EP3552670A1

Systems and methods for providing power and fire supression using a turbo pump, compressed gas, and an obiggs

Abstract

A system (104) includes a turbo pump (206) to convert compressed gas into power, a storage tank (200, 202, 204) to store the compressed gas, and a fire suppression control valve (208) having a closed position in which the compressed gas is prevented from flowing to the cargo compartment (102) and an open position in which the compressed gas is ported to the cargo compartment (102) to suppress a fire. The system (104) also includes a pump control valve (212) having a closed position in which the compressed gas is prevented from flowing to the turbo pump (206) and an open position in which the compressed gas is ported to the turbo pump (206) to cause the turbo pump (206) to convert the compressed gas into the power. The system also includes an OBIGGS (118) to convert bleed air from a gas turbine engine (114) into an inert gas to provide low rate discharge (LRD) fire suppression to the cargo compartment (102).

EP3552670A1, drawing sheet 1
Sheet 1 of 6

Term

12.5 yearsto projected expiry

Projected expiry 8 April 2039, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 6 independent, 9 dependent

  1. 1
    A system for providing supplemental power and fire suppression on an aircraft having a gas turbine engine, comprising:a turbo pump configured to convert a compressed gas into at least one of electrical power, hydraulic power, or pneumatic power;a storage tank configured to store the compressed gas;a fire suppression control valve configured to be coupled between the storage tank and a cargo compartment of the aircraft and having a suppression closed position in which the compressed gas is prevented from flowing to the cargo compartment and a suppression open position in which the compressed gas is ported through the fire suppression control valve to the cargo compartment to suppress a fire;a pump control valve configured to be coupled between the turbo pump and the storage tank and having a pump closed position in which the compressed gas is prevented from flowing to the turbo pump and a pump open position in which the compressed gas is ported through the pump control valve to the turbo pump to cause the turbo pump to convert the compressed gas into the at least one of the electrical power, the hydraulic power, or the pneumatic power;and an On Board Inert Gas Generating System (OBIGGS) configured to receive additional pneumatic, hydraulic, or electric power from the gas turbine engine and to generate an inert gas to provide low rate discharge (LRD) fire suppression to the cargo compartment.
  2. 5
    The system of any preceding claim, further comprising a turbine exhaust selector valve located between the turbo pump and the cargo compartment and having an overboard position in which exhaust from the compressed gas used by the turbo pump is directed out of the aircraft, and a cargo position in which the exhaust from the compressed gas used by the turbo pump is directed into the cargo compartment to suppress the fire.
  3. 6
    The system of any preceding claim, wherein the OBIGGS is further configured to provide the inert gas to a fuel tank of the aircraft.
  4. 8
    The system of any preceding claim, further comprising an input device configured to receive user input corresponding to desired operation of the OBIGGS and a controller coupled to the OBIGGS and configured to cause the OBIGGS to perform the desired operation based on the user input.
  5. 9
    An aircraft, comprising:a cargo compartment;a gas turbine engine;and a system as claimed in any preceding claim;wherein the fire suppression control valve is configured to be coupled between the storage tank and the cargo compartment.
  6. 12
    A method for providing supplemental power and fire suppression on an aircraft, comprising:identifying, by a controller, whether a fire condition exists or a fire condition does not exist in a cargo compartment of the aircraft;controlling, by the controller, a fire suppression control valve in fluidic communication with a storage tank and the cargo compartment such that the fire suppression control valve is maintained in a suppression closed position in response to identifying that the fire condition does not exist in which compressed gas stored in the storage tank is prevented from flowing to the cargo compartment or changing the fire suppression control valve to a suppression open position in which the compressed gas in the storage tank is ported through the fire suppression control valve to the cargo compartment in response to identifying that the fire condition exists;controlling, by the controller, an On Board Inert Gas Generating System (OBIGGS) to receive bleed air from a gas turbine engine and to convert the bleed air into an inert gas to provide low rate discharge (LRD) fire suppression to the cargo compartment in response to identifying that the fire condition exists;identifying, by the controller, whether a power condition exists in which the aircraft has lost electrical or hydraulic power or whether the power condition does not exist;and controlling, by the controller, a pump control valve in fluidic communication with the storage tank and with a turbo pump such that the pump control valve is in a pump closed position such that the compressed gas is prevented from flowing to the turbo pump in response to identifying that the power condition does not exist or a turbo pump open position in which the compressed gas is ported through the pump control valve to the turbo pump to cause the turbo pump to convert the compressed gas into at least one of electrical power, hydraulic power, or pneumatic power in response to identifying that the power condition exists.