy a ticket or board a plane,” said U.S. Transportation Secretary Anthony Foxx. “We will not tolerate disregard of our rules and will take enforcement action when necessary to protect travelers.”
    The Department’s Aviation Enforcement Office found that GOL’s U.S. website, for a period of time after it was launched in November 2012, failed to include a variety of information and features required by DOT air travel consumer protection rules. The website did not include a contingency plan for handling lengthy tarmac delays or a link from the homepage to a list of fees for baggage and other optional services.
    GOL also violated DOT’s full-fare advertising requirement by failing to include taxes and fees in fares displayed on the website in response to consumer searches. The full fare, including taxes and fees, was available only after the consumer selected a specific itinerary.
    The airline also failed to post its contract of carriage in an easily accessible form on its website. A consumer had to begin the process of searching for an itinerary before being able to gain access to the contract information. This made it hard to easily compare GOL’s contract with those of other airlines, and made obtaining the contract difficult for passengers who wanted to review the information online before booking a flight by telephone or with a ticket agent.
    GOL also failed to include on its website required information on how consumers can file a complaint with the airline.

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    NTSB Opens Public Docket on 2010 American Airlines Fuselage Rupture and Decompression

    WASHINGTON – As part of the continuing investigation into the 2010 rapid decompression that occurred following a fuselage rupture aboard an American Airlines flight shortly after departing Miami, Florida, today the National Transportation Safety Board (NTSB) opened its public docket.

    On October 26, 2010, American Airlines flight 1640, a Boeing 757-223, while climbing through 32,000 feet, experienced a rapid decompression. The crew executed an emergency descent back to Miami International Airport and landed the aircraft without further incident. There were no injuries to the 6 crewmembers and 154 passengers.

    A ground inspection of the airplane shortly after it landed in Miami revealed a section of the fuselage crown skin, measuring approximately 18 inches by 7 inches, had ruptured just above and aft of the forward left passenger door.

    Included in the documents released today are a summary of the cockpit voice recorder and reports from the metallurgy and airworthiness groups.

    The information contained in the docket is factual in nature and does not provide any analysis.

    Additional material will be added to the docket as it becomes available. Analysis of the accident, along with conclusions and a determination of probable cause, will come at a later date when the final report on the investigation is completed.

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