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List of Appendices
Appendix 1
Meteorological study undertaken by Météo France
Appendix 2
TEMSI SOUTH AMERICA chart for 1st June at 0 h 00 between FL 250 and 630
Appendix 3
Transcript of radio communications concerning flight AF447
Appendix 4
Chronology of recovery of bodies and airplane parts
Appendix 5
Reference of procedures associated with some ECAM messages
Appendix 6
ATC flight plan supplied by Air France
Appendix 7
Study of route dossiers and associated fuel
Appendix 8
Extract from Air France manual on fuel policy
Appendix 9
Procedure for flight with unreliable IAS / ADR check
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Appendix 1
Meteorological study undertaken by Météo France
Meteorological situation in the tropical atlantic on 1st june 2009
1. General situation
1.1. On the surface of the ocean
1.2. Wind field of lower and mid-altitude layers
1.3. Wind field at altitude
1.4. Evaluation of the tropopause
2. Description of the Inter-tropical Convergence Zone on 1st June 2009
2.1. Position of the Inter-tropical Convergence Zone (ITCZ)
2.2. Storm activity in the ITCZ characterised by météosat 9 infrared
2.2.1. Phenomenology: cumulonimbus and associated phenomena,
storm clusters
2.2.2. Advantages and limitations of geostationary infrared imagery
2.2.3. Analysis of the storm activity in the ITCZ over four days (from
30 May to 3 June 2009)
2.3. Analysis of the cluster located on the planned route
2.3.1. Evolution observed between 0 h 00 and 3 h 00
2.3.2. Detailed analysis of the image taken at 2 h 07
2.3.3. Analysis based on “Rapid Developing Thunderstorm”
processing
2.3.4. Summary
2.4. Observations by an aircraft equipped with the AMDAR system
3. Conclusions on the analysis of the meteorological situation
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1. General situation
Analysis of the situation on a wide scale in the tropical Atlantic is based on
the pressure and wind charts produced by the digital global weather forecast
models, developed from all of the observations available in real time.
1.1 On the surface of the ocean
Analysis of the pressure field drawn up for the 1st June 2009 at 0 h 00 with
the aid of the Météo-France ARPEGE global model, shows the presence of a
shallow low at sea level, characterised by pressure gradients of the order of
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