Fire extinguishing system with fireproof separation function

Through the coordinated operation of the control module and mobile fire extinguishing equipment, automated, rapid and flexible fire separation and fire extinguishing of the fire scene are achieved, solving the problems of insufficient flexibility and response speed in existing technologies.

CN121927249APending Publication Date: 2026-04-28CHINA INST FOR RADIATION PROTECTION
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHINA INST FOR RADIATION PROTECTION
Filing Date
2025-12-31
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing fixed fire extinguishing systems lack flexibility, while mobile fire extinguishing systems rely on manual operation and have a slow response time, making it difficult to accurately isolate the fire area and extinguish the fire quickly in the early stages of a fire.

Method used

It employs a control module and multiple mobile fire extinguishing devices, monitors the fire situation in real time through data acquisition components, and formulates response strategies through an analysis and decision-making module. The mobile fire extinguishing devices work together and utilize flexible extinguishing agent delivery components and nozzles for automated fire extinguishing operations.

Benefits of technology

It achieves minimized fire zone separation and rapid fire suppression, solving the problems of excessively large fire separation areas and low fire suppression efficiency in existing technologies, and improving the flexibility and speed of fire suppression.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a fire extinguishing system with a fireproof separation function. The fire extinguishing system comprises a control module and a plurality of movable fire extinguishing devices, the control module comprises a first controller and a first data acquisition element; the first data acquisition element is used for acquiring fire related environment data and transmitting the fire related environment data to the first controller; the first controller is used for judging whether a fire disaster condition exists or not according to the environmental data acquired by the first data acquisition element, and if the fire disaster condition exists, analyzing the environmental data and formulating a coping strategy; the multiple movable fire extinguishing devices are connected with the first controller and can execute the coping strategies to conduct fire extinguishing operation. According to the system, the control module is used for analyzing and then controlling the multiple movable fire extinguishing devices to cooperatively work, the fire scene is subjected to minimum separation and rapid fire extinguishing, and the problems that in the prior art, the fireproof separation area is too large, and the fire extinguishing efficiency is low are solved.
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Description

Technical Field

[0001] This invention relates to the field of fire protection system technology, and in particular to a fire protection system with fire-resistant partitioning function. Background Technology

[0002] Existing fire-resistant partitioning technologies mainly fall into the following two categories: Existing fire extinguishing technologies mainly fall into the following two categories: (1) Fixed fire extinguishing technology Technical Solution: Fixed fire suppression technology refers to a fire suppression system pre-installed in a specific location and composed of fixed components. Based on the type of extinguishing agent, it can be divided into various types, including low-expansion foam fire suppression systems, high-expansion foam fire suppression systems, water sprinkler systems, foam spray systems, dry powder fire suppression systems, smoke fire suppression systems, halon fire suppression systems, and carbon dioxide fire suppression systems. The core characteristic of a fixed fire suppression system is its permanent installation; all components are connected through fixed piping to form a complete fire suppression system.

[0003] Disadvantages: Poor flexibility and fixed application scope: Once installed, the protection range of a fixed system is essentially fixed and cannot be flexibly adjusted according to changes in the function of the location. Moreover, if a critical component of a fixed system fails, the entire system may fail.

[0004] (2) Mobile fire extinguishing technology Technical Solution: Mobile fire extinguishing technology refers to portable fire extinguishing equipment, mainly including portable fire extinguishers, wheeled fire extinguishers, fire hydrants, and fire trucks. Mobile fire extinguishing devices do not rely on fixed piping networks but provide fire extinguishing power through their own pressure sources or external motorized pumps, offering greater flexibility and adaptability.

[0005] Disadvantages: Dependence on manual operation and slow response time: Mobile equipment relies entirely on personnel to discover and operate the fire, and the response speed is limited by the time it takes for personnel to discover the fire, make a decision, and retrieve the equipment. Highly affected by environmental factors: The effectiveness of mobile equipment is significantly affected by environmental conditions. For example, in confined spaces, at heights, or in locations with many obstacles, mobile equipment is difficult to access the fire source; in smoky or toxic environments, operators face significant risks; and in windy conditions, the extinguishing agent may be dispersed, reducing its effectiveness.

[0006] Therefore, how to simultaneously achieve accurate isolation of the fire zone and rapid fire suppression during the initial stages of a fire is a problem that this application urgently needs to solve. These problems urgently need to be addressed. Summary of the Invention

[0007] This invention discloses a fire protection system with fire-resistant partitioning function, which aims to solve the technical problems existing in the prior art.

[0008] The present invention adopts the following technical solution: This invention provides a fire protection system with fire-resistant separation function, comprising a control module and multiple mobile fire extinguishing devices; the control module includes a first controller and a first data acquisition element; the first data acquisition element is used to collect fire-related environmental data and transmit it to the first controller; the first controller is used to determine whether a fire exists based on the environmental data collected by the first data acquisition element, and if so, analyze the environmental data and formulate a response strategy; the multiple mobile fire extinguishing devices are respectively connected to the first controller and can respectively execute the response strategy to perform fire extinguishing operations.

[0009] In the fire protection system with fire separation function of the present invention, the first controller includes an analysis and decision module and a task distribution module; the analysis and decision module is connected to the first data acquisition element and is used to determine whether there is a fire based on the environmental data collected by the first data acquisition element. If so, the environmental data is analyzed and a response strategy is formulated; the task distribution module is connected to the analysis and decision module and the mobile fire extinguishing equipment and is used to distribute the response strategy to the mobile fire extinguishing equipment.

[0010] In the fire protection system with fire separation function of the present invention, the first data acquisition element includes a temperature sensor and / or a smoke detector and / or a combustible gas sensor and / or an infrared thermal imager and / or a camera.

[0011] In the fire protection system with fire-resistant separation function of the present invention, the first controller analyzes the environmental data collected by the first data acquisition element to determine whether a fire exists.

[0012] In the fire protection system with fire-resistant separation function of the present invention, the mobile fire extinguishing equipment includes a mobile storage box, a fire extinguishing agent supply device, a fire extinguishing agent delivery assembly, a nozzle, and a second controller; the fire extinguishing agent supply device, the fire extinguishing agent delivery assembly, the nozzle, and the second controller are all disposed within the mobile storage box; the fire extinguishing agent delivery assembly is a flexible structure, connecting the fire extinguishing agent supply device and the nozzle; the nozzle is used to spray fire extinguishing agent; the mobile storage box can be expanded after pressurized fire extinguishing agent is introduced into the fire extinguishing agent delivery assembly, so that the nozzle sprays fire extinguishing agent towards the outer periphery of the mobile storage box; the second controller is used to receive the response strategy issued by the first controller and control the mobile storage box and the fire extinguishing agent delivery assembly to execute the response strategy.

[0013] In the fire protection system with fire-resistant separation function of the present invention, the fire extinguishing agent delivery assembly includes a flexible pipe and a flexible fire blanket; the flexible pipe is fixedly installed on the flexible fire blanket and laid in a zigzag or U-shape, wherein the minimum outer dimension of the zigzag is greater than the length and / or width of the mobile storage box; the nozzle is connected to the flexible pipe.

[0014] The fire protection system with fire-resistant separation function of the present invention includes a plurality of sprinkler heads; the plurality of sprinkler heads are spaced apart along the length direction of the flexible pipe.

[0015] In the fire protection system with fire-resistant separation function of the present invention, two layers of the flexible fire blanket are included; the two layers of the flexible fire blanket wrap the flexible tube, and at least the edges of both are open, so that the extinguishing agent sprayed by the nozzle can be sprayed out to the outside.

[0016] In the fire protection system with fire separation function of the present invention, a second data acquisition element is further included. The second data acquisition element is used to collect fire scene data. The second controller is connected to the second data acquisition element and is also used to formulate a local response strategy based on the fire scene data, and control the mobile storage box and the fire extinguishing agent delivery assembly to execute the local response strategy.

[0017] In the fire protection system with fire separation function of the present invention, the second data acquisition element includes lidar and / or visual sensors and / or infrared thermal imagers.

[0018] The technical solution adopted in this invention can achieve the following beneficial effects: This invention provides a fire protection system with fire separation function. Based on the analysis and control of multiple mobile fire extinguishing devices by the control module, it minimizes the separation of the fire scene and extinguishes the fire quickly, solving the problems of excessively large fire separation area and low fire extinguishing efficiency in the prior art. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below, forming part of the present invention. The illustrative embodiments of the present invention and their descriptions explain the present invention and do not constitute an improper limitation of the present invention. In the drawings: Figure 1 This is a structural schematic diagram of a fire protection system with fire-resistant partitioning function according to the present invention; Figure 2 This is a schematic diagram of the structure of the mobile fire extinguishing device of the present invention; Figure 3 This is a schematic diagram of the structure of the fire extinguishing agent delivery assembly of the present invention; Figure 4This is a schematic diagram of the structure of the box body of the present invention being opened by the fire extinguishing agent delivery assembly.

[0020] Explanation of reference numerals in the attached figures: 1. Control module; 11. First controller; 111. Analysis and decision-making module; 112. Task distribution module; 12. First data acquisition element; 2. Mobile fire extinguishing equipment; 21. Mobile storage box; 211. Box body; 212. Moving wheels; 22. Fire extinguishing agent supply equipment; 23. Fire extinguishing agent delivery assembly; 231. Flexible pipe; 232. Flexible fire blanket; 24. Nozzle; 25. Second controller; 26. Second data acquisition element. Detailed Implementation

[0021] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. In the description of this invention, it should be noted that the term "or" is generally used to include the meaning of "and / or," unless otherwise expressly indicated.

[0022] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or a magnetic connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances. Furthermore, in the description of this application, the terms "first," "second," etc., are used only for distinguishing descriptions and should not be construed as indicating or implying relative importance. In the description of this invention, "a plurality of" means at least two, such as two, three, or more, unless otherwise explicitly specified.

[0023] Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0024] To address the problems existing in the prior art, this application provides a fire protection system with fire-resistant partitioning function.

[0025] like Figure 1As shown, a fire protection system with fire-resistant partitioning function includes a control module 1 and multiple mobile fire extinguishing devices 2. The control module 11 includes a first controller 11 and a first data acquisition element 12. The first data acquisition element 12 is used to collect fire-related environmental data and transmit it to the first controller 11. The first controller 11 is used to determine whether a fire exists based on the environmental data collected by the first data acquisition element 12. If so, it analyzes the environmental data and formulates a response strategy. The multiple mobile fire extinguishing devices 2 are respectively connected to the first controller 11 and can execute the response strategy to carry out fire extinguishing operations. That is, they can execute different response strategies or the same response strategy. The response strategy can be the same strategy or different response strategies for different situations. When there are multiple response strategies, the multiple mobile fire extinguishing devices 2 execute different response strategies. Preferably, there are multiple first data acquisition elements 12, distributed in different fire-fighting areas.

[0026] This invention discloses a fire protection system with fire-resistant partitioning function. Based on analysis by a control module, it controls multiple mobile fire extinguishing devices to work collaboratively, minimizing the partitioning of the fire scene and enabling rapid fire suppression. This solves the problems of excessively large fire-resistant partitioning areas and low fire suppression efficiency in existing technologies. Multiple mobile fire extinguishing devices can be deployed collaboratively to achieve complete partitioning of the fire area and rapid fire suppression.

[0027] In some preferred embodiments, the first controller 11 includes an analysis and decision module 111 and a task distribution module 112; the analysis and decision module 111 is connected to the first data acquisition element 12, such as through an Internet of Things connection, and is used to determine whether there is a fire based on the environmental data collected by the first data acquisition element 12. If so, the environmental data is analyzed and a response strategy is formulated; the task distribution module 112 is connected to the analysis and decision module 111 and the mobile fire extinguishing device 2, and is used to distribute the response strategy to the mobile fire extinguishing device 2.

[0028] Preferably, the analysis and decision-making module 111 analyzes environmental data to confirm the fire situation, confirm the fire range, and formulate response strategies, including fire compartmentation and fire extinguishing decisions. Then, the response strategies are sent to the task distribution module 112.

[0029] Specifically, the temperature and smoke detectors of the first data acquisition element 12 alarm to determine the fire area; the infrared thermal imager and high-definition camera confirm the fire and the fire range; and the combustible gas sensor is used to determine the concentration of combustible gas in the location to predict whether an explosion will occur.

[0030] Upon the occurrence of a fire, the heat and smoke detectors trigger alarms. The analysis and decision-making module 111 determines the area of ​​the fire based on the locations of the heat and smoke detectors, activates the infrared thermal imager and high-definition camera in the fire area, and uses artificial intelligence algorithms or manual assistance to confirm the existence of a real fire, further confirming the fire's area and type. After confirming the fire, staff are notified to evacuate. Simultaneously, fire and rescue personnel are notified.

[0031] Meanwhile, the analysis and decision-making module 111 formulates response strategies based on the fire area and fire type, including fire compartmentation schemes and fire extinguishing schemes.

[0032] The main contents of the fire compartmentation and fire extinguishing plan include: determining the number of mobile fire extinguishing devices 2 to be deployed, such as determining the number of mobile fire extinguishing devices 2 based on the flame control range (factory design parameters) of each mobile fire extinguishing device 2 and the area of ​​the area to be extinguished; determining the type of external extinguishing agent to be used based on the fire-fighting equipment available at the fire scene; the route for the mobile fire extinguishing devices 2 to reach the scene, and how to open the extinguishing agent delivery assembly 23 and nozzles 24 to minimize the fire area after arrival. Specifically, this can be achieved through artificial intelligence or manual operation, based on the area to be extinguished. The shape of the area determines the location of each mobile fire extinguishing device 2, such as arranging them along the edge of the fire area. The mobile fire extinguishing devices 2 are then driven to designated locations to divide the fire area, achieving minimum area division, i.e., only enclosing the fire area. The extinguishing agent nozzles 24 of the extinguishing agent delivery assembly 23 can spray upon arrival, spray while enclosing, or spray after enclosure, to extinguish the fire. The extinguishing agent is delivered through the extinguishing agent supply device 22, such as through external pipelines, and then transported via the extinguishing agent delivery assembly 23 to the extinguishing agent nozzles 24, which then spray into the fire area. The fire separation and extinguishing plan are sent to the second controller 25 of the mobile fire extinguishing devices 2 before their departure to prevent signal transmission delays or interruptions caused by fire.

[0033] In some preferred embodiments, the first data acquisition element 12 includes a temperature sensor and / or a smoke detector and / or a combustible gas sensor and / or an infrared thermal imager and / or a camera.

[0034] In some preferred embodiments, the first data acquisition element 12 is also used to issue a fire alarm to the outside world, such as by connecting to an external alarm through a temperature sensor and / or smoke detector and / or combustible gas sensor. When the signal detected by the temperature sensor and / or smoke detector and / or combustible gas sensor exceeds a set threshold, the alarm will sound. The specific content is not limited here, as long as the alarm function can be realized.

[0035] In some preferred embodiments, the first controller 11 analyzes environmental data collected by the first data acquisition element 12 to determine whether a fire exists. For example, it determines whether flames, smoke, and abnormal heat sources are present. If so, a fire exists. Specific judgment criteria are as follows, and the threshold values ​​of the following parameters can be adjusted according to specific operating conditions: 1. Suspected fire warning (Level 1): Triggered if any sensor reaches the warning threshold: Temperature: >55℃ or a temperature rise of >10℃ in 1 minute; Smoke detection: Concentration >0.15dB / m³; Combustible gas: >20% of the lower explosive limit; Infrared thermal imaging: High temperature point >80℃ and area >0.1m² 2 Camera: Identifies suspected fire or smoke features.

[0036] 2. Fire confirmed (Level 2): Multi-sensor collaborative verification confirms fire by meeting any one of the following conditions: temperature and smoke detection early warning, and infrared high-temperature point area > 0.3m². 2 Combustible gas warning + temperature > 60℃; camera identification of a clear flame + warning from any sensor; infrared detection of high temperature points > 300℃ + heat diffusion area.

[0037] In some preferred embodiments, such as Figure 2 and Figure 3 As shown, the mobile fire extinguishing equipment 2 includes a mobile storage box 21, a fire extinguishing agent supply device 22, a fire extinguishing agent delivery assembly 23, a nozzle 24, and a second controller 25. The fire extinguishing agent supply device 22, the fire extinguishing agent delivery assembly 23, the nozzle 24, and the second controller 25 are all located inside the mobile storage box 21. The fire extinguishing agent delivery assembly 23 is a flexible structure that connects the fire extinguishing agent supply device 22 and the nozzle 24. The nozzle 24 is used to spray the fire extinguishing agent. The mobile storage box 21 can be expanded after pressurized fire extinguishing agent is introduced into the fire extinguishing agent delivery assembly 23, so that the nozzle 24 sprays the fire extinguishing agent to the outer periphery of the mobile storage box 21. The second controller 25 is used to receive the response strategy issued by the first controller 11 and control the mobile storage box 21 and the fire extinguishing agent delivery assembly 23 to execute the response strategy, that is, to move the mobile storage box 21 to the fire-fighting area and then control the fire extinguishing agent delivery assembly 23 to perform fire extinguishing operations. Based on this, automatic fire suppression, simultaneous fire suppression in multiple areas, and different response strategies for different areas are achieved, thereby realizing efficient fire suppression.

[0038] Preferably, such as Figure 4As shown, the side panels and bottom of the mobile storage box 21 are rotatably connected, and the cover is rotatably connected to the side panels. When closed, the cover rests on the top edge of the side panels so that it can be opened by rotation when the extinguishing agent delivery assembly 23 is opened. Both covers rotate outwards and block the wheels of the mobile storage box 21. This achieves automatic opening of the mobile storage box 21 during fire extinguishing and protects the wheels 212. Specifically, the side panels can be magnetically connected. It should be noted that the magnetic force should be less than the force exerted on the side panels when the extinguishing agent delivery assembly 23 is opened, ensuring that the box 211 can be opened smoothly. Preferably, the sides of the box 211 and the inside of the top cover are coated with fire-retardant paint.

[0039] Specifically, the mobile storage box 21 can be selected from existing unmanned delivery vehicle structures or other vehicle structures that enable automatic navigation. There are no restrictions here, as long as it can travel along the planned route.

[0040] In some preferred embodiments, multiple mobile fire extinguishing devices 2 are connected in communication; thereby, multiple mobile fire extinguishing devices 2 can work together.

[0041] In some preferred embodiments, the extinguishing agent delivery assembly 23 includes a flexible tube 231 and a flexible fire blanket 232; the flexible tube 231 is fixedly mounted on the flexible fire blanket 232 and laid in a zigzag or U-shape, the minimum outer dimension of the zigzag shape being greater than the length and / or width of the mobile storage box 21; the nozzle 24 is connected to the flexible tube 231; based on the cooperation of the flexible tube 231 and the flexible fire blanket 232, the flexible fire blanket 232 restricts the degree and range of expansion of the flexible tube 231, including the ability to expand the box 211 of the mobile storage box 21 and allow the flexible fire blanket 232 to fully unfold, increasing the coverage area of ​​the flexible fire blanket 232. Preferably, the flexible tube 231 is distributed across the entire flexible fire blanket 232; the flexible fire blanket 232 can protect the flexible tube 231, isolating it from the fire source and preventing damage that could affect the extinguishing effect.

[0042] Preferably, the system includes multiple nozzles 24; the multiple nozzles 24 are spaced apart along the length of the flexible tube 231; based on this, a wider range of fire extinguishing operations can be achieved. More preferably, the multiple nozzles 24 are all oriented towards the edge of the flexible fire blanket 232, but they can also be oriented in different directions, with the multiple nozzles 24 all oriented towards the edge of the flexible fire blanket 232 being preferred, in order to cover a larger fire extinguishing range.

[0043] Preferably, the device includes two layers of flexible fire blankets 232. The two layers of flexible fire blankets 232 wrap around the flexible tube 231, and at least the edges of both are open. In this case, the nozzle 24 is positioned adjacent to the edges of the two layers of flexible fire blankets 232 to reduce the impact of the two layers of flexible fire blankets 232 on the nozzle 24 during spraying, allowing the extinguishing agent sprayed from the nozzle 24 to be discharged outwards. Based on the arrangement of the double-layered flexible fire blankets 232 covering both sides of the flexible tube 231, on the one hand, the flexible tube 231 is fully protected; on the other hand, the spray direction of the extinguishing agent can be better controlled to be circumferential towards the flexible fire blankets 232, achieving maximum coverage of the extinguishing area. More preferably, the nozzle opening of the nozzle 24 protrudes from the flexible fire blankets 232.

[0044] Preferably, the extinguishing agent delivery assembly 23 is stacked inside the housing 211, such that the middle of the flexible fire blanket 232 is attached to the bottom surface of the housing 211, and the surrounding edges are folded inward. Thus, when the extinguishing agent is introduced, the extinguishing agent delivery assembly 23 opens outward, pushing open the side panels and cover of the housing 211. More preferably, the flexible fire blanket 232 is fixed to the bottom surface of the housing 211, including the direction of opening and the protection of the casters 212 after opening.

[0045] In some preferred embodiments, a second data acquisition element 26 is also included; the second data acquisition element 26 is used to acquire fire scene data; the second controller 25 is connected to the second data acquisition element 26 and is also used to formulate local response strategies based on the fire scene data, and control the mobile storage box 21 and the extinguishing agent delivery assembly 23 to execute the local response strategies; based on this, the normal operation of the fire extinguishing operation is avoided when the connection between the second controller 25 and the first controller 11 is interrupted or delayed.

[0046] Preferably, the second controller 25 confirms the fire situation based on fire scene data and refines local response strategies, such as fire compartmentation and fire suppression strategies. Similarly, the fire range can be determined using visual sensors and / or infrared thermal imagers. Then, the number of mobile fire suppression devices 2 is determined based on the extinguishing range of a single device, and the location of each device 2 is determined according to the shape of the fire area. For example, multiple mobile fire suppression devices 2 may surround the fire area, thus obtaining a local response strategy. LiDAR is used for obstacle avoidance.

[0047] Preferably, the second data acquisition element 26 includes a lidar and / or a visual sensor and / or an infrared thermal imager.

[0048] Preferably, the second controller 25 is also used to transmit the local response strategy to the analysis and decision module 111 of the first controller 11 so as to promptly modify the response strategy, such as fire separation and fire extinguishing scheme.

[0049] In some preferred embodiments, the extinguishing agent supply device 22 may be a pressure tank or a connecting pipeline to a fixed fire protection system within the premises.

[0050] Preferably, the extinguishing agent supply device 22 is a connecting pipe that connects to an external fire protection system.

[0051] Preferably, the extinguishing agent supply device 22 is equipped with a solenoid valve or a booster pump, and is controlled by the edge second controller 25 to supply extinguishing agent to the extinguishing agent delivery component 23.

[0052] Preferably, the extinguishing agent supply device 22 is provided with a replenishment port for replenishing the extinguishing agent.

[0053] In some preferred embodiments, the first controller 11 can be a computer processor or a cloud computing platform.

[0054] In some preferred embodiments, the second controller 25 may be a computer processor.

[0055] The embodiments of the present invention have been described above with reference to the accompanying drawings. However, the present invention is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of the present invention without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of the present invention.

Claims

1. A fire protection system with fire-resistant partitioning function, characterized in that, Includes a control module and multiple mobile fire extinguishing devices; The control module includes a first controller and a first data acquisition element; The first data acquisition element is used to collect fire-related environmental data and transmit it to the first controller; The first controller is used to determine whether there is a fire based on the environmental data collected by the first data acquisition element. If so, the environmental data is analyzed and a response strategy is formulated. Multiple mobile fire extinguishing devices are respectively connected to the first controller and can each execute the response strategy to carry out fire extinguishing operations.

2. The fire protection system with fire-resistant partitioning function according to claim 1, characterized in that, The first controller includes an analysis and decision-making module and a task distribution module; The analysis and decision-making module is connected to the first data acquisition element and is used to determine whether there is a fire based on the environmental data collected by the first data acquisition element. If so, the environmental data is analyzed and a response strategy is formulated. The task distribution module is connected to the analysis and decision-making module and the mobile fire extinguishing equipment, and is used to distribute the response strategy to the mobile fire extinguishing equipment.

3. The fire protection system with fire-resistant partitioning function according to claim 1, characterized in that, The first data acquisition element includes a temperature sensor and / or a smoke detector and / or a combustible gas sensor and / or an infrared thermal imager and / or a camera.

4. The fire protection system with fire-resistant partitioning function according to claim 1, characterized in that, The first controller analyzes the environmental data collected by the first data acquisition element to determine whether a fire exists.

5. The fire protection system with fire-resistant separation function according to claim 1, characterized in that, The mobile fire extinguishing equipment includes a mobile storage box, a fire extinguishing agent supply device, a fire extinguishing agent delivery assembly, a nozzle, and a second controller; The extinguishing agent supply equipment, the extinguishing agent delivery assembly, the nozzle, and the second controller are all housed within the mobile storage box; The extinguishing agent delivery assembly is a flexible structure that connects the extinguishing agent supply equipment and the nozzle. The nozzle is used to spray extinguishing agent; The mobile storage tank can be expanded after pressurized extinguishing agent is introduced into the extinguishing agent delivery assembly, so that the nozzle sprays extinguishing agent onto the outer periphery of the mobile storage tank. The second controller is used to receive the response strategy issued by the first controller and control the mobile storage box and the fire extinguishing agent delivery assembly to execute the response strategy.

6. The fire protection system with fire-resistant separation function according to claim 5, characterized in that, The extinguishing agent delivery assembly includes a flexible tube and a flexible fireproof blanket; The flexible tube is fixedly installed on the flexible fireproof blanket and laid in a zigzag or guilloché pattern. The minimum outer dimension of the zigzag is greater than the length and / or width of the mobile storage box. The nozzle is connected to the flexible tube.

7. The fire protection system with fire-resistant partitioning function according to claim 6, characterized in that, Includes multiple of the aforementioned nozzles; Multiple nozzles are spaced apart along the length of the flexible tube.

8. The fire protection system with fire-resistant partitioning function according to claim 6, characterized in that, Includes two layers of the aforementioned flexible fireproof blanket; The flexible tube is wrapped with two layers of the flexible fireproof blanket, and at least the edges of both are open so that the extinguishing agent sprayed from the nozzle can be sprayed outward.

9. The fire protection system with fire-resistant separation function according to claim 5, characterized in that, It also includes a second data acquisition element; The second data acquisition element is used to acquire fire scene data; The second controller is connected to the second data acquisition element and is also used to formulate a local response strategy based on the fire scene data, and control the mobile storage box and the fire extinguishing agent delivery assembly to execute the local response strategy.

10. The fire protection system with fire-resistant partitioning function according to claim 9, characterized in that, The second data acquisition element includes a lidar and / or a visual sensor and / or an infrared thermal imager.