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CASA Media Release – Monday 13 December 2010

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  • NCAR Press Release: New NCAR System May Guide Transoceanic Flights Around Storms and Turbulence

    July 07, 2009

    BOULDER—The National Center for Atmospheric Research is developing a prototype system to provide aircraft with updates about severe storms and turbulence as they fly across remote ocean regions. The system is designed to help guide pilots away from intense weather, such as the thunderstorms that Air France Flight 447 apparently encountered before crashing into the Atlantic Ocean on June 1.

    The NCAR system, being developed with funding from NASA, combines satellite data and computer weather models with cutting-edge artificial intelligence techniques to identify and predict rapidly evolving storms and other potential areas of turbulence. The system is based on products that NCAR has developed to alert pilots and air traffic controllers about storms and turbulence over the continental United States.

    “Pilots currently have little weather information as they fly over remote stretches of the ocean, which is where some of the worst turbulence encounters occur,” says NCAR scientist John Williams, one of the project leads. “Providing pilots with at least an approximate picture of developing storms could help guide them safely around areas of potentially severe turbulence.”

    The component of the system that identifies major storms over the ocean is already available for aircraft use on an experimental basis.

    The entire prototype system, which will identify areas of turbulence in clear air as well as within storms, is on track for testing next year. Pilots on selected transoceanic routes will receive real-time turbulence updates and then provide feedback on the system to NCAR. The researchers will adjust the system as needed.

    When the system is finalized in about two years, it will provide pilots and ground-based controllers with text-based maps and graphical displays showing likely regions of turbulence and of storms.

    In addition to NCAR, other organizations taking part in the research include the Massachusetts Institute of Technology’s Lincoln Laboratory, the Naval Research Laboratory, and the University of Wisconsin-Madison.

    Flying with little information

    Pinpointing turbulence over the oceans is far more challenging than over land because of sparse observations. Weather satellites are often the only source of information over these remote regions. But the satellites provide images less frequently in general than over land, which can make it difficult to capture fast-changing conditions, and they do not directly measure turbulence.

    Pilots of transoceanic flights currently get preflight briefings and, in certain cases involving especially intense storms, in-flight weather updates every four hours. They also have onboard radar.

    All this information, however, is of limited value. Thunderstorms may develop quickly and move rapidly, rendering the briefings and weather updates obsolete. Onboard radars are designed to detect clouds and precipitation, but turbulence is often located far from the most intense precipitation. As a result, pilots often must choose between detouring hundreds of miles around potentially stormy areas or taking a chance and flying directly through a region that may or may not contain intense weather.

    In contrast, NCAR provides real-time maps of turbulence at various altitudes over the continental United States. Such a system, had it encompassed remote ocean regions, could have alerted the pilots of the doomed Air France flight to the stormy conditions along their flight path. The cause of that disaster has not been determined, and it is impossible to know whether the system could have prevented it.

    “It seems likely that the information provided by a real-time uplink of weather conditions ahead would have, at a minimum, improved the pilots’ situational awareness,” Williams says.

    Pinpointing the turbulence

    Williams and his colleagues have recently completed two critical steps in identifying turbulence over the oceans:

    The team has created global maps of clear air turbulence based on global computer weather models that include winds and other instabilities in the atmosphere. Clear air turbulence consists of erratic movements of air masses that occur in the absence of clouds and that sometimes buffet aircraft.

    Drawing on satellite images of storms, the scientists have created global views of the tops of storm clouds. Higher cloud tops are often correlated with intense storms, although not necessarily with turbulence.

    The next step is to identify areas of possible turbulence within and around intense storms. To do so, the team will study correlations between storms and turbulence over the continental United States where weather is more closely observed. The scientists will then infer the likelihood of turbulence associated with storms over the oceans, keying in on satellite indicators such as rapidly expanding clouds or places where the tops of storm clouds are cooling quickly.

    They will also develop mathematical equations to account for differences in cloud systems over the United States compared to over the oceans, including the tropics.

    Artificial intelligence at work

    In addition to providing aircraft and ground controllers with up-to-the-minute maps of turbulence, the NCAR team is turning to an artificial intelligence technique, known as “random forests,” to provide short-term forecasts of turbulence. The random forests, which have proven useful for forecasting thunderstorms over land, consist of many decision trees that each cast a yes-or-no “vote” on crucial elements of a storm at future points in time and space. This enables scientists to forecast the movement and strength of the storm over the next few hours.

    “Our goal is to give pilots a regularly updated picture of the likely storms ahead as they fly over the ocean so they can take action to minimize turbulence and keep their aircraft out of danger,” explains NCAR scientist Cathy Kessinger, a project team member. “Even over the middle of the ocean, where we don’t have land-based radars or other tools to observe storms in detail, we can still inform pilots about the potential for violent downdrafts, turbulence, and possibly lightning.”

    source:
    http://www.ucar.edu/news/releases/2009/ocean-air-turbulence.jsp#
    ©2009, UCAR

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  • Flight 447: Press release N° 4

    Paris, 01 June 2009 – 14:44 local time
    Press release N° 4
    Versão brasileira abaixo

    Air France expresses its deepest sympathy to the relatives and friends of the passengers and crew who were on board AF flight 447 on 31 May 2009, which disappeared somewhere between Rio de Janeiro and Paris-Charles de Gaulle.

    Air France is doing its utmost to provide support to relatives and friends: counselling with physicians and psychologists as well as specially trained Air France volunteers has been set up at the airports of Paris-Charles de Gaulle 2 and Rio de Janeiro.

    Air France has also established a special toll-free number for the attention of relatives and friends of passengers who may have been on board. They can use this number to obtain information on whether or not a member of their family or friends was on board.

    Phone number reserved for relatives and friends

    0800 800 812 in France,
    0800 881 20 20 in Brazil,
    and + 33 1 57 02 10 55 for calls from all other countries.

    Air France will release further information as soon as it is available.

    NB: We ask journalists not to call this number, which is reserved for relatives and close friends.

    Português
    Air France dirige suas sinceras condolências às famílias e amigos dos passageiros e membros da tripulação que se encontravam a bordo do voo AF 447 do dia 31 de maio, desaparecido entre o Rio de Janeiro e Paris Charles de Gaulle.

    A Air France está concentrando todos os seus esforços em dar suporte às famílias e parentes: uma assistência psicológica foi instalada no aeroporto de Paris Charles de Gaulle 2 e no aeroporto do Rio de Janeiro. Ela é composta de médicos e psicólogos, assim como voluntários da empresa, especialmente treinados para estas situações.

    A empresa também colocou à disposição um número de telefone toll free especial de atendimento às famílias dos passageiros. Ela informa, conforme solicitação, de uma eventual presença a bordo de um familiar.

    Números de telefone reservados às famílias
    0800 881 20 20 para o Brasil,
    0800 800 812 para a França,
    e 33 1 57 02 10 55 para outros países

    Air France comunicará outras informações assim que elas estiverem disponíveis.

    NB : Solicitamos aos jornalistas que NÃO liguem para este número, reservado às famílias.

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  • | |

    IATA Partnership Boosts SMS Development

    George’s Point of View

    SMS development is a good thing, but we shouldn’t abandon black boxes.

    Airbus wants to replace black boxes with “a more secure system” of real time satellite transmission.

    The thing is we HAVE black box technology now. We should keep using it.

    Aviation authorities should mandate the usage of both–keep what’s in place as a backup, and go for the real time data relay also. Not everything works as expected, all of the time, so all possible fail-safes should be employed. It’s not just that all that record-keeping keeps everyone honest; in the case of aviation, all those records will keep people alive.

    Real time is not fail-proof, but a FANTASTIC idea. The question of cockpit recordings that infringe on the pilots privacy is going to hang in the air unanswered for now while the real time system is tested and perfected.

    The privacy issue is an interesting factor. Some real time conversation in a cockpit is simple camaraderie–a workplace environment thing that makes a working environment comfortable. Plus it works better than coffee to keep the pilots awake and generally on task.

    No one likes to work with someone looking over their shoulder. Eventually this may become an issue as authorities will inevitably over-regulate the degree of cockpit conversation–bound to be a factor when one considers the Hudson river crash where air traffic control (not pilots) were discussing cat bbq rather than doing their jobs; and the Colgan Air/Pinnacle cockpit recordings that exposed training deficits just before the icing crash in Buffalo .

    The point is that we have the technology; we should use it. It will help save lives.

    The IATA is the sixty year old international trade body of aviation, which represents, leads and serves the airline industry in general and is made up of about 230 airlines (93% of international air traffic.) The Superstructure Group has become an IATA partner. The Superstructure Group is developing the STEADES exchange system, provides technology and consultancy services to meet information needs and is bringing realtime SMS software to the aviation industry.

    IATA Partners are listed here:
    http://www.iata.org/sp/partners_all.htm

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  • | |

    NTSB Release: Probable Cause of Denver Runway Accident Cited

    National Transportation Safety Board
    Washington, DC 20594

    FOR IMMEDIATE RELEASE: July 13, 2010

    Lack of Rules Requiring Dissemination of Wind Condition Data and Pilot’s Insufficient Rudder Control Cited as Probablye Cause of 2008 Denver Runway Accident

    Washington, DC – The National Transportation Safety Board today determined that the probable cause of the 2008 Continental Airlines flight 1404 runway excursion accident was the captain’s cessation of rudder input, which was needed to maintain directional control of the airplane, about 4 seconds before the aircraft departed the runway, when the airplane encountered a strong and gusty crosswind that exceeded the captain’s training and experience.

    Contributing to the accident was the air traffic control system that did not require or facilitate the dissemination of key available wind information to air traffic controllers and pilots, and inadequate cross wind training in the airline industry due to deficient simulator wind gust modeling.

    On December 20, 2008, Continental Airlines flight 1404 veered off the left side of runway 34R during a takeoff from Denver International Airport. As a result, the captain initiated a rejected takeoff and the airplane came to rest between runways 34R and 34L. There was a post-crash fire.
    All 110 passengers and 5 crewmembers evacuated the airplane immediately after it came to rest. The captain and five passengers were seriously injured.

    At the time of the accident, mountain wave and downsloping wind conditions existed in the Denver area and the strong localized winds associated with these conditions resulted in pulses of strong wind gusts at the surface that posed a threat to operations at Denver International Airport.

    “This aircraft happened to be in the direct path of a perfect storm of circumstances that resulted in an unexpected excursion in an airport with one of the most sophisticated wind sensing systems in the country,” said NTSB Chairman Deborah A.P. Hersman. “It is critical that pilots receive training to operate aircraft when high wind conditions and significant gusts are present, and that sufficient airport-specific wind information be provided to ATC controllers and pilots as well.”

    As a result of this accident the NTSB issued 14 recommendations to the Federal Aviation Administration regarding mountain waves, wind dissemination to flightcrews, runway selection, pilot training for crosswind takeoffs, and crashworthiness.

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    OAG Reports Air Travel Growth, Over 285 Million Seats Offered Worldwide

    WASHINGTON, Feb. 10, 2011 /PRNewswire/ — OAG (www.oag.com), the global leader in aviation intelligence reports that worldwide scheduled airline capacity increased 5% in February, year-on-year, to a total of 285.7 million seats. The number of flights increased 4%, to 2.3 million departures worldwide during the month.

    In its monthly Frequency and Capacity Trend Statistics (FACTS) report, OAG finds all regional markets recorded year-on-year growth in February, with the exception of capacity to and from Central and South America. This region lost 3% of its seat capacity, when compared to the same month last year, feeling the impact again this month of the loss of Mexicana services.

    Although capacity fell in Central and South America, overall; within Lower South America, scheduled capacity increased 12% year-on-year. The Brazilian market is showing the strongest growth in the region, with a 14% increase in domestic capacity in February compared to the same time last year.
    “The current expansion in some South American markets may be at the height of a growth period. The impending rationalization of carriers in the region, and the development of larger alliances such as that proposed by the LAN Group and TAM, could lead to capacity consolidation as network rationalization occurs,” said Peter von Moltke, Chief Executive Officer, UBM Aviation.

    Year-on-year, the two fastest growing markets in the world are those to and from the Middle East, and to and from Asia Pacific, in terms of frequency of service. The total number of flights offered to and from the Middle East grew 13% to a total of 49,014; flights to and from Asia Pacific increased 13% to a total of 55,965.

    Scheduled frequency and capacity to and from Europe was the second fastest growing region among the largest markets with scheduled capacity increasing by 11%, to a total of 21.3 million seats; frequencies increased 10%, to a total of 93,558. Growth within Europe, however, increased a modest 2% in both seat capacity and the total number of flights to a total of 59.5 million seats and 493,150 flights.

    “Medium to long haul carriers continue to build their presence in European markets, with the objective of securing greater shares of the longer haul markets, which traditionally deliver higher yields,” continued von Moltke. “Carriers such as Emirates, Etihad and Qatar Airways will continue to increase flights and open new markets as their development progresses, and increased frequencies to a number of European destinations are expected by these airlines throughout the year.”

    The number of scheduled services both within and to and from North America remained constant year-on-year, although a slight increase in average capacity per flight resulted in more seats being offered. Total capacity to and from this region increased 3%, to a total of 15.5 million.

    This data comes from the February 2011 edition of OAG FACTS (Frequency And Capacity Trend Statistics), a monthly report with interactive graphs to display performance trends of specific airports, routes, countries or regions, sourced from OAG’s consolidated database of global airline schedules. A more detailed review of this month’s OAG FACTS statistics – including information about specific regions, routes and airports – is available to download at: (http://www.oagaviation.com/OAG-FACTS-February-2011-EXECUTIVE-SUMMARY

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    DR. EARL F. WEENER SWORN IN AS NTSB MEMBER

    National Transportation Safety Board
    Washington, DC 20594

    FOR IMMEDIATE RELEASE: June 30, 2010
    SB-10-25

    Earl F. Weener, Ph.D., took the oath of office today as a
    Member of the National Transportation Safety Board.

    Dr. Weener is a licensed pilot who has dedicated his entire
    career to the field of aviation safety. He most recently has
    been a consultant and fellow for the Flight Safety
    Foundation, where he worked to reduce accidents through
    coordinated industry programs.

    From 1984 to 1999, Dr. Weener held a series of positions
    with The Boeing Company, including three Chief Engineer
    positions, in Airworthiness, Reliability and
    Maintainability, and Safety; in System Engineering; and in
    Safety Technology Development. He also served four years as
    Boeing’s Manager of Government Affairs.

    He has served as a general aviation flight instructor and
    Part 135 pilot.

    Dr. Weener earned all three of his academic degrees in
    Aerospace Engineering at the University of Michigan – his
    bachelor’s, master’s and doctorate.

    Among his awards are a 1994 Laurel Award from Aviation Week
    and Space Technology magazine and, in 2005, the Honeywell
    Bendix Trophy for Aviation Safety.

    Dr. Weener’s term as a Member of the NTSB expires December
    31, 2015.

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