Coupling of a turbopump for molten salts
The invention relates to a device comprising at least one vertical pump ( 3 ) and at least one associated turbine ( 4 ) for transporting, over a level difference, a heat-transfer fluid brought to a high temperature, wherein the device further comprises a device for mechanically coupling the turbine ( 4 ) with the pump ( 3 ), comprising a gearbox ( 21 ) with a gimbal coupling ( 41 ) located on the turbine ( 4 ) side, allowing the mechanical energy produced by the turbine ( 4 ) to be reused to actuate the pump ( 3 ).
1. A device comprising at least one centrifugal vertical axis pump ( 3 ) and at least one associated centrifugal vertical axis turbine ( 4 ) for transporting, over a level difference, a heat-transfer fluid brought to a high temperature, the pump ( 3 ) ensuring an upward movement of said fluid in a first section of a pipe ( 17 ) from a first cold storage reservoir ( 2 ) and the turbine ( 4 ) being actuated by said fluid during the downward return movement of said fluid in a second section of the pipe ( 17 ) toward a second hot storage reservoir ( 5 ), wherein the device further comprises a mechanical device for coupling the turbine ( 4 ) with the pump ( 3 ), said mechanical coupling device comprising a gearbox ( 21 ) with a gimbal coupling ( 41 ) located on the turbine ( 4 ) side, allowing the mechanical energy produced by the turbine ( 4 ) to be reused to actuate the pump ( 3 ), and wherein the centrifugal turbine ( 4 ) is a device substantially identical to the centrifugal pump ( 3 ) and has a vertical axis parallel to and of the same orientation as the centrifugal pump ( 3 ), but operated for having fluid flowing in the opposite direction.
2. The device according to claim 1 , wherein the pump ( 3 ) or the turbine ( 4 ) is mono- or multi-staged, uni- or multi-cellular and has wheels with closed or semi-open radial vanes.
3. The device according to claim 1 , wherein the pump ( 3 ) and the turbine ( 4 ) are designed to operate with a mixture of molten salts selected from the group consisting of sodium nitrate, potassium nitrate and lithium nitrate.
4. The device according to claim 1 , wherein the pump ( 3 ) and the turbine ( 4 ) are designed to operate with a mixture of molten salts having pressures up to 60 bar.
5. The device according to claim 1 , wherein the pump ( 3 ) and the turbine ( 4 ) are designed to operate with a mixture of molten salts whereof the temperature is comprised between 100 and 600° C.
6. A concentrated solar power plant comprising:
a plurality of heliostats positioned on the ground around a central concentration tower ( 1 ), said tower comprising at its apex at least one thermo-solar exchanger ( 20 );
a first circuit ( 17 ) for transporting molten salts from the first cold storage reservoir ( 2 ) to said exchanger ( 20 ) and returning the molten salts brought to high temperature to second storage reservoir ( 5 ), said exchanger ( 20 ) being located at the apex of the tower ( 1 ), a height that is greater than that of the reservoirs ( 2 , 5 );
a second circuit ( 18 ) for generating steam by means of heat exchange with the first circuit ( 17 ) of molten salts and producing electricity by means of a turbine/generator system ( 7 , 8 , 9 );
wherein the power plant further comprises the device comprising at least one vertical axis pump ( 3 ) and at least one associated vertical axis turbine ( 4 ) according to claim 1 .
7. The device according to claim 1 , wherein the centrifugal vertical axis turbine ( 4 ) is a reverse pump of the same design as the at least one centrifugal vertical axis pump ( 3 ) but with different vane wheels.