Air-conditioning controlling apparatus for a battery pack
View Patent ↗A heat removal unit that removes heat from air in a battery pack in which a battery cell is accommodated to cool or dehumidify the air is provided. Further, a circulation route that connects the battery pack and the heat removal unit to each other to recirculate the air is provided. Furthermore, a direction controller that controls a flow direction of the air in the circulation route in opposite direction upon cooling and upon dehumidification is provided.
1. An air-conditioning controlling apparatus for a battery pack, comprising:
a battery case, accommodating a battery cell therein, the battery case having a first connecting portion and a second connecting portion;
a circulation route, one end of which being connected to the first connecting portion and another end of which being connected to the second connecting portion, to allow air in the battery case to recirculate;
a heat removal unit, provided in the circulation route outside the battery case, that cools and dehumidifies air in the batter case upon cooling the battery cell; and
a direction controller that controls an air flow in the circulation route in a first direction when the heat removal unit is operated to cool the air, and controls the air flow in a second direction, opposite to the first direction, when the heat removal unit is operated to dehumidify the air.
2. The air-conditioning controlling apparatus for a battery pack according to claim 1 , further comprising:
a heat exchange unit provided on the circulation route on an upstream side of the heat removal unit with respect to the air flow in the first direction and performs heat exchange between the air and external air.
3. The air-conditioning controlling apparatus for a battery pack according to claim 1 , further comprising:
an air-conditioning controller that performs cooling control for cooling the air upon charging or discharging of the battery cell and performs dehumidification control for dehumidifying the air after the charging ends.
4. The air-conditioning controlling apparatus for a battery pack according to claim 3 , wherein
the air-conditioning controller decreases a flow rate of air to be circulated in the circulation route upon the dehumidification control from a flow rate of air to be circulated in the circulation route upon the cooling control.
5. The air-conditioning controlling apparatus for a battery pack according to claim 1 , further comprising:
a bypass route that allows dew condensation sticking to the heat removal unit upon the dehumidification to flow out from the circulation route.
6. The air-conditioning controlling apparatus for a battery pack according to claim 1 , further comprising:
a first inlet port provided in an upper part of the battery pack and introduces, upon the cooling of the air, the air from the circulation route into the battery pack; and
a second inlet port provided in a lower part of the battery pack and introduces, upon the dehumidification of the air, the air from the circulation route into the battery pack.
7. The air-conditioning controlling apparatus for a battery pack according to claim 6 , wherein
the first inlet port is provided at a plurality of locations of an upper face of the battery pack and supplies the air toward the entire battery cell accommodated in the battery pack; and
the second inlet port is provided at a corner portion of the battery pack and supplies the air in layers from the lower face side of the battery pack.
8. The air-conditioning controlling apparatus for a battery pack according to claim 1 , wherein the direction controller includes a fan provided in the circulation route and outside the battery case.