Electric machine cooling
An example system includes a housing configured to house a portion of an electric machine and a heat transfer material, the heat transfer material is configured to contact a conductor of the portion of the electric machine and to remove heat from the conductor and transfer heat to the housing. The system includes a coolant configured to remove heat from the housing. An inner surface of the housing comprises a plurality of structures configured to increase an inner surface area of the housing, wherein the plurality of structures are configured to contact the heat transfer material.
1. A system comprising:
a housing configured to house a portion of an electric machine and a refrigerant, wherein the refrigerant is configured to contact a conductor of the portion of the electric machine, wherein the refrigerant is configured to remove heat from the conductor and transfer heat to the housing; and
a coolant configured to remove heat from the housing,
wherein an inner surface of the housing comprises a plurality of structures configured to increase an inner surface area of the housing, wherein the plurality of structures are configured to contact the refrigerant,
wherein a portion of the refrigerant is vaporized and a portion of the refrigerant is liquid, wherein the plurality of structures are configured to cause vaporized refrigerant to condense on a surface area of the structures,
wherein the plurality of structures are configured to direct condensed refrigerant to contact the conductor.
2. The system of claim 1 , wherein the refrigerant is at least one of HFO-1233zd, r-1233zd, R-11, or R-123.
3. The system of claim 1 , wherein the plurality of structures comprise a plurality cooling fins.
4. The system of claim 1 , wherein the refrigerant is electrically non-conductive.
5. The system of claim 1 , wherein the coolant is ethylene glycol or water-glycol.
6. The system of claim 1 , wherein the housing is configured to maintain a pressure range, wherein the pressure range is such that a first portion of the refrigerant is liquid and a second portion of the refrigerant is vapor.
7. The system of claim 6 , wherein the housing is configured to contain the refrigerant within a stator portion of the housing separate from a rotor portion of the housing and separate from the coolant.
8. The system of claim 7 , wherein the housing comprises a cooling jacket further configured to guide a flow of the coolant within the cooling jacket via one or more channels separate from the stator portion of the housing.
9. The system of claim 6 , further comprising a wicking structure configured to move the first portion of the refrigerant that is liquid to a portion of the conductor above a liquid refrigerant level.
10. A mechanical and cooling system, comprising;
a rotary mechanical system, comprising:
an electric machine;
a housing at least partially enclosing one or more components of the electric machine, the housing defining:
an electrical cavity housing one or more electrical components, wherein an inner surface of the housing comprises a plurality of structures configured to increase an inner surface area of the electrical cavity; and
a coolant cavity,
wherein the housing includes a two-phase refrigerant sealed within the electrical cavity,
wherein a portion of the two-phase refrigerant is vaporized and a portion of the two-phase refrigerant is liquid, wherein the plurality of structures are configured to cause vaporized two-phase refrigerant to condense on a surface area of the structures,
wherein the plurality of structures are configured to direct condensed two-phase refrigerant to contact the one or more electrical components or to contact the liquid refrigerant; and
a liquid cooling system fluidically coupled to the coolant cavity and configured to supply a liquid coolant to the coolant cavity.
11. The mechanical and cooling system of claim 10 , wherein the refrigerant is at least one of HFO-1233zd, r-1233zd, R-11, or R-123.
12. The mechanical and cooling system of claim 10 , wherein the two-phase refrigerant is electrically non-conductive.
13. The mechanical and cooling system of claim 10 , wherein the housing is configured to maintain a pressure range within the electrical cavity, wherein the pressure range is such that a first portion of the two-phase refrigerant is liquid and a second portion of the two-phase refrigerant is vapor.
14. The mechanical and cooling system of claim 13 , further comprising a wicking structure configured to move the first portion of the two-phase refrigerant that is liquid to a portion of the conductor above a liquid refrigerant level.
15. The mechanical and cooling system of claim 10 , wherein the plurality of structures comprise a plurality cooling fins.