A subsea pump, distinctive in that it comprises a pressure housing divided into two compartments; a compartment with pump or impellers arranged on a shaft and a compartment with motor or a stator; a diaphragm arranged sealingly between the compartments, a magnetic coupling between the compartments, through the diaphragm; and a pressure compensation system for balancing the pressure on the diaphragm of the motor or stator compartment side to the pressure on the diaphragm of the pump or impeller compartment side.
1. A subsea pump, comprising:
a pressure housing divided into a first compartment and a hermetically-sealed second compartment;
the first compartment having disposed therein at least one of a pump and an impeller, the at least one of a pump and an impeller being arranged on a first shaft for pumping of a process fluid;
the hermetically-sealed second compartment having disposed therein one of a motor and a stator of a motor, the motor comprising a rotor arranged on a second shaft;
a wall arranged sealingly between the first compartment and the second compartment with the first shaft and the second shaft on opposite sides of the wall;
a magnetic coupling between the first compartment and the second compartment, coupling the first shaft and the second shaft through the wall;
a pressure balancing system arranged between the first compartment and the hermetically-sealed second compartment for balancing pressure over the wall between the first compartment and the second compartment;
a cooling fluid pump arranged on one of the second shaft and the rotor;
a hermetically-sealed cooling circuit coupled to and from the second compartment;
a combined liquid for flushing, lubrication and cooling, and filling the hermetically sealed second compartment, the combined liquid being pumped by the cooling fluid pump through the hermetically sealed cooling circuit and at least one bearing positioned within the hermetically-sealed second compartment, the combined liquid for cooling, flushing and lubricating the at least one bearing;
wherein the subsea pump is without an external barrier fluid supply.
2. The subsea pump according to claim 1 , wherein the pressure balancing system controls a pressure differential over the wall to be less than 5 bar by balancing the pressures on either side of the wall.
3. The subsea pump according to claim 1 , wherein the second compartment is filled with one of water/glycol and oil as the combined liquid for flushing, lubrication, and cooling, said combined liquid flows in a closed circuit including at least one filter.
4. The subsea pump according to claim 1 , wherein the subsea pump is vertically oriented and the wall has a shape like a hat, wherein the rotor is cooled by the combined liquid through of radial conduits that are disposed in a bottom portion of the rotor, and wherein conduits for the combined liquid are also arranged through a radial bearing adjacent the rotor.
5. The subsea pump according to claim 1 , wherein the subsea pump is vertically oriented and the wall has a shape like a cup, wherein the rotor is cooled by the combined liquid through conduits arranged inside the rotor and radially out through the rotor.
6. The subsea pump according to claim 1 , wherein the at least one bearing is arranged axially apart from the magnetic coupling.
7. The subsea pump according to claim 1 , wherein the subsea pump comprises a port so that the combined liquid in the second compartment can be filled or exchanged subsea by a Remotely Operated Vehicle.