SUPPRESSION OF SAFETY GASES
20230231268 · 2023-07-20
Inventors
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/213
ELECTRICITY
International classification
Abstract
A system includes a battery mounting area, a venting area fluidly isolated from the battery mounting area, and a battery cell arranged at least partially within the battery mounting area. The battery cell includes at least one safety vent that is fluidly coupled to the venting area.
Claims
1. A system comprising: a battery mounting area; a venting area fluidly isolated from the battery mounting area; and a battery cell arranged at least partially within the battery mounting area, the battery cell including at least one safety vent, the at least one safety vent being fluidly coupled to the venting area.
2. The system of claim 1, wherein the venting area is located directly adjacent to the battery mounting area.
3. The system of claim 1, wherein the venting area is located remotely from the battery mounting area.
4. The system of claim 1, wherein the battery cell further comprises: a battery can having a first open end, a second closed end, and a sidewall extending between the first open end and the second closed end; and a cap affixed to the battery can adjacent to the first open end.
5. The system of claim 4, wherein the at least one safety vent is formed in the sidewall.
6. The system of claim 4, wherein the at least one safety vent is formed in the cap.
7. The system of claim 1, wherein the at least one safety vent is directly coupled to the venting area.
8. The system of claim 7, wherein a portion of the battery cell including the at least one safety vent is arranged within the venting area.
9. The system of claim 1, further comprising a conduit extending between the at least one safety vent and the venting area such that the at least one safety vent is indirectly coupled to the venting area.
10. The system of claim 1, further comprising a movement mechanism operable to move exhaust materials output from the at least one safety vent to the venting area.
11. The system of claim 1, further comprising an inerting system in fluid communication with the venting area, the inerting system including: at least one spray nozzle; a source of inerting agent; and a delivery piping system fluidly connecting the source of inerting agent and the at least one spray nozzle.
12. The system of claim 1, further comprising a suppression system in fluid communication with the venting area, the suppression system including: at least one spray nozzle; a source of suppression agent; and a delivery piping system fluidly connecting the source of suppression agent and the at least one spray nozzle.
13. A method of managing a battery energy storage system comprising: operating a battery cell arranged within a battery mounting area; and venting an exhaust material from the battery cell in response to a thermal event, wherein the venting the exhaust material from the battery cell further comprises venting the exhaust material to a venting area fluidly isolated from the battery mounting area.
14. The method of claim 13, wherein venting the exhaust material to the venting area further comprises venting the exhaust material directly to the venting area.
15. The method of claim 13, wherein venting the exhaust material to the venting area further comprises venting the exhaust material to the venting area via a conduit extending between the battery cell and the venting area.
16. The method of claim 13, further comprising inerting the exhaust material within the venting area via an inerting system.
17. The method of claim 13, further comprising suppressing a fire within the venting area via a suppression system.
18. The method of claim 13, wherein venting the exhaust material to the venting area fluidly isolated from the battery mounting area further comprises drawing the exhaust material into the venting area via a movement mechanism.
19. The method of claim 13, wherein the venting of the exhaust material occurs in response to an increase in a pressure within the battery cell in response to the thermal event.
20. The method of claim 19, wherein venting of the exhaust material occurs when the pressure within the battery cell exceeds a predetermined threshold.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The following descriptions should not be considered limiting in any way. With reference to the accompanying drawings, like elements are numbered alike:
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION
[0029] A detailed description of one or more embodiments of the disclosed apparatus and method are presented herein by way of exemplification and not limitation with reference to the Figures.
[0030] With reference now to
[0031] A battery unit, illustrated schematically at 34, is arranged within the hollow interior 30 of the battery can 22. The battery unit 34 includes an electrode assembly having a positive electrode 36 and a negative electrode 38. The positive and negative electrodes 36, 38 may be sheets stacked on top of one another and separated from one another by a separator 40 to form the battery unit 34. Furthermore, the stacked positive electrode 36, separator 40, and negative electrode 38, may be wound into a coil prior to installation within the hollow interior 30 of the battery can 22.
[0032] At least one safety vent 42 may be located at a surface of the battery can 22. Although the safety vent 42 in
[0033] With reference now to
[0034] As shown, the BESS includes a first space or area 54, also referred to herein as a battery mounting area, and at least a portion of one or more of the battery cells 52 is mounted within battery mounting area 54. In the illustrated, non-limiting embodiment, a majority or substantially entirety of each of the plurality of battery cells 52 is arranged within the battery mounting area 54. In an embodiment, the BESS 50 includes a second space or area 56, also referred to herein as a venting area, that is fluidly isolated from the battery mounting area 54. The venting area 56 may be located directly adjacent to the battery mounting area 54 as shown in the FIGS., or alternatively, may be located remotely from the battery mounting area 54.
[0035] The battery cell 52 is positioned such that at least one safety vent(s) 58 of at least one battery cell 52 is arranged in fluid communication with the venting area 56. In the illustrated, non-limiting embodiment of
[0036] By directing the exhaust gasses and other materials from the battery cells 52 into the venting area 56, the flammable and/or explosive exhaust gasses and other materials are substantially isolated from the battery cells 52 of the BESS 50. As a result, the thermal runaway of a battery cell 52 would not have a cascading effect on the adjacent battery cells 52, and the potential occurrence of a fire event within the battery mounting area 54 is significantly reduced.
[0037] With reference now to
[0038] Although a single system 70 is illustrated and described herein as being operable to perform both inerting and fire suppression, it should be understood that embodiments where the system 70 is configured to perform only one of inerting and fire suppression are also contemplated herein. In such embodiments, a secondary system having a similar or different configuration may be arranged in fluid communication with the venting area 56 to perform the other of the inerting and fire suppression.
[0039] The term “about” is intended to include the degree of error associated with measurement of the particular quantity based upon the equipment available at the time of filing the application.
[0040] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the present disclosure. As used herein, the singular forms “a”, “an” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises” and/or “comprising,” when used in this specification, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, element components, and/or groups thereof.
[0041] While the present disclosure has been described with reference to an exemplary embodiment or embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the present disclosure without departing from the essential scope thereof. Therefore, it is intended that the present disclosure not be limited to the particular embodiment disclosed as the best mode contemplated for carrying out this present disclosure, but that the present disclosure will include all embodiments falling within the scope of the claims.