TWO-PHASE SEMI-IMMERSION THERMAL SYSTEM FOR ENERGY STORAGE AND OTHER ELECTRICAL/ELECTRONIC DEVICES
A system and method for an energy storage device having improved thermal management is provided. The system includes a number of energy storage cells spaced apart from one another and contained in a housing that can be pressure sealed. The system can include a pipe containing fluid circulating within the pipe and a liquid within the housing, where an amount of the liquid is less than half of a volume within the housing. Thermal energy is transferred between an area within the housing and at least a portion of a wall of the pipe.
1 . A battery module, comprising:
a housing comprising a base surface, a top surface, and sidewalls extending from a periphery of the base surface,
wherein the sidewalls, the top surface, and the base surface define a containment cavity comprising a volume, and
wherein the housing is sized to receive a battery cell;
an array of battery cells at least partially disposed within the housing;
a pipe containing fluid circulating within the pipe; and
a liquid comprised within the housing, wherein an amount of the liquid is less than half of the volume, and
wherein thermal energy is transferred between an area within the housing and at least a portion of a wall of the pipe.
2 . The battery module of claim 1 , wherein the containment cavity is a pressure-sealed cavity.
3 . The battery module of claim 2 , wherein fluid circulating within the pipe is on an outer side of the top surface of the housing and wherein the top surface comprises the portion of the wall of the pipe or the top surface is in contact with the portion of the wall of the pipe.
4 . The battery module of claim 3 , wherein an interior surface of the housing comprises dimples.
5 . The battery module of claim 4 , wherein each one of the dimples align in a vertical direction with each one of the battery cells in the array of battery cells.
6 . The battery module of claim 3 , further comprising a condenser connected to the pipe, wherein the fluid circulates through the condenser.
7 . The battery module of claim 6 , wherein a temperature of the fluid exiting the condenser is cooler than a temperature of at least one of the battery cells.
8 . The battery module of claim 3 , further comprising a heater pad adjacent to the base surface of the housing, wherein a temperature of the fluid is warmer than a temperature of at least one of the battery cells, and wherein a temperature of the heater pad is warmer than the temperature of the at least one of the battery cells.
9 . The battery module of claim 2 , wherein a portion of the pipe is within the containment cavity.
10 . The battery module of claim 9 , wherein the portion of the pipe is partially immersed within the liquid.
11 . The battery module of claim 10 , wherein a temperature of the fluid at an inlet of the portion of the pipe is lower than a temperature at an outlet of the portion of the pipe, and wherein the inlet is immersed within the liquid.
12 . The battery module of claim 11 , wherein an interior surface of the housing comprises dimples.
13 . The battery module of claim 12 , wherein the interior surface is at least a portion of the top surface and at least a portion of the wall of the pipe that is not immersed in the liquid.
14 . An energy storage device, comprising:
a housing comprising a base surface, a top surface, and sidewalls extending from a periphery of the base surface,
wherein the sidewalls, the top surface, and the base surface define a containment cavity, and
wherein the housing is sized to receive a battery cell;
an array of battery cells at least partially disposed within the housing;
a pipe containing fluid circulating within the pipe; and
a liquid and a void space within the housing, wherein at least a portion of each of the liquid and the void space is in contact with each battery cell in the array of battery cells, and
wherein thermal energy is transferred between each of the liquid and the void space and at least a portion of a wall of the pipe.
15 . The energy storage device of claim 14 , wherein the containment cavity is a pressure-sealed cavity.
16 . The energy storage device of claim 15 , wherein fluid circulating within the pipe is on an outer side of the top surface of the housing and wherein the top surface comprises the portion of the wall of the pipe or the top surface is in contact with the portion of the wall of the pipe.
17 . The energy storage device of claim 16 , further comprising a condenser connected to the pipe, wherein the fluid circulates through the condenser.
18 . The energy storage device of claim 17 , wherein a temperature of the fluid exiting the condenser is cooler than a temperature of at least one of the battery cells.
19 . The energy storage device of claim 15 , wherein a portion of the pipe is within the containment cavity, and wherein the portion of the pipe is partially immersed within the liquid.
20 . A battery for an electric vehicle, comprising:
a plurality of battery modules electrically interconnected with one another, wherein each battery module of the plurality of battery modules comprises:
a housing comprising a containment cavity that is pressure-sealed;
an array of battery cells at least partially disposed within the containment cavity;
a pipe containing fluid circulating within the pipe; and
a liquid within the containment cavity;
wherein a pressure within the containment cavity is dependent on an amount of thermal energy transferred between the liquid and at least a portion of a wall of the pipe.