Nova Patents
EP3045331B1

Ev multi-mode thermal management system

Abstract

This record has no abstract on file.

EP3045331B1, drawing sheet 1
Sheet 1 of 17

Term

8.9 yearsleft in the term

Expires 24 August 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

11 claims: 8 independent, 3 dependent

  1. 1
    A multi-mode vehicle thermal management system, comprising:a battery thermal control loop (505) comprising a first circulation pump (527), wherein said first circulation pump (527) circulates a heat transfer fluid within said battery thermal control loop (505), and wherein said battery thermal control loop (505) is thermally coupled to a vehicle battery pack (509);a drive train thermal control loop (507) comprising a second circulation pump (517), wherein said second circulation pump (517) circulates said heat transfer fluid within said drive train thermal control loop (507), wherein said drive train thermal control loop is thermally coupled to at least one drive train component (513);a first valve assembly comprising a first valve assembly four way valve (563) or a first valve assembly pair of three-way valves (1003/1004), wherein said battery thermal control loop (505) operates in parallel with and independent of said drive train thermal control loop (507) when said first valve assembly is configured in a first valve assembly first mode, and wherein said battery thermal control loop (505) is serially coupled to said drive train thermal control loop (507) when said first valve assembly is configured in a first valve assembly second mode;a refrigerant-based thermal control loop (501), wherein said refrigerant-based thermal control loop is comprised of a refrigerant, a compressor (535), a condenser/evaporator (547), a first expansion valve (553) coupling said condenser/evaporator (547) to said refrigerant-based thermal control loop (501), and a by-pass valve (551), wherein said by-pass valve (551) is configurable in a first setting and a second setting, wherein said by-pass valve (551) in said first setting allows said refrigerant to by-pass said first expansion valve (553) and wherein said by-pass valve (551) in said second setting allows said refrigerant to flow through said expansion valve (553);a refrigerant-air heat exchanger (543) coupled to said refrigerant-based thermal control loop (501) by a second expansion valve (541), wherein said refrigerant-air heat exchanger (543) is thermally coupled to a vehicle HVAC system;a refrigerant valve (539) configurable in a first mode and a second mode, wherein said refrigerant valve (539) determines refrigerant flow direction in said refrigerant-based thermal control loop (501);a first refrigerant-fluid heat exchanger (559) coupled to a passenger cabin thermal control loop (503), said passenger cabin thermal control loop (503) containing said heat transfer fluid, wherein a third circulation pump (529) circulates said heat transfer fluid within said passenger cabin thermal control loop, and wherein said passenger cabin thermal control loop provides temperature control of a vehicle passenger cabin, a liquid-air heat exchanger (531), wherein said heat transfer fluid of said passenger cabin thermal control loop (503) circulates through said liquid-air heat exchanger (531);and a second refrigerant-fluid heat exchanger (557) coupled to said refrigerant-based thermal control loop (501) by a third expansion valve (555), wherein said second refrigerant-fluid heat exchanger (557) is thermally coupled to said battery thermal control loop (505), wherein said refrigerant-based thermal control loop (501) is operable in either a cooling mode or a heat pump mode, wherein when said refrigerant-based thermal control loop (501) operates in said cooling mode said refrigerant valve (539) is configured in said first mode directing said refrigerant through said first expansion valve (541) and through said refrigerant-air heat exchanger (543) and through said condenser/evaporator (547), wherein when said refrigerant-based thermal control loop (501) operates in said cooling mode said refrigerant valve (539) is configured in said first mode directing said refrigerant also through said third expansion valve (555) and through said second refrigerant-fluid heat exchanger (557), wherein when said refrigerant-based thermal control loop (501) operates in said cooling mode said by-pass valve (551) is configured in said first setting, wherein when said refrigerant-based thermal control loop (501) operates in said heat pump mode said refrigerant valve (539) is configured in said second mode directing said refrigerant through said first refrigerant-fluid heat exchanger (559) and through said condenser/evaporator (547), wherein when said refrigerant-based thermal control loop (501) operates in said heat pump mode said by-pass valve (551) is configured in said second setting, and wherein said heat transfer fluid within said passenger cabin thermal control loop (503) is heated when said refrigerant is directed through said refrigerant-fluid heat exchanger (559).
  2. 3
    The multi-mode vehicle thermal management system of claims 1 or 2, further comprising a second valve assembly, said second valve assembly comprising a second valve assembly four way valve (561) or a second valve assembly pair of three-way valves (1001/1002), wherein said passenger cabin thermal control loop (503) operates in parallel with and independent of said battery thermal control loop (505) when said second valve assembly is configured in a second valve assembly first mode, and wherein said passenger cabin thermal control loop (503) is serially coupled to said battery thermal control loop (505) when said second valve assembly is configured in a second valve assembly second mode.
  3. 4
    The multi-mode vehicle thermal management system of any one of claims 1-3, said passenger cabin thermal control loop (503) further comprising an electric heater (533) configured to heat said heat transfer fluid of said passenger cabin thermal control loop (503) when electrical power is connected to said electric heater (533).
  4. 5
    The multi-mode vehicle thermal management system of any one of claims 1-4, wherein said by-pass valve (551) and said first expansion valve (553) are combined in an electronic expansion valve.
  5. 6
    The multi-mode vehicle thermal management system of any one of claims 1-5, further comprising a second by-pass valve (560), wherein said second by-pass valve in a first mode of operation couples said first refrigerant-fluid heat exchanger (559) to said refrigerant-based thermal control loop (501), and wherein said second by-pass valve (560) in a second mode of operation decouples said first refrigerant-fluid heat exchanger (559) from said refrigerant-based thermal control loop (501).
  6. 7
    The multi-mode vehicle thermal management system of any one of claims 1-6, further comprising a radiator (521) coupled to said drive train thermal control loop (507).
  7. 10
    The multi-mode vehicle thermal management system of any one of claims 1-9, said vehicle battery pack (509) comprising a plurality of cooling conduits (511), wherein said heat transfer fluid within said battery thermal control loop (506) flows through said plurality of cooling conduits (511).
  8. 11
    The multi-mode vehicle thermal management system of any one of claims 1-10, further comprising a coolant reservoir (519), wherein said heat transfer fluid within said drive train thermal control loop (507) flows into and out of said coolant reservoir (519).