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Patent · US10960785B2 · B2 · US

Battery thermal management system and method

(11) Publication number
US10960785B2
(21) Application number
16/857,003
(22) Filing date
2020-04-23
(30) Priority date
2019-04-23
(43) Publication date
2021-03-30
(45) Date of grant
2021-03-30
(52) CPC
  • B60L Propulsion of electrically-propelled vehicles; supplying electric power for auxiliary equipment of electrically-propelled vehicles; electrodynamic brake systems for vehicles in general; magnetic suspension or levitation for vehicles; monitoring operating variables of electrically-propelled vehicles; electric safety devices for electrically-propelled vehicles: 58/21, 1/02, 2200/10, 3/0046, 3/0092, 50/64, 58/18, 58/24, 58/26, 58/27
  • B60Y Indexing scheme relating to aspects cross-cutting vehicle technology: 2200/51
  • B64C Aeroplanes; helicopters: 2201/021, 2201/042, 2201/141, 39/024
  • B64D Equipment for fitting in or to aircraft; flight suits; parachutes; arrangement or mounting of power plants or propulsion transmissions in aircraft: 2013/0674, 2221/00, 27/357, 33/08
  • B64F Ground or aircraft-carrier-deck installations specially adapted for use in connection with aircraft; designing, manufacturing, assembling, cleaning, maintaining or repairing aircraft, not otherwise provided for; handling, transporting, testing or inspecting aircraft components, not otherwise provided for: 1/36, 3/02
  • B64U Unmanned aerial vehicles [uav]; equipment therefor: 10/25, 20/92, 20/96, 2201/10, 30/297, 50/19, 50/32
  • H01M Processes or means, e.g. batteries, for the direct conversion of chemical energy into electrical energy: 10/613, 10/625, 10/63, 10/633, 10/637, 10/6551, 10/6552, 10/6555, 10/6563, 10/6568, 10/658, 10/66, 2/1077, 2010/4271, 2220/20, 50/20, 50/204, 50/249
  • Y02E Reduction of greenhouse gas [ghg] emissions, related to energy generation, transmission or distribution: 60/10
  • Y02T Climate change mitigation technologies related to transportation: 10/70, 50/40, 50/60
(73) Assignee
JOBY AERO INC
(54) Title
Battery thermal management system and method
(57) Abstract

The battery thermal management system includes a battery pack, a circulation subsystem, and a heat exchanger. The system can optionally include a cooling system, a reservoir, a de-ionization filter, a battery charger, and a controller.

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Claims (17)

  1. A system for an electric aircraft, the system comprising: a battery pack onboard the electric aircraft; and a circulation loop onboard the electric aircraft, the circulation loop comprising: an onboard heat sink thermally coupled to the battery pack; an onboard circulation system comprising: a distribution manifold fluidly connected to the onboard heat sink; a working fluid; and a pump connected to the distribution manifold and configured to continuously circulate the working fluid through the onboard heat sink during aircraft flight; wherein the onboard circulation system does not comprise an onboard compressor; and a coupling configured to selectively connect the distribution manifold to an offboard cooling system, the offboard cooling system configured to transfer heat from the working fluid to a sub-ambient cooling loop comprising an offboard compressor, wherein the circulation loop and the battery pack are configured to cooperatively store more than a threshold percentage of thermal energy generated by the battery pack during aircraft flight.
  2. The system of claim 1, wherein the working fluid is circulated through the offboard cooling system during charging the battery pack.
  3. The system of claim 2, wherein the working fluid is circulated at a first rate during flight, and wherein the working fluid is circulated at a second rate substantially equal to the first rate while charging the battery pack.
  4. The system of claim 1, wherein the working fluid is circulated at a maximum continuous flow rate of the pump during flight.
  5. The system of claim 1, wherein the offboard cooling system cools the battery pack to or below a takeoff temperature during battery charging.
  6. The system of claim 1, wherein a temperature of the battery pack monotonically increases during aircraft flight.
  7. The system of claim 1, further comprising a second heat sink, the second heat sink comprising: a reservoir fluidly connected to the onboard heat sink by the distribution manifold; and a volume of the working fluid contained within the reservoir.
  8. The system of claim 1, wherein the onboard heat sink comprises a chill plate.
  9. The system of claim 1, wherein the battery pack comprises a first cell and a second cell, wherein the onboard heat sink thermally connects the first cell with the second cell and is configured to transfer heat from the first cell to the second cell.
  10. The system of claim 9, wherein the first cell and the second cell are adjacent and are thermally insulated from each other.
  11. The system of claim 1, further comprising: a second battery pack; and a second heat sink thermally coupled to the second battery pack and fluidly connected to the onboard circulation system; wherein the pump is redundantly powered by the first and second battery packs.
  12. The system of Claim ii, wherein the pump is arranged between the first and second battery packs.
  13. The system of claim 1, further comprising: an onboard battery management system (BMS) configured to command a flow rate of the working fluid during a battery charging mode and aircraft flight; and a fluid lockout mechanism selectively separating the onboard circulation system from the offboard cooling system during the battery charging mode.
  14. The system of claim 1, wherein the onboard heat sink comprises a thickness of less than three millimeters.
  15. The system of claim 1, wherein the battery pack generates thermal energy with a thermal power, wherein the circulation loop and the battery pack cooperatively store a first portion of the thermal power and reject a remainder of the thermal power, wherein the first portion is larger than the remainder.
  16. The system of claim 1, wherein the threshold percentage is 80 percent.
  17. A system for an electric aircraft, the system comprising: a battery pack onboard the electric aircraft; and a circulation loop onboard the electric aircraft, the circulation loop comprising: an onboard heat sink thermally coupled to the battery pack; an onboard circulation system comprising: a distribution manifold fluidly connected to the onboard heat sink; a working fluid; and a pump connected to the distribution manifold and configured to continuously circulate the working fluid through the onboard heat sink during aircraft flight; wherein the onboard circulation system does not comprise an onboard compressor; and a coupling configured to selectively connect the distribution manifold to an offboard cooling system, the offboard cooling system configured to transfer heat from the working fluid to a sub-ambient cooling loop comprising an offboard compressor, wherein a temperature of the battery pack monotonically increases during aircraft flight.

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Record as JSON
{
  "publication_number": "US10960785B2",
  "country": "US",
  "kind": "B2",
  "title": "Battery thermal management system and method",
  "abstract": "The battery thermal management system includes a battery pack, a circulation subsystem, and a heat exchanger. The system can optionally include a cooling system, a reservoir, a de-ionization filter, a battery charger, and a controller.",
  "claims": [
    "1. A system for an electric aircraft, the system comprising: a battery pack onboard the electric aircraft; and a circulation loop onboard the electric aircraft, the circulation loop comprising: an onboard heat sink thermally coupled to the battery pack; an onboard circulation system comprising: a distribution manifold fluidly connected to the onboard heat sink; a working fluid; and a pump connected to the distribution manifold and configured to continuously circulate the working fluid through the onboard heat sink during aircraft flight; wherein the onboard circulation system does not comprise an onboard compressor; and a coupling configured to selectively connect the distribution manifold to an offboard cooling system, the offboard cooling system configured to transfer heat from the working fluid to a sub-ambient cooling loop comprising an offboard compressor, wherein the circulation loop and the battery pack are configured to cooperatively store more than a threshold percentage of thermal energy generated by the battery pack during aircraft flight.",
    "2. The system of claim 1, wherein the working fluid is circulated through the offboard cooling system during charging the battery pack.",
    "3. The system of claim 2, wherein the working fluid is circulated at a first rate during flight, and wherein the working fluid is circulated at a second rate substantially equal to the first rate while charging the battery pack.",
    "4. The system of claim 1, wherein the working fluid is circulated at a maximum continuous flow rate of the pump during flight.",
    "5. The system of claim 1, wherein the offboard cooling system cools the battery pack to or below a takeoff temperature during battery charging.",
    "6. The system of claim 1, wherein a temperature of the battery pack monotonically increases during aircraft flight.",
    "7. The system of claim 1, further comprising a second heat sink, the second heat sink comprising: a reservoir fluidly connected to the onboard heat sink by the distribution manifold; and a volume of the working fluid contained within the reservoir.",
    "8. The system of claim 1, wherein the onboard heat sink comprises a chill plate.",
    "9. The system of claim 1, wherein the battery pack comprises a first cell and a second cell, wherein the onboard heat sink thermally connects the first cell with the second cell and is configured to transfer heat from the first cell to the second cell.",
    "10. The system of claim 9, wherein the first cell and the second cell are adjacent and are thermally insulated from each other.",
    "11. The system of claim 1, further comprising: a second battery pack; and a second heat sink thermally coupled to the second battery pack and fluidly connected to the onboard circulation system; wherein the pump is redundantly powered by the first and second battery packs.",
    "12. The system of Claim ii, wherein the pump is arranged between the first and second battery packs.",
    "13. The system of claim 1, further comprising: an onboard battery management system (BMS) configured to command a flow rate of the working fluid during a battery charging mode and aircraft flight; and a fluid lockout mechanism selectively separating the onboard circulation system from the offboard cooling system during the battery charging mode.",
    "14. The system of claim 1, wherein the onboard heat sink comprises a thickness of less than three millimeters.",
    "15. The system of claim 1, wherein the battery pack generates thermal energy with a thermal power, wherein the circulation loop and the battery pack cooperatively store a first portion of the thermal power and reject a remainder of the thermal power, wherein the first portion is larger than the remainder.",
    "16. The system of claim 1, wherein the threshold percentage is 80 percent.",
    "17. A system for an electric aircraft, the system comprising: a battery pack onboard the electric aircraft; and a circulation loop onboard the electric aircraft, the circulation loop comprising: an onboard heat sink thermally coupled to the battery pack; an onboard circulation system comprising: a distribution manifold fluidly connected to the onboard heat sink; a working fluid; and a pump connected to the distribution manifold and configured to continuously circulate the working fluid through the onboard heat sink during aircraft flight; wherein the onboard circulation system does not comprise an onboard compressor; and a coupling configured to selectively connect the distribution manifold to an offboard cooling system, the offboard cooling system configured to transfer heat from the working fluid to a sub-ambient cooling loop comprising an offboard compressor, wherein a temperature of the battery pack monotonically increases during aircraft flight."
  ],
  "cpc": [
    "B60L 58/21",
    "B60L 1/02",
    "B60L 2200/10",
    "B60L 3/0046",
    "B60L 3/0092",
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    "B64F 1/36",
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    "B64U 20/96",
    "B64U 2201/10",
    "B64U 30/297",
    "B64U 50/19",
    "B64U 50/32",
    "H01M 10/613",
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    "H01M 10/6563",
    "H01M 10/6568",
    "H01M 10/658",
    "H01M 10/66",
    "H01M 2/1077",
    "H01M 2010/4271",
    "H01M 2220/20",
    "H01M 50/20",
    "H01M 50/204",
    "H01M 50/249",
    "Y02E 60/10",
    "Y02T 10/70",
    "Y02T 50/40",
    "Y02T 50/60"
  ],
  "assignees": [
    "JOBY AERO INC"
  ],
  "filing_date": "2020-04-23",
  "publication_date": "2021-03-30",
  "grant_date": "2021-03-30",
  "priority_date": "2019-04-23",
  "application_number": "US-202016857003-A",
  "family_id": "72921228",
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}

Record 695 of 5,000 in Patents full text (MLC-0201). Request the full dataset.