System for cooling a fluid with a microchannel evaporator
A microchannel evaporator includes a plurality of microchannels. Each of the plurality of microchannels includes a first end and a second end. A first end-tank is coupled to each first end of the plurality of microchannels and a second end-tank is coupled to each second end of the plurality of microchannels. An inlet is coupled to the first end-tank for receiving a fluid into the microchannel evaporator and an outlet is coupled to the second end-tank for expelling the fluid from the microchannel evaporator. Each microchannel of the plurality of microchannels is substantially U-shaped.
1. A heat exchanger system comprising:
a fluid tank;
a lid adapted to seal the fluid tank and comprising a first-fluid inlet to permit a first fluid to enter the fluid tank and a first-fluid outlet to permit the first fluid to exit the fluid tank;
a microchannel evaporator disposed within the fluid tank, the microchannel evaporator comprising:
a plurality of microchannels, each microchannel of the plurality of microchannels comprising a first end portion that terminates in a first end and a second end portion that terminates in a second end, wherein the first end portion is parallel to the second end portion, and the first end portion and the second end portion are joined together by a single bend to form a U shape;
a first end-tank coupled to each said first end portion of the plurality of microchannels;
a second end-tank coupled to each said second end portion of the plurality of microchannels;
wherein the first end-tank and the second end-tank are disposed in the fluid tank;
a second-fluid inlet coupled to the first end-tank for receiving a second fluid into the microchannel evaporator; and
a second-fluid outlet coupled to the second end-tank for expelling the second fluid from the microchannel evaporator; and
a first baffle disposed between the first and second end portions of the plurality of microchannels, the first baffle comprising a first planar portion extending in a first direction from a first end of the fluid tank to a second end of the fluid tank and a second planar portion extending in a second direction between the first and second end portions of the plurality of microchannels, wherein the first baffle directs the first fluid to flow past the plurality of microchannels a first time, wherein the first baffle comprises a cutout through which the plurality of microchannels pass.
2. The heat exchanger system of claim 1 , comprising a second baffle positioned within the fluid tank that causes the first fluid to flow past the plurality of microchannels a second time.
3. The heat exchanger system of claim 2 , comprising a third baffle positioned within the fluid tank that causes the first fluid to flow past the plurality of microchannels a third time.
4. The heat exchanger system of claim 1 , wherein the second-fluid outlet comprises a diameter that is larger than a diameter of the first-fluid inlet.
5. The heat exchanger system of claim 1 , comprising at least one fin disposed in a first gap of the plurality of microchannels.
6. The heat exchanger system of claim 5 , wherein the at least one fin extends along only a portion of a length of a microchannel of the plurality of microchannels.
7. The heat exchanger system of claim 1 , wherein said each microchannel of the plurality of microchannels has a rectangular cross-section.
8. The heat exchanger system of claim 1 , comprising a cooling system coupled to the microchannel evaporator for cooling the second fluid.
9. The heat exchanger system of claim 1 , wherein the first fluid comprises oil and the first fluid is circulated between an external machine and the fluid tank to reject heat.
10. The heat exchanger system of claim 1 , wherein the second fluid comprises a refrigerant.
11. The heat exchanger system of claim 1 , wherein the second fluid comprises a coolant.
12. The heat exchanger system of claim 1 , wherein the microchannel evaporator comprises a plurality of fins disposed in a first gap of the plurality of microchannels, and wherein the plurality of fins are spaced so that there are between 5 and 8.5 fins per inch.