Statements (61)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:aircraft
|
gptkbp:can_include |
gptkb:Pilot
Passenger cabin Cargo hold |
gptkbp:designed_by |
gptkb:Aerospace_engineers
|
gptkbp:developed_by |
gptkb:Research_and_development
|
gptkbp:has_part |
gptkb:Wings
Fuselage Landing gear Empennage |
https://www.w3.org/2000/01/rdf-schema#label |
Airframe
|
gptkbp:is_associated_with |
gptkb:traffic_control
gptkb:Pilot_training Flight operations Flight safety Maintenance procedures Repair techniques |
gptkbp:is_critical_for |
Control surfaces
Flight stability |
gptkbp:is_designed_for |
Structural integrity
Aerodynamic efficiency Cost efficiency Weight reduction |
gptkbp:is_evaluated_by |
Computational fluid dynamics
Wind tunnel testing Simulation models Certification authorities |
gptkbp:is_influenced_by |
gptkb:Aerodynamics
Material properties Weight considerations |
gptkbp:is_part_of |
gptkb:civil_aviation
Transportation sector Aircraft design Aircraft manufacturing Engineering field |
gptkbp:is_subject_to |
Structural analysis
Regulatory compliance Load testing Environmental testing Impact testing Vibration testing Fatigue testing |
gptkbp:is_tested_for |
gptkb:safety_standards
gptkb:Endurance Performance standards Performance under stress Operational limits |
gptkbp:is_used_in |
gptkb:military_aircraft
gptkb:Commercial_aviation gptkb:drones General aviation Helicopters Cargo transport Private jets |
gptkbp:made_of |
Aluminum
Composite materials |
gptkbp:manufacturer |
Aircraft manufacturers
|
gptkbp:support |
Payload
Fuel capacity |
gptkbp:bfsParent |
gptkb:Michael_Crichton
|
gptkbp:bfsLayer |
5
|