Battery Temperature Control System
A temperature control system for an electrical storage battery ( 12 ) includes the battery and a vessel ( 20 ) adapted to contain a liquid (L). The vessel is in thermal communication with the battery. An ohmic heater includes electrodes ( 42 ) disposed within the vessel in contact with the liquid (L), and a controller ( 44 ) operative to apply different electrical potentials to different ones of the electrodes ( 42 ) so that an electrical current flows between the electrodes so as to heat the liquid and thus heat the battery. A temperature sensor ( 46 ) measures temperature of the battery, and the controller is responsive to the measured temperature of the battery to control the electric current and thereby control the heating.
1 . A temperature control system comprising:
(a) a battery;
(b) a vessel, the vessel being adapted to hold a liquid, at least part of the vessel being in thermal communication with the battery;
(c) an ohmic heater including a plurality of electrodes disposed within the vessel so as to contact liquid within the vessel and a controller adapted to apply different electrical potentials to different ones of the electrodes so that an electrical current passes through the liquid; and
(d) a thermal sensor in thermal communication with the battery for providing a signal representing temperature of the battery, the controller being responsive to the signal to control the electrical current.
2 . A system as claimed in claim 1 wherein the vessel includes one or more conduits.
3 . A system as claimed in claim 2 further comprising a pump in communication with the conduits for circulating liquid within the vessel.
4 . A system as claimed in claim 1 further comprising an inverter, the inverter having a plurality of poles and being operable to apply an alternating potential between the poles, wherein the controller is operable to connect different ones of the electrodes to different poles of the inverter.
5 . A system as claimed in claim 4 wherein the inverter is connected to the battery and is operable to draw power from the battery.
6 . A system as claimed in claim 1 wherein the controller is operative to connect pairs of electrodes to opposite poles of the battery.
7 . A system as claimed in claim 6 wherein the controller is operative to repeatedly reverse the connections between the pairs of electrodes and the poles of the battery, so that an alternating potential is applied between each pair of connected electrodes.
8 . An electric vehicle having a vehicle body and a system as claimed in claim 1 mounted within the vehicle body.