Statements (53)
Predicate | Object |
---|---|
gptkbp:instance_of |
gptkb:engine
|
gptkbp:benefits |
gptkb:Reliability
Noise pollution High initial cost High power-to-weight ratio |
gptkbp:can_be_used_with |
Steam turbine
Combined cycle power plant |
gptkbp:developed_by |
Aerospace companies
Energy companies |
gptkbp:fuel_capacity |
Varies by design
|
gptkbp:fuel_type |
gptkb:engine
Natural gas |
gptkbp:game_components |
gptkb:Compressor
Turbine Combustor |
gptkbp:has_ability |
Electrical power
Mechanical power |
gptkbp:has_programs |
Aerospace
Oil and gas industry Energy generation |
gptkbp:has_style |
gptkb:engine
Aero engine Industrial gas turbine |
https://www.w3.org/2000/01/rdf-schema#label |
Gas turbine engine
|
gptkbp:invention |
gptkb:Frank_Whittle
gptkb:Hans_von_Ohain |
gptkbp:is_optimized_for |
gptkb:military_unit
Efficiency High altitude performance |
gptkbp:is_part_of |
Propulsion system
Power generation system Gas turbine power plant Jet propulsion system |
gptkbp:is_subject_to |
Mechanical stress
Thermal stress |
gptkbp:is_tested_for |
Dynamometer
Engine test facility |
gptkbp:is_used_in |
gptkb:aircraft
gptkb:spacecraft Power plants Helicopters Marine propulsion |
gptkbp:maintenance |
gptkb:Overhaul
Regular inspections |
gptkbp:operates |
Brayton cycle
|
gptkbp:operational_area |
Thermal efficiency
Propulsive efficiency |
gptkbp:regulates |
Aviation authorities
Environmental agencies |
gptkbp:bfsParent |
gptkb:LCAC
gptkb:LCAC-1 gptkb:LCAC-100 |
gptkbp:bfsLayer |
4
|