• | | |

    Mexican Air Force Crash Kills 2

    What: Fuerza Aerea Mexicana Cessna 182
    Where: Chihuahua
    When: FEB 24 2010
    Who: 2 fatalities 3 injured
    Why: After takeoff, the small military Cessna 182 crashed, killing 2, wounding 3. The reasons for the crash are unknown, but possibly might be related to a technical problem according to officials. No other details have been released at this time.

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  • FAA Press Release

    FAA Proposes $1.2 Million Civil Penalty for GE Caledonian
    WASHINGTON, D.C. — The FAA has proposed a civil penalty of $1,225,000 for GE Caledonian, an FAA-certificated foreign repair station based in Scotland, for improper maintenance procedures involving 101 engines over a three and one-half year period.

    “We hold certificated foreign repair stations to the same high standards as the repair stations here in the U.S.,” said Transportation Secretary Ray LaHood. “When necessary, we will issue civil penalties and ensure that companies take corrective action.”

    Between January 2005 and May 2008, GE Caledonian used a procedure to remove the thrust pins from the forward engine mounts of 101 CF6 engines that was different than the one required by the manufacturer’s maintenance manuals. When it removed the thrust pins, GE Caledonian welded the locking screw to the thrust pin instead of drilling and tapping a hole in the thrust pin, as required in the manual.

    “Our safety regulations are the core of our aviation system and we take them seriously,” said FAA Administrator Randy Babbitt.

    GE Caledonian has 30 days from the receipt of the FAA’s civil penalty letter to respond to the agency.

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  • Press Release: Boeing’s ZA004 Joins 787 Flight-Test Program

    Boeing’s ZA004 Joins 787 Flight-Test Program
    EVERETT, Wash., Feb. 24
    – A third airplane has joined the Boeing (NYSE: BA) 787 Dreamliner flight-test program. ZA004, the fourth flight-test airplane to be built, took off at 11:43 a.m. local time from Paine Field in Everett, Wash. The program plan called for ZA004 to fly before ZA003 because the data ZA004 is collecting is needed more quickly both for certification and development of the 787-9.
    Captains Heather Ross and Craig Bomben completed a three-hour-and-two-minute flight at 2:45 p.m., landing at Boeing Field in Seattle. Flight-test personnel were also on board to monitor airplane performance.

    “Airplane No. 4 operated flawlessly today,” Ross said after landing. “We’ve got a lot of work ahead of us but I can’t imagine a better start to the flight test program for this airplane.”
    Ross will serve as chief pilot for ZA004. This airplane will be used to accomplish the following types of tests: aerodynamics, high-speed performance, propulsion performance, flight loads, community noise and extended operations (ETOPS) and other test conditions.
    During today’s flight, the airplane reached an altitude of 30,000 feet (9,144 m) and an airspeed of 255 knots, or about 293 miles (472 km) per hour. As the testing of the 787 fleet progresses, the airplane will fly at its expected in-service maximum altitude of 40,000 feet (12,192 m) and speed of Mach 0.85.

    “We are continuing to make good progress on the flight test program,” said Scott Fancher, vice president and general manager of the 787 program, Boeing Commercial Airplanes. “The team is staying focused and disciplined in keeping the priority on safety and execution of the plan.

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  • NTSB PRESS RELEASE

    NTSB CHAIRMAN HERSMAN TESTIFIES ON AIRCRAFT ICING

    NTSB Chairman Deborah A.P. Hersman today, in testimony
    before the House Aviation Subcommittee, Committee on
    Transportation and Infrastructure, discussed the dangers of
    aircraft flying in icing conditions and highlighted
    longstanding Safety Board recommendations that have yet to
    be adopted by the Federal Aviation Administration to address
    the issue.

    Reducing the dangers of flying in icing conditions has been
    on the NTSB’s Most Wanted List of Transportation Safety
    Improvements since 1997. Last week, the NTSB voted to keep
    the issue area, along with its four open recommendations to
    the FAA, on the 2010 Most Wanted List with a “red”
    classification. The red classification indicates an
    unacceptable response by the FAA.

    “Although the NTSB relies on others to implement these
    recommendations, we have worked to educate the pilot
    community about some of the hazards associated with icing
    conditions through our Safety Alerts,” Hersman said.

    In 1981, the NTSB published a report titled “Aircraft Icing
    Avoidance and Protection” and recommended the FAA review
    icing certification criteria. The special study followed a
    series of icing-related accidents where aircraft operating
    in icing conditions and the varying consequences that ice
    accretion had on different types of aircraft raised concern,

    In the 1990s the NTSB re-examined the issue of airframe
    structural icing and concluded that the icing certification
    process continues to be inadequate. The Board also became
    concerned about airplanes that fly in supercooled large
    droplet conditions and that used pneumatic boots to deice
    the aircraft in flight. In the last decade, the Board has
    investigated more than 50 accidents involving aircraft
    icing, resulting in over 200 fatalities and it continues to
    investigate accidents where icing is a factor.

    In the last few years, the FAA has addressed some of the
    recommendations related to icing by issuing a number of
    final and proposed regulations. However, not all of the
    NTSB’s recommendations on icing have been addressed.

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    Piper Crash Lebanon-Springfield

    What: KMT Consultants Piper PA-28-180 Cherokee C en route from St Clair County Airport to Lebanon- Springfield Airport
    Where: west of Lebanon-Springfield Airport
    When: Feb 23 2010
    Who: Pilot Kent Douglas Shilling of Springfield (lost in crash)
    Why: The Piper 28 airplane disappeared from radar about 4 miles west Lebanon Springfield Airport. Kent Douglas Shilling was piloting the plane. Shilling, who owns a flight school, was returning to Kentucky from Alabama. When his arrival in Lebanon-Springfield was overdue, a search ensued. The Emergency Operations Center received a call concerning the crash at 4:10 p.m.

    A state trooper found the wreckage in a wooded area off of Kentucky Highway 55 thirty minutes after the flight disappeared from radar.

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  • | | |

    Testimony: Icing

    Statement of John Hickey, Deputy Associate Administrator for Aviation Safety

    Before the House of Representatives, Committee on Transportation and Infrastructure, Subcommittee on Aviation on Aircraft Icing

    Chairman Costello, Ranking Member Petri, Members of the Subcommittee: Thank you for inviting me here today to discuss the challenges icing conditions pose to flight operations and the Federal Aviation Administration’s (FAA) efforts to mitigate the safety risks posed by icing. For more than a decade, the FAA has been working to better understand the hazards posed by icing conditions and to improve regulations, policies and procedures to ensure safe airplane operation. Still, research into the complicated phenomenon of icing continues to yield new insights and mitigation measures.

    Today, I want to highlight some of the known icing threats and mitigation measures as well as our icing program approach and a number of our recent efforts that have been crucial to further decreasing the risk associated with aircraft icing. First, however, it is important to understand the framework within which we work to address icing risks.

    As the agency charged with setting the standards for safe aircraft operations, we establish the standards for operations during all types of meteorological conditions, including those that might result in icing on the ground or in flight. Aircraft manufacturers and operators meet these standards through a variety of means depending on where the icing risk occurs (on the ground or in flight), and the aircraft’s system capabilities and intended usage. Our standards for operations in icing conditions encompass both operational and aircraft certification requirements. Operational requirements include standards and aircraft specific operating procedures for icing encounters and pilot and dispatcher training. All pilots engaged in commercial operations must receive training on identification of, safe operation in, and how to avoid and exit icing conditions. They must also be trained on deicing system operation and capabilities of the particular aircraft they operate.

    An aircraft design approval — what we call a “type certificate” — provides the design specifications that an aircraft must be built to, in order to meet the FAA’s standards for safe design. Aircraft must also comply with operation requirements, as set forth by the rules under which the airplane is being operated. Design and operation requirements must both be met in order to satisfy the FAA’s standards for safe operation. In order for an aircraft to be certificated for operations in icing conditions, the aircraft’s manufacturer must be able to demonstrate that the aircraft can safely operate within the icing conditions specified by FAA regulations. We know today that these specified conditions represent 99% of all known atmospheric conditions that result in icing. For the remaining 1%, we are conducting research and are working to translate our findings into certification standards. I want to emphasize that airplanes are prohibited from operations in known icing conditions unless they meet the certification standards for operations in those conditions and at no time may any aircraft continue to operate in severe icing conditions.

    Aircraft Icing

    Unmitigated icing presents risks to aircraft. The accumulation of ice on an aircraft’s wing changes the shape of the wing, and hence the aerodynamic capabilities of the wing to generate lift. For this reason, ice accumulation on an aircraft on the ground may impact the aircraft’s ability to takeoff, while ice accumulation in flight has the potential to raise the minimum speed at which the wing is capable of creating sufficient lift, and potentially causing the aircraft to stall.

    Ground icing: Ground icing is, as the name implies, the accumulation of ice, snow or frost on the aircraft while it is on the ground. This form of icing is both common and meteorologically predictable. During the winter months, the conditions in which ice accumulation on an aircraft is possible become more prevalent and vigilant action becomes necessary to ensure planes are properly deiced and cleared of snow and ice prior to takeoff. Winter precipitation poses a threat to aviation operations because airplane performance is predicated upon the wings being free of contamination. The accumulation of ice, snow, or frost has an adverse effect on the wing’s ability to produce lift, potentially limiting an airplane’s ability to takeoff and climb.

    Currently, the FAA prohibits takeoff unless the airplane’s critical surfaces are completely clear of wintry precipitation. As many of you have likely seen, this is typically achieved by applying deicing or anti-icing fluids to the critical surfaces of the airplane. To provide for a safe takeoff, it is important that a deiced airplane not remain on the ground for an extensive period after deicing during precipitation. At the start of this winter season, as in years past, the FAA issued its annual winter “hold over times” and list of approved anti ice and deicing fluids. “Hold over times” govern the amount of time that may elapse between deicing and takeoff. In the event that the aircraft exceeds the amount of wait time permitted between deicing and takeoff, FAA regulations require the aircraft to be reinspected for adhering contamination or exit the takeoff queue and be deiced again prior to departure. These holdover time tables are revised annually. Some of the reasons for the annual update include improvements in the effectiveness of deicing and anti-icing fluids, reduction of environmental impacts and new information learned through FAA fluid research.

    In-flight icing: Unlike ground icing, in-flight icing knows no season and can be difficult to predict. In-flight icing results from atmospheric conditions that can occur at anytime of the year, regardless of the weather conditions on the ground. According to FAA regulations, any pilot who finds himself or herself in icing conditions while operating an aircraft that is not approved for operations in icing must immediately exit the icing conditions. This means redirecting the aircraft to a different altitude or route, or landing.

    There are multiple atmospheric conditions that can result in the build-up of ice on an aircraft during flight. To mitigate the risk of ice build-up during flight, aircraft that are certificated to operate in icing conditions are equipped with devices that shed ice from the aircraft, such as expandable pneumatic boots, or prevent the formation of ice through the use of heat. A pilot’s ability to recognize icing conditions and activate deicing and anti icing systems in a timely manner is critical to those systems’ effectiveness. Because of the pilot’s critical role in managing flight in icing conditions, we have used both our rulemaking and advisory authorities, to provide pilots with the latest information on how to identify icing, to require early and systematic use of deicing systems and to require exit from icing conditions under certain circumstances.

    Some aircraft are also equipped with ice detection systems. Ice detection systems assist the flightcrew with ice detection and timely activation of the ice protection system. These systems automatically detect ice accretion and annunciate the presence of ice accretion to the flightcrew. Some ice detection systems are designed to automatically initiate the operation of the aircraft deicing systems while others are what we call “advisory” and require the flightcrew to ensure ice protection systems are activated at the first sign of ice accretion on the airplane.

    Although our current regulations address the vast majority of all known icing conditions, we have steadily worked to address two types of in-flight icing phenomena outside of the existing icing certification envelope: supercooled large droplets (SLD) and ice crystals. SLD icing can occur in freezing rain and freezing drizzle conditions — turning water to ice upon contact with the airframe, which can lead to larger accumulations or build up on areas of the wing and tail aft of the protected area. We expect to issue a Notice of Proposed Rulemaking (NPRM) to address this small area of vulnerability, by incorporating atmospheric conditions that are associated with SLD icing into our certification criteria. In the interim, we have taken immediate steps through our airworthiness directive authority to ensure that pilots can identify severe icing which may be produced by SLD conditions and execute exit procedures.

    Ice crystals are also a newly identified threat. We now believe that flight into certain types of storm clouds can cause ice to build up deep inside the core of jet engines and cause temporary shutdowns. Understanding this threat has been particularly challenging because, typically, by the time an aircraft lands, the affected engine has restarted and there is no evidence for us to evaluate. We are currently working with industry and other governmental research partners on developing ways to recreate the atmospheric conditions in which ice crystals form and learn all that we can about how to mitigate the threat of this phenomenon. Although there is research that still needs to be done in this area, we are closely monitoring the condition and its possible causes. To mitigate the risk, the FAA issued Airworthiness Directives (ADs) requiring operational changes when in or near convective weather and engine design changes to make jet engines more tolerant of ice crystal conditions.

    Icing Safety Actions

    Safety concerns about the adequacy of the icing certification standards were brought to the forefront of public and governmental attention by a 1994 accident in Roselawn, Indiana, involving an Avions de Transport Regional ATR 72 series airplane. The NTSB attributed this accident to what we now call SLD–an icing phenomenon that, at the time, was not fully understood. Shortly after this accident, the FAA initiated a review of aircraft safety in icing conditions to determine what could be done to increase safety. This review resulted in our current icing program.

    As meteorologists will attest, simply understanding some of these icing phenomena are difficult and complex. Determining how to address these complex phenomena to support safe aircraft operations takes additional time and extensive research. That is why we tackle the dangers of icing with a multi-prong approach. To address those threats that are clearly understood or for which immediate mitigation is available, we take immediate safety action. In the meantime, concurrent research and development and rulemaking efforts are underway. To date, our icing program includes seven rulemaking initiatives–three have been adopted as final rules, while others are in various stages of development. Additionally, we have issued over 200 ADs on 50 different aircraft models, and have undertaken other operational training and mitigation initiatives.

    Immediate Actions: The FAA’s icing program addresses the immediate icing safety concerns for the current fleet of aircraft through the use of ADs. The FAA has the authority to issue an AD if we determine that some aspect of flying in icing conditions on a particular airplane model creates an unsafe condition that puts the flying public in immediate danger. ADs carry the same force as a regulation and are targeted to specific aircraft makes and models. ADs must be complied with in order to continue operating a covered airplane. As described above, the FAA has been aggressive in issuing ADs when we determine they are needed. These ADs cover safety issues ranging from crew operating procedures and training, to design changes that have significantly reduced the icing risk to the overall fleet.

    For example, with our AD authority, we require that pilots of airplanes equipped with deicing boots activate those boots at the first sign of icing conditions. We have also issued numerous ADs that direct the crews of certain airplane designs on how to monitor and detect early signs of the onset of severe icing and to exit the area immediately. Other ADs require stall warning systems of certain airplanes to be modified to provide an earlier warning of a potential stall in icing conditions and mandate changes to address any susceptibility to stalling of the horizontal tail in icing conditions. These ADs serve as effective safety measures for the current fleet.

    Longer Term Actions: The FAA’s icing program also includes a number of longer term actions to further improve the safety of flying in icing conditions both for the current fleet and for future airplane designs. These actions include rulemaking, issuing safety bulletins, developing improved training material, drafting new or updating existing Advisory Circular guidance material, and further research. We recognize that fast action is an important goal for implementing any safety improvement. We also acknowledge that some actions, such as rulemaking, take longer than others. Rulemaking is a deliberative process that must involve the input of those stakeholders who are affected by the rules.

    Also, in some cases, developing and implementing rules depends on extensive research to understand the particular phenomena and its effect on safety, and to develop appropriate risk mitigations.

    For example, in order to understand SLD icing sufficiently to identify an appropriate set of requirements that airplane manufacturers could comply with, a significant amount of research had to be done. We needed to learn how to characterize SLD, then reproduce it, and finally, understand its effect on airplane operations and designs. For these reasons, at the same time that we tasked the Aviation Rulemaking Advisory Committee (ARAC) to develop certification criteria for the safe operation of airplanes in SLD icing conditions, we also began supporting research efforts by NASA and Environment Canada to gather additional SLD data. Using existing and new SLD data and analysis, the ARAC completed the majority of the work defining the SLD icing envelope. But even after the SLD icing envelope was defined, we continued to learn more about the complexities of SLD, which led us to focus analysis of the impact of SLD on aircraft engines and determine that new standards for smaller aircraft should be considered in a separate rulemaking. The process took time, more time than we anticipated and more time than we wanted, but once we had a sufficient understanding of the science and the technical solutions, we moved forward with the SLD rulemaking. I am pleased to report that the SLD NPRM is now in executive coordination within the Department.

    In the meantime, we formed and tasked an Aviation Rulemaking Committee (ARC) to review the proposed regulations applicable to transport category aircraft for SLD, mixed phase, and ice crystals and recommend how they should be modified for smaller aircraft. The SLD research we conducted for the transport category SLD rulemaking provides the basis for our scientific understanding of SLD, upon which we can develop additional technological solutions for smaller aircraft.

    In addition to the intensive efforts to understand and revise our regulations to address SLD and ice crystals, since 2007, FAA has completed three icing rules and just this week closed the comment period on an additional NPRM. The completed icing rules include:

    • Performance and Handling Qualities in Icing Conditions for Transport Category Airplanes, adding new airworthiness requirements that require designers to demonstrate specific airplane performance and handling qualities for flight in icing conditions.
    • Activation of Airframe Ice Protection System for Transport Category Airplanes, requiring either the automatic activation of ice protection systems or a method to alert pilots when they should be activated. Further, after the initial activation, the ice protection system must operate continuously, automatically turn on and off, or alert the pilots when the system should be cycled.
    • Removal of Airplane Operating Regulations Allowing Polishing of Frost on Wings of Airplanes, effectively prohibiting all aircraft from taking off with polished frost on the wings.

    The NPRM, for which the comment period just closed, would require certain scheduled airlines either to retrofit their existing fleet with ice-detection equipment or make sure the ice protection system activates at the proper time. For those aircraft with an ice-detection system, the FAA proposes that the system alert the crew each time they should activate the ice protection system. The ice protection system would either turn on automatically or pilots would manually activate it. For aircraft without ice-detection equipment, the crew would activate the protection system based on cues listed in their airplane’s flight manual during climb and descent, and at the first sign of icing during cruise.

    We are also evaluating the comments received in response to an additional NPRM that included proposed changes to training and checking requirements for pilots operating flights under part 121. In addition to many other revisions, this NPRM proposed changes that would further specify training requirements for icing operations.

    I want to acknowledge that throughout our ongoing and comprehensive effort to mitigate the risks presented by airplane icing, the National Transportation Safety Board icing recommendations have been instructive. Although we are not always able to take the exact action the Board recommends, we value and fully analyze their recommendations and benefit from their investigations of icing-related accidents. We firmly believe that our actions meet the intent of the vast majority of the Board’s icing recommendations.

    Although we have made significant advancements in our understanding of icing since the tragic 1994 Roselawn accident, icing related threats continue to be a focus of the FAA’s safety experts. The total number of accidents related to environmental icing of airplanes has been decreasing steadily, year after year, for the last 13 years. This safety achievement is the direct result of our intensive focus on improving our understanding of complex icing phenomenon and the best methods for avoiding and mitigating icing conditions. The FAA is proud of this growing safety record and is committed to expanding it.

    Mr. Chairman, Congressman Petri, Members of the Subcommittee, this concludes my prepared remarks. I would be happy to answer any questions that you might have.

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    Aberdeen: Eastern Airways Lands with Faulty Engine Fire/Alarm


    Pictured: AN Eastern Airways Saab 2000 in Manchester on August 29, 2009
    Click to view full size photo at Airliners.net
    Contact photographer Stewart Andrew

    What: Eastern Airways Saab 2000 en route from Bergen to Aberdeen
    Where: Aberdeen
    When: Feb 21st 2010
    Who: 8 passengers and 3 crew
    Why: A quarter hour before approach to Aberdeen, systems detected a fire in the left engine.

    The crew shut the engine down and proceeded to land safely at Aberdeen with emergency crews on standby.

    The shutdown was attributed to a faulty fire alarm.

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  • |

    Boeing Press Release:

    Statement on Virgin Blue’s Selection of the Next-Generation 737
    SEATTLE, Feb. 23, 2010 – Boeing [NYSE: BA] is delighted that Virgin Blue has selected the Boeing Next-Generation 737 for the replacement and expansion of its single-aisle fleet. We look forward to working with Virgin Blue to finalize the order, at which time it will be posted to the Boeing Orders and Deliveries Web site.

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  • | |

    Toronto: Uncleared Air Canada Landing


    Click to view full size photo at Airliners.net
    Contact photographer Javier Cáceres

    What: Air Canada Airbus A321-200 en route from Montreal to Toronto
    Where: Toronto
    When: Feb 22 2010
    Who: crew
    Why: On landing, after normal communication had been established, attempts to reach the crew to confirm were not answered. Nevertheless, the plane landed safely.

    This is a disruption of procedure; if landing clearance is not received, the pilot is supposed pull up, abort the landing and make another pass. We have not heard if there was some kind of cockpit emergency that would make extenuating circumstances, but it is not likely, as the crew apparently contacted ATC after landing, confirming they had landed without clearance.

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  • | | | | |

    Emergency Landing at JFK


    Click to view full size photo at Airliners.net
    Contact photographer Paul Nichols

    What: American Airlines Boeing 777-200 en route from New York to Sao Paulo
    Where: New York
    When: Feb 21st 2010
    Why: Twenty minutes into the flight, the plane began to smell of smoke. The flight returned to JFK and made a safe landing.

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  • | | |

    Montreal: Expressjet Flight Flaps Fail


    Click to view full size photo at Airliners.net
    Contact photographer Scott Hoggard

    What: Expressjet Embraer ERJ-145 en route from Cleveland to Montreal
    Where: Montreal
    When: Feb 21 2010
    Why: On the final approach to Montreal, the plane developed a flap problem, causing the crew to abort the landing. They nailed the second attempt however about a quarter of an hour later.

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  • | | | |

    JFK: Airbus Turns Back 2x


    Click to view full size photo at Airliners.net
    Contact photographer Anthony Guerra

    What: Air France Airbus A380-800 en route from New York JFK to Paris
    Where: New York
    When: Feb 22 2010
    Who: 22 crew
    Why: While ferrying the flight to Paris, the plane developed fuel system problems and returned to JFK where it made a safe landing. This is after the flight had already been cancelled earlier for undesignated technical issues.

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  • NTSB TRANSFERS CONTROL OF INVESTIGATION OF AUSTIN PLANE CRASH TO FBI

    NTSB Advisory : NTSB NTSB TRANSFERS CONTROL OF INVESTIGATION OF AUSTIN PLANE CRASH TO FBI

    The National Transportation Safety Board has transferred control of the investigation into yesterday’s crash of a small aircraft into an office building in Austin, Texas to the Federal Bureau of Investigation.

    On the morning of February 18, 2010, a Piper PA-28 struck a 7-story building housing federal offices in Austin, Texas. The NTSB immediately initiated an investigation and dispatched a team of investigators to the scene. Information developed about the circumstances of the crash since that time point toward an intentional act rather than an accident.

    Last night, NTSB Chairman Deborah A.P. Hersman consulted with the United States Attorney General, Eric Holder. They agreed that given the apparent criminal nature of the event, the primacy of this investigation should be transferred to the FBI. NTSB investigators will remain at the scene to assist the FBI.

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  • | | |

    Milwaukee: Emergency Landing


    Click to view full size photo at Airliners.net
    Contact photographer Orlando Suarez

    What: Southwest Airlines Boeing 737-700 en route from Orlando to Milwaukee
    Photo: A Southwest Airlines Boeing 737-7H4
    Where: Milwaukee
    When: Feb 21st 2010
    Why: On approach to Milwaukee, the crew reported issues with the flaps. The plane entered a flight pattern, and eventually made a safe if rapid landing.

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  • |

    Press Release: Lufthansa


    Special flight schedule published at www.lufthansa.com due to expected pilots’ strike
    East Meadow, N.Y., Feb. 19, 2010 — As a consequence of the strike measures which have been initiated by the “Vereinigung Cockpit” trade union, Lufthansa is making corresponding adjustments to its flight schedule from Monday to Thursday, February 22- 25. About two thirds of the affected Lufthansa-operated flights will have to be cancelled, however Lufthansa regional partners such as Lufthansa City Line will operate their flightsaccording to schedule.

    The special flight schedule for the period of the strike can now be accessed at
    www.lufthansa.com and lists all flights which should be operating according to the current planning. Depending upon the actual operating conditions during the days of the strike, further changes could be made to the special flight schedule.

    Customers who have purchased a Lufthansa ticket for a flight which is operated by a partner airline (codeshare) will not find the LH flight number known to them in the special flight schedule. Since the partner airlines are not affected by the strike, these flights will operate as planned (flight numbers LH1400-2629 and LH5050-6999).

    Lufthansa is doing everything in its power to inform its customers as soon as possible and offer them alternative travel options. Passengers already booked on a Lufthansa flight during the period from February 22 to 25 can rebook once free of charge on another Lufthansa flight, if they wish to change their travel plans – provided their ticket was issued before February 18, the new travel date is before May 31, 2010 and their arrival and departure destinations remain the same.

    Should a flight be cancelled, and the purpose of the journey no longer applies,
    passengers can cancel their booking free of charge. Travelers have the opportunity to regularly check the status of their flight at www.lufthansa.com under the heading “My bookings”. A cancellation of the flight and the booking will be shown there. If a rebooking has been made, the travel alternatives will be shown there as well.

    Passengers on domestic German flights, whose flights have been cancelled, can
    independently purchase a rail ticket for the identical route in the same travel class and later, together with proof of the flight ticket purchased from Lufthansa, claim a refund. They can access the passenger receipt of their etix online at www.lufthansa.com under Information & Service > Check-in > Passenger Receipt.

    Customers can continue to obtain information about their bookings, as well as about the Rebooking options and cancellations, at the toll-free number 1-800-645-3880 in the U.S. and 1- 800-563-5954 in Canada.

    According to the special flight schedule, the following flights to/from North America are scheduled to take place during the period from February 22-25:

    February 22
    LH 412 Munich – Newark
    LH 413 Newark – Munich
    LH 430 Frankfurt – Chicago
    LH 431 Chicago – Frankfurt
    LH 434 Munich – Chicago
    LH 435 Chicago – Munich
    LH 438 Frankfurt – Dallas Ft Worth
    LH 439 Dallas Ft Worth – Frankfurt
    LH 492 Frankfurt – Vancouver
    LH 493 Vancouver – Frankfurt
    LH 498 Frankfurt – Mexico City
    LH 499 Mexico City – Frankfurt

    February 23
    LH 412 Munich – Newark
    LH 413 Newark – Munich
    LH 492 Frankfurt – Vancouver
    LH 493 Vancouver – Frankfurt

    February 24
    LH 412 Munich – Newark
    LH 413 Newark – Munich
    LH 434 Munich – Chicago
    LH 435 Chicago – Munich
    LH 442 Frankfurt – Detroit
    LH 443 Detroit – Frankfurt
    LH 492 Frankfurt – Vancouver
    LH 493 Vancouver – Frankfurt
    LH 498 Frankfurt – Mexico City
    LH 499 Mexico – City Frankfurt

    February 25
    LH 412 Munich – Newark
    LH 413 Newark – Munich
    LH 434 Munich – Chicago
    LH 435 Chicago – Munich
    LH 490 Frankfurt – Seattle
    LH 491 Seattle – Frankfurt
    LH 492 Frankfurt – Vancouver
    LH 493 Vancouver – Frankfurt
    ###
    Deutsche Lufthansa AG
    Corporate Communications
    Martin Riecken
    Tel.: +1 516-296-9671
    americaspr@dlh.de
    www.lufthansa.com
    http://twitter.com/Lufthansa_USA

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  • | | |

    Singapore Airbus Towed in Nagoya


    Click to view full size photo at Airliners.net
    Contact photographer Ignatius

    What: Singapore Airlines Airbus A330-300 en route from Singapore to Nagoya
    Where: Nagoya
    When: Feb 21st 2010
    Who: 275 aboard
    Why: After making a safe landing, the Singapore Airlines Airbus A330-300 had to be towed off the runway, but was repaired in time to make the return flight.

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  • | |

    Santo Domingo: Stowaway Falls off plane


    Click to view full size photo at Airliners.net
    Contact photographer Anand Martinez

    What: Amerijet International/ABX Air Boeing 767-200 en route from Santo Domingo to Miami
    Where: Santo Domingo
    When: Feb 18th 2010
    Who: Flight crew (cargo flight)
    Why: After takeoff, Las Americas International Airport Air traffic controllers witnessed the unknown individual falling out of the Boeing’s wheel well. The flight continued to its destination. The stowaway’s body was recovered, although it remains unidentified. Stowaways would normally fall off or freeze (40 below zero at altitudes).

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  • | |

    Jetlite Flight Goes Flat on Nagpur Runway

    What: JetLite en route from Mumbai to Nagpur
    Where: Nagpur
    When: Feb 20, 2010
    Why: After landing, while the plane was taxiing towards the bay, one of the tires on the nose-wheel deflated. The plane was briefly taken out of commission for repair, inconveniencing some passengers on the scheduled return flight. The pilot appeared to be unaware of the tire’s condition until pointed out on the runway.

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  • No Kamakaze at LAX

    When Skye E. Turner (Is this his REAL name?? how ironic), a 23 year old with an expired student license, had a fight with his girlfriend, he went to Coast Flight Training and Management, in Montgomery Field in San Diego County, and took a Cirrus SR22. He intended to fly it into the ocean; but he thought better of it (Good thinking Skye!) and asked for permission to land at LAX. He came in to fast on his first pass, but made a second pass and landed safely at 2:30 a.m., where he was taken into custody. Since then, he’s undergone some psychological evaluation and has been arrested for theft of a plane.

    I hate to be obvious about conclusions, but suicide is never the way. Neither is theft. It compounds the problem. At least Turner landed safely.

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  • | | | |

    Air Berlin Emergency Landing


    Click to view full size photo at Airliners.net
    Contact photographer Stefan Sonnenberg

    What: Air Berlin/ LTU Airbus A330-200 en route from Dusseldorf to La Romana Dominican Republic
    Where: Cologne
    When: Feb 19 2010
    Why: While en route, a window in the cockpit cracked. The flight diverted to Cologne and made a safe landing. Passengers were provided an alternative flight.

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  • | | | | |

    Compressor sends US Airways Airbus back to Phoenix


    Click to view full size photo at Airliners.net
    Contact photographer Ronny Busch

    What: A US Airways Airbus A320-200 en route from Phoenix to New Jersey
    Where: Phoenix
    When:
    Who: 150 passengers and 5 crew
    Why: During/after takeoff, the plane’s engine “popped” when the left engine compressor stalled. The pilot reported engine trouble, andreturned to Phoenix where they made a safe landing. An alternative plane was provided.

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  • | | |

    United Airlines: Turbulence injures Passengers


    Click to view full size photo at Airliners.net
    Contact photographer Kaoru Kojima

    What: United Airlines Boeing 747-400 Tokyo to Washington
    Where: Alaska
    When: Feb 19 3:45
    Who: 245 passengers, Eighteen people injured (227 passengers 18 crew)
    Why: While en route, the plane encountered turbulence. Several people were injured. The figure was originally released as 20 injuries and later rounded down to 18. One person suffered a broken leg.

    A passenger was quoted saying that the plane…” jolted vehemently over Alaska twice or so about seven hours before its arrival. Many passengers were tossed from their seats, bumping into the ceiling.”

    After encountering turbulence over Alaska, the flight continued on to land at Narita.

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  • | | | |

    British Airways Emergency Landing


    Click to view full size photo at Airliners.net
    Contact photographer Ivan Kresanek

    What: British Airways Boeing 757-200 en route from Barcelona to London
    Where: Barcelona
    When: Feb 18th 2010
    Who: not available
    Why: After takeoff, the crew noticed an odor in the cockpit. Oxygen masks were deployed, and the plane returned to Barcelona. The flight was cancelled. No injuries were reported and there was no further notice regarding what the odor actually was.

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  • |

    Pilot Fires House, Crashes Plane, IRS Suicide Protest

    What: Joseph Andrew Stack’s (owner) Piper PA-28-236 Dakota en route from Georgetown Municipal Airport
    Where: Northwest Austin, Echelon building
    When: Feb 18, 2010
    Who: Joseph Andrew Stack
    Why: The pilot apparently set his house on fire prior to crashing his plane into the Echelon Building that houses the Internal Revenue Service in Northwest Austin. Stack left a suicide note.

    IRS employees in their offices described the crash “as if a bomb went off” “black and gray smoke billowing” and “windows blown out.”


    See PDF of the 6 page suicide letter here


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  • | |

    United Airlines Bomb Threat


    Click to view full size photo at Airliners.net
    Contact photographer Bill Striffler

    What: United Airlines Boeing 757-200 en route from Denver to San Francisco
    Where: Salt Lake City
    When: 02/18/2010
    Who: 193 passengers and 6 crew
    Why: While en route from Denver to San Francisco, a flight attendant found a note that was evaluated to be a bomb threat. The flight diverted to Salt lake City where passengers disembarked on to the tarmac. No trace of a bomb was found in the search.

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