EP2492451B1

Aircraft with low pressure spool emergency generator

Abstract

This record has no abstract on file.

EP2492451B1, drawing sheet 1
Sheet 1 of 3

Term

5.4 yearsleft in the term

Expires 28 February 2032.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

12 claims: 8 independent, 4 dependent

  1. 1
    An aircraft including an emergency power system (54), the aircraft having one or more thrust producing gas turbine engine(s) and one or more auxiliary power unit(s), each gas turbine engine (10) having a low pressure spool (20) and a high pressure spool (28) and the emergency power system being for use in the event of an emergency comprising all thrust-producing gas turbine engine(s) and auxiliary power unit(s) of the aircraft failing to operate normally, the emergency power system comprising:an emergency electrical generator (48) configured to be coupled to the low pressure spool during an emergency for generating emergency electrical power;one or more electrical power sources in addition to the auxiliary power unit(s) of the aircraft (48A,66,70,72,74);a plurality of electrical loads (78,78A) electrically connected to the emergency electrical generator and the one or more additional electrical power sources;aircraft sensors (96A-96G) for providing data regarding emergency electrical power availability and emergency electrical power demand, wherein the aircraft sensors include current sensors (92A) for sensing current generated by each of the emergency electrical generator and the one or more additional electrical power sources, and current sensors (92B) for sensing current demand by each of the plurality of electrical loads;and a controller (94) for controlling the emergency electrical generator, wherein the controller is configured to determine emergency electrical power demand and emergency electrical power availability based upon data from the aircraft sensors;wherein the controller is configured to develop an energy extraction plan to increase total energy extracted from a windmilling fan (36) attached to the low pressure spool over an anticipated duration of the emergency based upon the emergency electrical power demand and the emergency electrical power availability, and wherein the controller is configured to control the emergency electrical generator according to the energy extraction plan.
  2. 3
    The aircraft of any one of claims 1 to 2, wherein the controller is configured to signal a main motor-generator (44) to rotate the high pressure spool to store energy, and wherein the controller is configured to signal the main motor-generator to extract energy from the high pressure spool to recover previously stored energy.
  3. 4
    The aircraft of any one of claims 1 to 3, wherein the aircraft sensors further include a speed sensor (96A), an altitude sensor (96B), an attitude sensor (96C), a GPS antenna (96D), a high pressure shaft sensor (96E), a low pressure shaft sensor (96F), and a landing gear sensor (96G).
  4. 5
    A method for operating an emergency electrical generator (48) coupled to a low pressure spool (20) of a gas turbine engine (10) of an aircraft during an emergency comprising all thrust-producing gas turbine engine(s) and auxiliary power unit(s) of the aircraft failing to operate normally, the method comprising:sensing data regarding emergency electrical power availability from the emergency electrical generator and one or more electrical power sources provided in addition to the auxiliary power unit(s) of the aircraft (48A,66,70,72) using current sensors (92A) for sensing current generated by each of the emergency electrical generator and the one or more electrical power sources;sensing data regarding emergency electrical power demand from a plurality of electrical loads electrically connected to the emergency electrical generator and the one or more additional electrical power sources using current sensors (92B) for sensing current demand by each of the plurality of electrical loads;developing an energy extraction plan to increase total energy extracted from a windmilling fan (36) attached to the low pressure spool over an anticipated duration of the emergency based upon the emergency electrical power demand and the emergency electrical power availability;and controlling the emergency electrical generator according to the energy extraction plan.
  5. 9
    The method of any one of claims 5 to 8, and further comprising:determining altitude and distance to a suitable landing strip as part of developing the energy extraction plan;and/or determining power needed for a safe landing and coming to a controlled stop as part of developing the energy extraction plan.
  6. 10
    The method of any one of claims 5 to 9, and further comprising:automatically decoupling one or more of the electrical loads from the emergency electrical generator as part of the energy extraction plan;wherein the electrical loads are decoupled based upon a priority rank assigned to each of the electrical loads.
  7. 11
    The method of any one of claims 5 to 10, and further comprising:driving a main motor-generator to rotate a high pressure spool of the gas turbine engine to store energy in the high pressure spool;and extracting energy from the high pressure spool via the main motor-generator.
  8. 12
    The method of any one of claims 5 to 11, wherein the energy extraction plan avoids stalling the windmilling fan during flight.