SYSTEM FOR EXTINGUISHING A FIRE AND / OR PREVENTING THE TAKING OR RESUMPTION OF AN ELECTRIC VEHICLE FIRE, ASSOCIATED OPERATING METHOD COMPRISING A STEP OF FIRST LIFTING THE VEHICLE OFF THE GROUND
20220134154 · 2022-05-05
Assignee
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
International classification
Abstract
A system for extinguishing a fire and/or preventing a fire from starting or restarting in an electric vehicle having a module or a battery pack with a plurality of electrochemical batteries, in particular metal-ion batteries, includes a self-supporting inflatable structure, the shape and dimensions of which when deployed are configured to lift the electric vehicle off the ground, create a liner between the ground and the electric vehicle, and create a peripheral barrier in continuity with the liner, which is closed upon itself, around the electric vehicle. The system also includes a liquid supply device for filling, at least partially, the sealed volume delimited inside the peripheral barrier and by the liner, so as to immerse at least the module or battery pack in the liquid.
Claims
1. A system for extinguishing a fire and/or preventing a fire from starting or restarting in an electric vehicle including a module or a battery pack comprising a plurality of electrochemical batteries, comprising: a self-supporting inflatable structure, the shape and dimensions of which when deployed are configured to lift the electric vehicle off the ground, create a liner between the ground and the electric vehicle, and create a peripheral barrier in continuity with the liner, which is closed upon itself, around the electric vehicle; and a liquid supply device configured to fill, at least partially, a sealed volume delimited inside the peripheral barrier and by the liner, so as to immerse at least the module or battery pack in the liquid.
2. The system according to claim 1, the inflatable structure comprising at least one filling hole for inflating at least a part of the structure adapted to lift the vehicle and a part configured to create the peripheral barrier.
3. The system according to claim 2, the filling hole being configured to be connected to the liquid supply device.
4. The system according to claim 1, the inflatable structure comprising at least one lifting cushion which deploys vertically under the vehicle as it inflates, so as to lift the vehicle.
5. The system according to claim 4, the inflatable structure further comprising a flexible strip extending from a bottom of the at least one cushion and deploying when it is inflated under the lifted electric vehicle toward a periphery thereof, so as to create the liner.
6. The system according to claim 4, the inflatable structure further comprising at least one flexible casing, which is closed upon itself, in a form of a sausage in continuity with the liner, and which deploys from the liner during inflation to create the peripheral barrier.
7. The system according to claim 6, the inflatable structure comprising a plurality of sausages, fluidly interconnected at a bottom thereof, and extending vertically when deployed.
8. The system according to claim 7, the vertical sausages being spaced apart regularly, so as to ensure uniform inflation and hence a uniform barrier around a whole periphery thereof.
9. The system according to claim 6, the inflatable structure comprising one or a plurality of annular sausages each extending along at least a horizontal circumference when they are deployed.
10. The system according to claim 9, the inflatable structure comprising a single annular sausage which is adapted, when the sealed volume is filled, to partially lift the liner so as to create the peripheral barrier together with the annular sausage.
11. The system according to claim 7, at least some of the sausages comprising an outlet hole at a top thereof, such that when the at least some of the sausages are deployed vertically, after being inflated with the liquid, the liquid fills, by overflowing from the at least some of the sausages, the sealed volume delimited inside the barrier and by the liner.
12. The system according to claim 1, the liquid for filling the sealed volume being water.
13. The system according to claim 12, comprising salts that are soluble in water, placed beforehand in at least one area of the structure in a non-deployed state so that the salts are in contact with the water when the sealed volume is filled.
14. The system according to claim 1, the inflatable structure being at least partially made of a fabric based on aramid fibers.
15. The system according to claim 14, the fabric being sealed, at least on an inside being configured to be in contact with the liquid, by a polytetrafluoroethylene (PTFE) film.
16. The system according to claim 1, the liquid supply device being one of a fire-fighting vehicle and an emergency response vehicle.
17. A method of operation of the system according to claim 7, comprising the following steps: i/ positioning the inflatable structure under the electric vehicle; ii/ inflating a first part of the inflatable structure under the electric vehicle so as to lift the vehicle; iii/ inflating a second part of the inflatable structure so that it deploys under the lifted electric vehicle, toward a periphery of the lifted electric vehicle so as to create the liner; iv/ once the liner has deployed, inflating a third part of the inflatable structure so as to create the peripheral barrier around the electric vehicle; and v/ filling, with a liquid from a supply device, at least part of the sealed volume delimited inside the peripheral barrier and by the liner, so as to immerse at least the module or battery pack.
18. The method according to claim 17, comprising steps ii/ to v/ being carried out one after the other using just the supply device, and step v/ being carried out by overflowing from sausages constituting the third part of the structure once the sausages have been inflated.
19. The method according to claim 17, wherein step v/comprises filling using one of water and water containing salts.
20. The method according to claim 17, wherein steps iii/ to v/ are carried out by continuous inflation, using the liquid, of the second and third parts of the structure, which are fluidly interconnected.
21. The method according to claim 17, wherein steps iii/ and iv/ are carried out by continuous inflation, using air or another gas, of the second and third parts of the structure, which are fluidly interconnected.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0062] The terms “lower”, “upper”, “top” and “bottom” are to be understood with reference to a self-supporting structure in the inflated and installed configuration, extending vertically and creating a peripheral barrier that is closed upon itself.
[0063]
[0064] The system 1 comprises a self-supporting structure 2 made up of one or more lifting cushions 20, a flexible strip 21 which extends from the bottom of the cushions and is intended to form a liner under the electric vehicle, and a plurality of aligned flexible casings, each closed upon itself, in the form of sausages 22 in continuity with the liner, the sausages being fluidly interconnected at the bottom.
[0065] The sausages 22 are spaced apart regularly, so as to ensure uniform inflation. The lifting cushions(s) 20, the liner 21 and the sausages 22 are advantageously made of a fabric based on aramid fibers and coated, at least on the inside intended to face the vehicle V, with a polytetrafluoroethylene (PTFE) film.
[0066] At least some of the sausages 22 comprise, at the bottom, a supply hole 23 which is connected to a water supply device 3. As shown in
[0067] At least some of the sausages 22 also comprise, at the top, an outlet hole 24.
[0068] The system works as follows.
[0069] Step i/: An emergency responder, in particular a fire fighter, positions the inflatable structure 2 with lifting cushions 20 under an electric vehicle V which is on fire or in which a fire has just been put out.
[0070] Step ii/: once the water supply device 3 has been connected to the supply hole 23 of the lifting cushions 20, the latter are filled with water.
[0071] This lifts the vehicle, in the case of a car by around a few centimeters (
[0072] Step iii/: once the vehicle has been lifted, the flexible strip 21, which is preferably coiled, is inflated so that it deploys under the lifted electric vehicle V and toward the periphery of the latter so as to create the liner. Such inflation may be performed simply by actuating a valve in the system without having to disconnect the water supply device 3. By virtue of the water pressure, the flexible strip 21 uncoils and passes under the wheels of the lifted vehicle V (
[0073] Step iv/: once the liner has been deployed, the sausages 22 are inflated, and they deploy vertically and make the structure 2 self-supporting while creating a peripheral barrier around the vehicle V, which delimits a sealed internal volume or sealed tank R. Such inflation may also be performed simply by actuating a valve in the system without having to disconnect the water supply device 3.
[0074] Step v/: When the water reaches the outlet hole(s) 24, it overflows from the sausages 22 into the tank R. As the tank R is also sealed, specifically by virtue of the liner 21, it thus fills with water.
[0075] The sealed tank R is filled until at least the module or battery pack fitted inside the vehicle V is immersed.
[0076] Such immersion ensures without fail the electrical discharge of the module or battery pack of the vehicle V, thereby preventing any fire from restarting.
[0077] According to a second embodiment, the inflatable structure according to the invention may be made up of one or more annular sausages 22 which, once inflated, each extend along a horizontal circumference around the vehicle.
[0078] In the case of a plurality of sausages, these are advantageously superposed and fluidly interconnected so that they are in communication during inflation. This configuration is shown in
[0079] A variant with a single horizontal annular sausage 22 is shown in
[0080] The single sausage (
[0081] According to a variant of the second embodiment, as shown in
[0082] Soluble salts may be placed in the system. Once these salts have been dissolved by the water supplied, they promote more efficient and quicker discharge of the module or battery pack. They may be solid NaCl salts, for example.
[0083] These salts may be added to the tank R by the users, for example the fire fighters, once the inflatable structure has been put in place and before or during filling thereof. To avoid this addition step and thus simplify the emergency response operation, these salts may also be already present in solid form in the collapsed structure, before it is deployed and inflated; for example they may be placed in the liner or on the outer face of the sausages forming part of the space R and in contact with the filling water. If the tank is filled with water by overflow from the peripheral sausages 22, the salts may be placed directly inside the sausages 22. In this case, the salts are dissolved as the sausages are filled with water, this solution then spilling into the tank R through the upper openings 24 in the sausages.
[0084] Further variants and improvements may be envisaged without exceeding the scope of the invention.
[0085] For example, if, in all the examples shown, the self-supporting inflatable structure is made up of a plurality of sausages inflated using water for immersing the battery pack of the electric vehicle, any other inflatable structure for creating a peripheral barrier that can be placed easily around the vehicle and can be inflated, either with air or with a liquid that also serves to immerse the battery pack, can also easily be used.
[0086] Optionally, once the liner has been deployed under the wheels of the electric vehicle, the lifting cushion(s) may be deflated to bring the vehicle down to the ground with the liner inserted in between.