IP Library Patent Application 15107700
Patent Application
App. No. 15/107,700

METHOD FOR CONTROLLING A PROPULSION SYSTEM

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Quick Facts
Patent No.
US None
App. No.
15/107,700
Abstract

The invention relates to the field of propulsion assemblies, and in particular to rocket engines of the “expander” type, wherein at least one propulsion chamber ( 40 ) is fed with at least a first propellant by a first pump ( 33 ) coupled to a first turbine ( 34 ) that is driven by partial expansion of said first propellant upstream from said propulsion chamber ( 40 ) after passing, downstream from the first pump ( 33 ), through a heat exchanger ( 23 ) heated by said propulsion chamber ( 40 ). A method of the invention for controlling such a propulsion assembly ( 10 ) comprises the steps of determining whether there exists a risk of instability for the propulsion assembly ( 10 ), and in response to determining that said risk of instability exists, using a branch connection ( 28 ) situated between the first turbine ( 34 ) and the propulsion chamber ( 40 ) to shed a portion of said first propellant.

Claims (19)

1 . A control method for controlling a propulsion assembly in which at least one propulsion chamber is fed with at least a first propellant by a first pump coupled to a first turbine that is driven by partial expansion of said first propellant upstream from said propulsion chamber after passing, downstream from the first pump, through a heat exchanger heated by said propulsion chamber, the control method comprising the steps of:

determining whether there exists a risk of instability for the propulsion assembly; and

in response to determining that said risk of instability exists, using a branch connection situated between the first turbine and the propulsion chamber to shed a portion of said first propellant.

2 . The control method according to claim 1 , wherein said propulsion chamber is fed with a second propellant by a second pump.

3 . The control method according to claim 2 , wherein said second pump is coupled to a second turbine that is also actuated by partial expansion of said first propellant after it has passed through the heat exchanger.

4 . The control method according to claim 3 , wherein said second turbine is situated downstream from the first turbine.

5 . The control method according to claim 1 , wherein said risk of instability is determined as a function of a pump flow rate coefficient (φ + ) of said first pump, calculated by dividing a volume flow rate of said first propellant driven by the first pump by an angular velocity of the first pump.

6 . The control method according to claim 5 , wherein the volume flow rate of the first propellant driven by the first pump is estimated indirectly on the basis of physical parameters other than said volume flow rate of the first propellant.

7 . The control method according to claim 5 , wherein it is determined there is a risk of instability if said pump flow rate coefficient (φ + ) of the first pump is less than a predetermined threshold.

8 . The control method according to claim 1 , wherein said risk of instability is determined in application of an instability criterion calculated as a function of at least one physical parameter.

9 . A propulsion assembly comprising at least:

a propulsion chamber;

a first pump for feeding said propulsion chamber with a first propellant;

a heat exchanger connected upstream to the first pump and suitable for being heated by said propulsion chamber;

a first turbine coupled to the first pump and suitable for being driven by partial expansion of said first propellant, and connected upstream to the heat exchanger and downstream to the propulsion chamber;

a branch connection situated between the first turbine and the propulsion chamber; and

a control unit connected to at least one branch connection valve situated on said branch connection;

the propulsion assembly being characterized in that the control unit is configured to determine whether there is a risk of instability for the propulsion assembly, and to cause said branch connection valve to be opened to shed a portion of the flow of said first propellant via said branch connection in response to determining that said risk of instability exists.

10 . A data medium including a set of instructions for performing a control method according to claim 1 by means of a control unit connected to at least one branch connection valve (VTH) situated on said branch connection.

Assignments (3)
CHANGE OF NAME Recorded Nov 20, 2017
From: AIRBUS SAFRAN LAUNCHERS SAS
To: ARIANEGROUP SAS
Reel/Frame 044800/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: SNECMA
To: AIRBUS SAFRAN LAUNCHERS SAS
Reel/Frame 044787/0425 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2016
From: LE BOUAR, GAËLLE
To: SNECMA
Reel/Frame 039002/0305 →