Static gas thrust bearing
A two stage centrifugal compressor including a first impeller and a second impeller rigidly coupled via a rotational shaft, an electric motor for driving the rotational shaft, the first impeller configured to compress a low pressure fluid to generate a pressurized fluid, a first fluid flow channel to couple a first portion of the pressurized fluid to a first static gas thrust bearing for supporting the first impeller, a second fluid flow channel to couple a second portion of the pressurized fluid to the second impeller, the second impeller configured to compress the pressurized fluid to generate a high pressure fluid, a third fluid flow channel to couple a first portion of the high pressure fluid to a second static gas thrust bearing for supporting the second impeller, and a second fluid flow channel to couple a second portion of the pressurized fluid to an output.
1 . A centrifugal compressor comprising:
an input configured to receive a low pressure fluid;
a first compressor for receiving the low pressure fluid from the input, for compressing the low pressure fluid to generate a pressurized fluid and for coupling a first portion of the pressurized fluid to a first output and a second portion of the pressurized fluid to a first thrust bearing intake;
a first thrust bearing including a first bearing plate rigidly affixed to a compressor housing and a first bearing runner rigidly affixed to a first rotational shaft of the first compressor, wherein the first bearing plate includes a first plurality of feeding holes for coupling the second portion of the pressurized fluid from the first thrust bearing intake to a first interface between the first bearing plate and the first bearing runner such that the first bearing plate and the first bearing runner are separated by the second portion of the pressurized fluid during a rotation of the first compressor, and
an electric motor for rotating the first rotational shaft of the first compressor to rotate a first impeller within the first compressor and wherein the low pressure fluid is routed from the input, through the electric motor to the first compressor.
2 . The centrifugal compressor of claim 1 further including:
a second compressor for receiving the first portion of the pressurized fluid, for compressing the pressurized fluid to generate a high pressure fluid and for coupling a first portion of the high pressure fluid to a second output and a second portion of the high pressure fluid to a second thrust bearing intake; and
a second thrust bearing including a second bearing plate rigidly affixed to the compressor housing and a second bearing runner rigidly affixed to a second rotational shaft of the second compressor, wherein the second bearing plate includes a second plurality of feeding holes for coupling the second portion of the high pressure fluid from the second thrust bearing intake to a second interface between the second bearing plate and the second bearing runner such that the second bearing plate and the second bearing runner are separated by the second portion of the high pressure fluid during a rotation of the second compressor.
3 . The centrifugal compressor of claim 2 wherein the first rotational shaft and the second rotational shaft form a drive shaft rotated by an electric motor.
4 . The centrifugal compressor of claim 1 wherein the electric motor is located within the compressor housing between the first compressor and a second compressor and wherein the rotational shaft of the first compressor rotates a second impeller of the second compressor.
5 . The centrifugal compressor of claim 1 wherein the centrifugal compressor forms a portion of a cooling system and the low pressure fluid is a refrigerant received from an evaporator.
6 . The centrifugal compressor of claim 1 wherein the plurality of feeding holes are configured in a pattern around an axis of rotation of the first rotational shaft and wherein each of the plurality of feeding holes has a cross sectional shape including at least one of a circular shape, a rectangular shape, an elliptical shape and a square shape.
7 . The centrifugal compressor of claim 1 wherein a ratio of the first portion of the pressurized fluid and a second portion of the pressurized fluid is regulated in response to a cross sectional area of the first thrust bearing intake and a cross sectional area of the first output.
8 . The centrifugal compressor of claim 1 wherein the first bearing plate is configured to support the first bearing runner during the rotation of the first compressor.