Assistance device for transient acceleration and deceleration phases
View Patent ↗A turbine engine for a helicopter, including a gas generator and a free turbine driven in rotation by the gas flow generated by the gas generator is disclosed. The turbine engine further includes a motor/generator coupled to a shaft of the gas generator, to provide a quantity of additional rotational kinetic energy to the shaft during a stage of turbine engine acceleration, or to draw a quantity of rotational kinetic energy from the shaft during a stage of turbine engine deceleration.
1. A turbine engine of an aircraft, comprising:
a gas generator and a free turbine driven in rotation by the gas flow generated by the gas generator;
a first electricity generator coupled to a shaft of the free turbine;
a storage unit electrically connected to the first electricity generator; and
an electric motor/generator electrically connected to the storage unit and mechanically coupled to a shaft of the gas generator,
wherein the shaft of the free turbine is coupled to a rotor of a helicopter,
wherein the storage unit supplies power to the motor/generator during a stage of turbine engine acceleration to provide a quantity of additional rotational kinetic energy to the gas generator shaft and stores a quantity of kinetic energy drawn from the gas generator shaft by the motor/generator in a form of electrical energy during a stage of turbine engine deceleration, and
wherein the storage unit is recharged by the first electricity generator.
2. A turbine engine according to claim 1 , further comprises a converter and an electronic control device that are positioned between the motor/generator and the storage unit.
3. A turbine engine according to claim 1 , wherein the storage unit is an electric battery, or a group of supercapacitors, or a combination of both.
4. A turbine engine according to claim 1 , wherein the motor/generator starts the gas generator while starting the turbine engine.
5. A turbine engine of an aircraft, comprising:
a gas generator and a free turbine driven in rotation by the gas flow generated by the gas generator;
a first electricity generator coupled to a shaft of the free turbine;
a storage unit electrically connected to the first electricity generator;
an electric motor/generator electrically connected to the storage unit and mechanically coupled to a shaft of the gas generator; and
a converter and an electronic control device positioned between and electrically connected to the motor/generator and the storage unit,
wherein the shaft of the free turbine is coupled to a rotor of a helicopter,
wherein the storage unit supplies power to the motor/generator during a stage of turbine engine acceleration to provide a quantity of additional rotational kinetic energy to the gas generator shaft and stores a quantity of kinetic energy drawn from the gas generator shaft by the motor/generator in a form of electrical energy during a stage of turbine engine deceleration,
wherein the storage unit is recharged by the first electricity generator, and
wherein the motor/generator starts the gas generator while starting the turbine engine.
6. A turbine engine according to claim 5 , wherein the storage unit is an electric battery, or a group of supercapacitors, or a combination of both.
7. A turbine engine according to claim 1 , further comprising a second motor/generator that includes the first electricity generator, the second motor/generator is coupled to a shaft of the rotor, and wherein the motor/generator includes a second electricity generator.
8. A turbine engine according to claim 5 , further comprising a second motor/generator that includes the first electricity generator, the second motor/generator is coupled to a shaft of the rotor, and wherein the motor/generator includes a second electricity generator.