1 / 57

Aircraft Emergency Evacuation Study with Injured Passengers

Aircraft Emergency Evacuation Study with Injured Passengers. Hae Chang Gea Department of Mechanical and Aerospace Engineering Rutgers University, New Jersey, USA Program Manager: Dr. Mac McLean, FAA, CAMI. Aircraft Emergency Evacuation.

tana
Télécharger la présentation

Aircraft Emergency Evacuation Study with Injured Passengers

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Aircraft Emergency Evacuation Study with Injured Passengers Hae Chang Gea Department of Mechanical and Aerospace Engineering Rutgers University, New Jersey, USA Program Manager: Dr. Mac McLean, FAA, CAMI

  2. Aircraft Emergency Evacuation • Grouped Passenger Behaviors During Emergency Evacuation (Cabin Safety I: 10:30-11:00AM) • Aircraft Emergency Evacuation Study with Injured Passengers (Cabin Safety II: 2:30-3:00PM) • Computer Simulations on Interior Access Vehicles for Emergency Evacuation (Cabin Safety II: 4:30-5:00PM) A full scale test is… • risky, costly, time consuming and inconsistent. Simulations can… • study what-if scenarios and hazardous conditions; • better understanding of the entire evacuation process.

  3. Injured Passengers Injured Passengers • We are referring to all passengers who move in slower speed than regular passengers. • Examples: injured passengers, disabled passengers, and passengers need special assistant.

  4. Outline Injured Passengers with Random Seating • Single Aisle Vehicle • Double Aisle Vehicle Injured Passenger with Assigned Seating • Single Aisle Vehicle • Double Aisle Vehicle Accidental Injury during Emergency Evacuation • Single Aisle Vehicle • Double Aisle Vehicle Conclusions

  5. Randomly Seated Injured Passengers on Single Aisle Vehicle

  6. Injured Passengers (Single-Aisle Vehicle) Type C Type 3 Type C Regular Passengers (Including Fast, Medium, and Slow Speeds) Injured Passengers (Very Slow)

  7. Single Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of the last injured passenger with different moving speed under random seating assignment. Baseline = 68.3 sec

  8. Single Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of the last regular passenger with different moving speed under random seating assignment. Baseline = 68.3 sec Time Costs of Last Injured Passenger

  9. Single Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of all passengers with different moving speed under random seating assignment. Baseline = 68.3 sec Time Costs of Last Injured Passenger

  10. Randomly Seated Injured Passengers on Double Aisle Vehicle

  11. Injured Passengers (Double-Aisle Vehicle) Type A Type A Type 3 Regular Passengers (Including Fast, Medium, and Slow Speeds) Injured Passengers (Very Slow)

  12. Double Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of the last injured passenger with different moving speed under random seating assignment. Baseline = 85.8 sec

  13. Double Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of the last regular passenger with different moving speed under random seating assignment. Baseline = 85.8 sec Time Costs of Last Injured Passenger

  14. Double Aisle Vehicle (Random Seating) Exit Time (sec) Number of Injured Passengers • Exit time of all passengers with different moving speed under random seating assignment. Baseline = 85.8 sec Time Costs of Last Injured Passenger

  15. Comparison of Various Number of Injured Passengers Exit Time (sec) Baseline = 85.8 sec Baseline = 68.3 sec Speed 0.4 0.3 0.2 0.4 0.3 0.2 1 2 3 4 5 Double-Aisle Number of Injured Passengers Single-Aisle

  16. Assigned Seating of Single Injured Passenger on Single Aisle Vehicle

  17. Seat Test: Single Injured Passenger • Evacuation time of the injured passenger who is placed in an assigned seat. Injured Passenger Speed = 0.2

  18. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 68.3 sec

  19. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  20. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  21. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 68.3 sec

  22. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  23. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  24. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 68.3 sec

  25. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  26. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 68.3 sec

  27. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of the injured passenger who is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  28. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  29. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  30. Comparisons of the Worst Case 68.3 sec Exit Time (sec) Baselines Worst Cases with Injuries 14.18% 3.01% -0.35% Single-Aisle 0.2 0.3 0.4 Speed of Injured Passenger

  31. Assigned Seating of Single Injured Passenger on Double Aisle Vehicle

  32. Seat Test: Single Injured Passenger Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat.

  33. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 85.8 sec

  34. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  35. Seat Test: Single Injured Passenger (S=0.2) Injured Passenger Speed = 0.2 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  36. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 85.8 sec

  37. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  38. Seat Test: Single Injured Passenger (S=0.3) Injured Passenger Speed = 0.3 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  39. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of the injured passenger who is placed in an assigned seat. Baseline = 85.8 sec

  40. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  41. Seat Test: Single Injured Passenger (S=0.4) Injured Passenger Speed = 0.4 Exit Time (sec) Seat Assignment • Evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Baseline = 85.8 sec

  42. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of the injured passenger who is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  43. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of the last regular passenger when the single injured passenger is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  44. Comparisons of Evacuation Time Exit Time (sec) Seat Assignment • Comparison of evacuation time of all passengers when the single injured passenger is placed in an assigned seat. Speed = 0.2 Speed = 0.3 Speed = 0.4

  45. Comparison of Individual Injured Passenger 85.8 sec 68.3 sec 13.87% 2.53% -0.16% Exit Time (sec) 14.18% 3.01% -0.35% Baselines Worst Cases with Injuries Double-Aisle Single-Aisle 0.2 0.3 0.4 Vehicle Type Speed of Injured Passenger

  46. Comparison of Individual Injured Passenger

  47. Accidental Injury during Evacuation

  48. Accidental Injury (Single-Aisle Vehicle) Type C Type 3 Type C Regular Passenger (Including Fast, Medium, and Slow Speeds) Injured Passenger (Very Slow, Speed = 0.2) Location of Accidental Injury

  49. Accidental Injury (Single-Aisle Vehicle) Exit Time (sec) • Exit time of the injured passenger under different settings. Baseline = 68.3 sec Worst Case for Injured Passenger

  50. Accidental Injury (Single-Aisle Vehicle) Exit Time (sec) • Exit time of the last regular passengerunder different settings. Baseline = 68.3 sec Worst Case for Injured Passenger Worst Case for Regular Passenger

More Related