Intelligent fire extinguishing system
By integrating intelligent fire protection systems and combining the mobile drive mechanisms of high-pressure spray guns and fire blankets, precise location of fires involving new energy vehicles and flexible adjustment of fire extinguishing strategies can be achieved. This solves the problems of long response time, high false alarm rate and resource waste in existing fire protection systems, and improves the timeliness of fire prevention and control and the efficiency of fire extinguishing.
Patent Information
- Application Number
- CN202520285008.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing fire protection systems suffer from long response times, low extinguishing efficiency, and high false alarm rates when dealing with fires involving new energy vehicles. They lack intelligent fire detection and response capabilities, cannot accurately locate the source of the fire, and have high maintenance costs. They are also difficult to adapt to complex environments, leading to complexity in fire management and waste of resources.
The system employs an intelligent fire suppression system that integrates a high-pressure spray gun, a fire blanket, a temperature sensor, and a main control circuit. It monitors the fire in real time using an infrared thermal imaging camera and enables remote control via B5G/6G communication technology. The system also features a moving drive mechanism and height adjustment for the high-pressure spray gun and fire blanket, allowing for precise positioning and flexible adjustment of fire suppression strategies.
It significantly improves the timeliness and accuracy of fire prevention and control, reduces resource waste, increases fire extinguishing efficiency, lowers maintenance costs, adapts to the needs of parking lots of various sizes and complexities, and ensures personnel safety.
Smart Images

Figure CN223944814U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of fire fighting facilities, and relates to a fire fighting system, in particular to an intelligent fire fighting system. BACKGROUND
[0002] With the rapid development of new energy vehicles, especially electric vehicles, and the continuous improvement of market penetration rate, the fire safety hazards of buildings or facilities such as multi-storey parking buildings, underground parking lots, mechanical parking garages and other densely parked buildings have gradually become the focus of attention. Among them, the lithium ion battery used in electric vehicles may cause fire under certain conditions, and once it catches fire, the fire spreads rapidly and is difficult to control effectively.
[0003] Traditional fire fighting equipment often shows the shortcomings of long response time and low fire extinguishing efficiency when dealing with such fires, and cannot take effective measures in time in the early stage of fire, which leads to the spread of fire and even affects surrounding vehicles, causing greater economic losses and safety hazards. The existing fire fighting system relies on manual monitoring or simple automatic triggering mechanism, and lacks intelligent fire detection and response capability. Such limitations not only affect the timeliness of fire handling, but also may cause false alarms or omissions, increasing the complexity and uncertainty of fire management.
[0004] Ordinary parking lots usually have a fire fighting solution of smoke detector and automatic water spray fire extinguishing system. This solution installs multiple smoke detectors on the ceiling or top of the parking lot for real-time monitoring of fire smoke concentration. When the smoke concentration exceeds the preset threshold, the detector will trigger an alarm signal and start the automatic water spray fire extinguishing system. The water spray fire extinguishing system sprays water mist or water column to the fire area through the pre-embedded pipeline and nozzle to suppress the spread of fire. In addition, some systems are also equipped with sound and light alarms and remote monitoring platforms to remind on-site personnel and managers of the occurrence of fire.
[0005] The fire protection solution equipped with smoke detectors and automatic sprinkler systems has the following disadvantages: ①High false alarm rate and insufficient reliability: Smoke detectors are easily disturbed by environmental factors such as vehicle exhaust, dust, etc. in the parking lot, resulting in a high false alarm rate. Frequent false alarms not only reduce the credibility of the system, but also may cause unnecessary waste of resources. ②Single extinguishing method, poor adaptability: The automatic sprinkler system mainly targets ordinary solid fires, and its extinguishing effect is limited for oil fires or electrical fires commonly seen in vehicle fires, which may even exacerbate the fire or cause secondary disasters. ③Lack of precise positioning, serious waste of resources: The sprinkler system usually sprays in regions and cannot accurately locate the source of the fire, resulting in a large amount of water being wasted in non-fire areas, and may cause water damage to vehicles and equipment not affected by the fire. ④Complex system, high maintenance cost: The automatic sprinkler system requires complex pipe network installation and regular water pressure testing and equipment maintenance, increasing the installation and maintenance cost of the system. ⑤Low degree of intelligence, unable to dynamically adjust: The existing technology lacks real-time analysis and dynamic adjustment capability of fire development trend, and cannot optimize the fire extinguishing strategy according to the size and spread direction of the fire, resulting in low fire extinguishing efficiency.
[0006] The fire warning equipment of some parking lots includes infrared thermal imaging technology and gas sensor parking lot fire monitoring and warning scheme. This scheme installs infrared thermal imaging cameras and gas sensors at key positions in the parking lot to monitor temperature changes and harmful gas concentrations in real time. When detecting abnormally high temperature or harmful gas concentration exceeding the standard, the system will trigger an alarm signal and transmit the fire information to the monitoring center through the wireless communication module. The monitoring center can start the corresponding emergency plan according to the fire information, such as notifying the management personnel or linking the fire-fighting equipment.
[0007] The parking lot fire monitoring and early warning scheme equipped with infrared thermal imaging technology and gas sensors has the following shortcomings: ① High cost, difficult to popularize: the prices of infrared thermal imaging cameras and gas sensors are relatively high, and complex installation and debugging processes are required, resulting in high overall system cost, making it difficult to popularize and apply in small and medium-sized parking lots. ② Complex data processing, limited response speed: the amount of data generated by infrared thermal imaging and gas sensors is large, which requires complex algorithms for processing and analysis, resulting in slow system response speed, which is difficult to meet the real-time requirements of fire emergency response. ③ High false alarm rate, insufficient reliability: infrared thermal imaging cameras are easily disturbed by environmental temperature changes, direct sunlight and other factors, while gas sensors may be affected by vehicle exhaust, dust and other environmental factors in the parking lot, resulting in a high false alarm rate. ④ Lack of linkage fire extinguishing capability, single function: existing technologies mainly focus on fire monitoring and alarm, lack of linkage capability with fire extinguishing equipment, cannot automatically start fire extinguishing measures after fire occurs, still need to rely on manual intervention. ⑤ High maintenance difficulty, poor stability: infrared thermal imaging cameras and gas sensors need to be calibrated and maintained regularly, and have high requirements for environmental conditions. After long-term use, performance may decline or fail, affecting the stability and reliability of the system.
[0008] Therefore, there is an urgent need to design a new fire extinguishing system to overcome at least some of the above-mentioned deficiencies of existing fire extinguishing systems. Content of the utility model
[0009] The utility model provides a kind of intelligent fire extinguishing system, can significantly improve the timeliness and accuracy of fire prevention and control, effectively reduce the loss caused by fire.
[0010] To solve the above technical problems, according to one aspect of the utility model, the following technical solutions are adopted:
[0011] An intelligent fire extinguishing system, the intelligent fire extinguishing system comprises: a main control circuit, a fire extinguishing assembly and a monitoring assembly, the main control circuit is connected with the fire extinguishing assembly and the monitoring assembly respectively;
[0012] The fire extinguishing assembly comprises a high-pressure spray gun device and a fire blanket device; the high-pressure spray gun device and the fire blanket device are supported in a designated area by a support mechanism;
[0013] The high-pressure spray gun device comprises at least one high-pressure spray gun and at least one first movement driving mechanism, the first movement driving mechanism is connected with the corresponding high-pressure spray gun, and can drive the high-pressure spray gun to move along a designated path;
[0014] The fire blanket device comprises at least one fire blanket body and at least one second movement driving mechanism, the second movement driving mechanism is connected with the corresponding fire blanket body, and can drive the fire blanket body to move along a designated path;
[0015] The monitoring component comprises at least one temperature sensor for sensing temperature data of a designated area; the output of the temperature sensor is connected to the input of the main control circuit, so that the sensed temperature data can be transmitted to the main control circuit.
[0016] As an embodiment of the present application, the high-pressure spray gun device is arranged based on a first support, the first support is provided with at least one first track, and the first movement driving mechanism is arranged on the corresponding first track and can drive the corresponding high-pressure spray gun to move along the designated first track.
[0017] As an embodiment of the present application, the first movement driving mechanism comprises a first driving motor and a roller, the first driving motor is connected to the roller and can drive the roller to rotate; the roller is arranged in the designated first track and can move along the first track under the driving of the first driving motor, thereby driving the corresponding high-pressure spray gun to move. Alternatively, the first movement driving mechanism comprises a first driving motor, a ball screw, a nut and a sliding block, the sliding block is connected to the high-pressure spray gun; the first driving motor drives the ball screw to rotate, the nut is nested in the ball screw and can slide towards a designated direction under the driving of the ball screw; the nut is connected to the sliding block, thereby driving the sliding block to slide.
[0018] As an embodiment of the present application, the fire blanket device is arranged based on a second support, the second support is provided with at least one second track, and the second movement driving mechanism is arranged on the corresponding second track and can drive the corresponding fire blanket body to move along the designated second track.
[0019] As an embodiment of the present application, the second movement driving mechanism comprises a plurality of movement units, each movement unit is connected to a designated part of the fire blanket body, and each movement unit can move along the designated second track, thereby driving the fire blanket body to move in a designated direction.
[0020] As an embodiment of the present application, each movement unit is provided with an electromagnetic adsorption mechanism, and a designated area of the fire blanket body is provided with an adsorption matching mechanism; under the condition that the electromagnetic adsorption mechanism has magnetic adsorption force, the adsorption matching mechanism is adsorbed by the corresponding electromagnetic adsorption mechanism; under the condition that the electromagnetic adsorption mechanism does not have magnetic adsorption force, the fire blanket body falls to the designated area under the action of gravity.
[0021] As an embodiment of the present application, the movement unit is a sliding mechanism, the sliding mechanism is connected to a second driving motor, and under the driving of the second driving motor, the sliding mechanism can slide along the designated second track.
[0022] As an embodiment of the utility model, the fire blanket device further includes a fire blanket unfolding driving mechanism, the fire blanket unfolding driving mechanism includes a connecting mechanism, a third driving mechanism and a third track;
[0023] The connecting mechanism is connected with the third driving mechanism, the third driving mechanism is arranged on the third track, and the third driving mechanism can drive the connecting mechanism to move along the third track.
[0024] The connecting mechanism can be connected with a set position of the fire blanket body, and after being driven by the third driving mechanism towards a set direction, the connecting mechanism can drive the fire blanket body to unfold.
[0025] As an embodiment of the utility model, the connecting mechanism includes at least one second electromagnetic adsorption mechanism, and a set area of the fire blanket body is provided with a second adsorption matching mechanism capable of being adsorbed by the second electromagnetic adsorption mechanism when the second electromagnetic adsorption mechanism has magnetism.
[0026] The output end of the main control circuit is connected with the input end of the second electromagnetic adsorption mechanism, the switch of the second electromagnetic adsorption mechanism can be controlled, and therefore whether the second electromagnetic adsorption mechanism and the second adsorption matching mechanism have magnetic adsorption force can be controlled.
[0027] As an embodiment of the utility model, the fire blanket body is arranged along a rotating shaft and can be rolled up along the rotating shaft, the third track is arranged horizontally, and the third track is arranged perpendicularly to the central axis of the rotating shaft.
[0028] A set area of the rotating shaft is provided with at least one third electromagnetic adsorption mechanism, and a set area of the fire blanket body is provided with a third adsorption matching mechanism capable of being adsorbed by the third electromagnetic adsorption mechanism when the third electromagnetic adsorption mechanism has magnetism.
[0029] The output end of the main control circuit is connected with the input end of the third electromagnetic adsorption mechanism, the switch of the third electromagnetic adsorption mechanism can be controlled, and therefore whether the third electromagnetic adsorption mechanism and the third adsorption matching mechanism have adsorption force can be controlled.
[0030] As an embodiment of the utility model, the intelligent fire control system includes a height adjusting device, the height adjusting device is connected with the high-pressure spray gun device or / and the fire blanket device, and the height of the high-pressure spray gun device or / and the fire blanket device can be adjusted.
[0031] The intelligent fire control system provided by the utility model can significantly improve the timeliness and accuracy of fire prevention and control, and effectively reduce the loss caused by fire. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1It is the component schematic view of the intelligent fire-fighting system in one embodiment of the utility model.
[0033] Figure 2 It is the structure schematic view of the intelligent fire-fighting system in one embodiment of the utility model.
[0034] Figure 3 It is the structure schematic view of the high-pressure spray gun in one embodiment of the utility model.
[0035] Figure 4 It is the structure schematic view of the fire blanket device in one embodiment of the utility model.
[0036] Figure 5 It is the structure schematic view of the fire blanket device winding and unfolding in one embodiment of the utility model.
[0037] Figure 6 It is another structure schematic view of the fire blanket device winding and unfolding in one embodiment of the utility model. DETAILED DESCRIPTION
[0038] The preferred embodiments of the utility model are described in detail below in combination with the drawings.
[0039] In order to further understand the utility model, the preferred embodiments of the utility model are described below in combination with the embodiments, but it should be understood that these descriptions are only for further illustrating the features and advantages of the utility model, and are not the limitation of the utility model claims.
[0040] The description of this part is only for several typical embodiments, and the utility model is not limited to the range of the embodiment description.
[0041] The "connection" in the specification includes direct connection and indirect connection, such as connection through some active devices, passive devices or electrically conductive media, and can also include the connection of other active devices or passive devices known to those skilled in the art on the basis of achieving the same or similar functional purposes, such as the connection of circuits or components such as switches, follower circuits, etc.
[0042] The utility model discloses an intelligent fire-fighting system, Figure 1 It is the component schematic view of the intelligent fire-fighting system in one embodiment of the utility model. Figure 1 The intelligent fire-fighting system includes: main control circuit 1, fire-fighting assembly 2 and monitoring assembly 3, and the main control circuit 1 is connected with fire-fighting assembly 2 and monitoring assembly 3 respectively.
[0043] The fire-fighting assembly 2 comprises a high-pressure spray gun device 21 and a fire blanket device 22; the high-pressure spray gun device 21 and the fire blanket device 22 are supported on a set region by a supporting mechanism; the supporting mechanism can be a support.
[0044] The high-pressure spray gun device 21 comprises at least one high-pressure spray gun 211 and at least one first movement driving mechanism 212, the first movement driving mechanism 212 is connected with the corresponding high-pressure spray gun 211 and can drive the high-pressure spray gun 211 to move along a set path. In an embodiment, the high-pressure spray gun 211 can spray liquid fire-extinguishing medium such as fire-fighting water; in another embodiment, the high-pressure spray gun 211 can spray powder solid fire-extinguishing medium.
[0045] The fire blanket device 22 comprises at least one fire blanket body 221 and at least one second movement driving mechanism 222, the second movement driving mechanism 222 is connected with the corresponding fire blanket body 221 and can drive the fire blanket body 221 to move along a set path.
[0046] The monitoring assembly 3 comprises at least one temperature sensor 31, which is used to sense the temperature data of a set region; the output end of the temperature sensor 31 is connected with the input end of the main control circuit 1 and can send the sensed temperature data to the main control circuit 1. In an embodiment, the temperature sensor 31 can sense the temperature of the fire blanket body 221.
[0047] In an embodiment of the utility model, the high-pressure spray gun device 21 is arranged based on a first support 23, the first support is provided with at least one first track 231, and the first movement driving mechanism 212 is arranged on the corresponding first track 231 and can drive the corresponding high-pressure spray gun 211 to move along the set first track 231.
[0048] The first movement driving mechanism 212 comprises a first driving motor 2121 and a roller, the first driving motor is connected with the roller and can drive the roller to rotate; the roller is arranged on the set first track 231 and can move along the first track 231 under the drive of the first driving motor 2121, thereby driving the corresponding high-pressure spray gun 211 to move along the first track 231. Of course, the first movement driving mechanism 212 can also comprise a sixth driving motor 2126 and a sixth roller, the sixth driving motor 2126 is connected with the sixth roller and can drive the sixth roller to rotate, the sixth roller is arranged on a sixth track 236 and can move along the sixth track 236 under the drive of the sixth driving motor 2126, thereby driving the corresponding high-pressure spray gun 211 to move along the sixth track 236. The first track 231 can be arranged perpendicularly to the sixth track 236.
[0049] Figure 3 It is a structural schematic view of the high-pressure spray gun in an embodiment of the utility model; please refer toFigure 3 In an embodiment of the present application, the high-pressure spray gun 211 can be provided with a first through hole 2111 and a second through hole 2112; the first support 23 further comprises a fourth track 234 and a fifth track 235. The fourth track 234 passes through the first through hole 2111, and under the drive of the first driving motor 2121, the high-pressure spray gun 211 can slide along the fourth track 234; the fifth track 235 passes through the second through hole 2112, and under the drive of the third driving motor 2123, the high-pressure spray gun 211 can slide along the fifth track 235. In an embodiment, the fifth track 235 is provided with a track (which can be the first track 231 described above, and the first track 231 is parallel to the fourth track 234) at both ends thereof, and the first driving motor 2121 can drive the fifth track 235 to slide along the tracks at both ends thereof, thereby driving the high-pressure spray gun 211 to slide along the fourth track 234; the fourth track 234 is provided with a track (which can be the sixth track 236 described above, and the sixth track 236 is parallel to the fifth track 235) at both ends thereof, and the third driving motor 2123 can drive the fourth track 234 to slide along the tracks at both ends thereof, thereby driving the high-pressure spray gun 211 to slide along the fifth track 235.
[0050] Alternatively, the first movement driving mechanism can drive the high-pressure spray gun to slide in the form of a ball screw. The first movement driving mechanism comprises a first driving motor, a ball screw, a nut, and a sliding block, wherein the sliding block is connected to the high-pressure spray gun; the first driving motor drives the ball screw to rotate, the nut is nested in the ball screw and can slide towards a set direction under the drive of the ball screw; the nut is connected to the sliding block, thereby driving the sliding block to slide. Of course, the movement of the high-pressure spray gun can also adopt other driving modes.
[0051] The fire blanket device 22 is arranged based on the second support 24, the second support 24 is provided with at least one second track 242, and the second movement driving mechanism 222 is arranged on the corresponding second track 242 and can drive the corresponding fire blanket body 221 to move along the set second track 242. The second movement driving mechanism 222 comprises a plurality of movement units, each movement unit is connected to a set position of the fire blanket body 221, and each movement unit can move along the set second track 242, thereby driving the fire blanket body 221 to move in a set direction.
[0052] Figure 4 It is a structural schematic view of the fire blanket device in an embodiment of the present application; please refer to Figure 4In an embodiment of the utility model, each mobile unit is provided with an electromagnetic adsorption mechanism 223, and the set area of the fire blanket body 221 is provided with an adsorption matching mechanism, under the condition that the electromagnetic adsorption mechanism has magnetic adsorption force, the adsorption matching mechanism is adsorbed by the corresponding electromagnetic adsorption mechanism 223, under the condition that the electromagnetic adsorption mechanism 223 does not have magnetic adsorption force, the fire blanket body 221 falls to the set area under the action of gravity.
[0053] The mobile unit can be a sliding mechanism 2222 (the sliding mechanism 2222 can be a sliding block), and the sliding mechanism is connected with a second driving motor 2221, and under the driving of the second driving motor 2221, the sliding mechanism 2222 can slide along a set second track 242.
[0054] Of course, the second mobile driving mechanism 222 can also drive the sliding block to slide through the ball screw mode; the sliding blocks on the same track can be arranged on the corresponding nuts, two ball nuts are nested on a screw rod; the driving motor drives the screw rod to rotate, thereby driving the two ball nuts on the screw rod to move linearly along the screw rod, thereby driving the sliding block to move. In addition, the two ball nuts can be combined into one, that is, two sliding blocks are arranged on one ball nut. In addition, the sliding block can be arranged only one (only one ball nut is also needed), and the sliding block can have a certain length, thereby being capable of fixing one side of the fire blanket body.
[0055] Figure 5 、 Figure 6 It is a structural schematic view of the fire blanket device winding and unwinding in an embodiment of the utility model, please refer to Figure 5 、 Figure 6 In an embodiment of the utility model, the fire blanket device 22 can include a fire blanket unwinding driving mechanism 224, the fire blanket unwinding driving mechanism includes a connecting mechanism 2241, a third driving mechanism 2242 and a third track 233. The connecting mechanism 2241 is connected with the third driving mechanism 2242, the third driving mechanism 2242 is arranged on the third track 233, and the third driving mechanism 2242 can drive the connecting mechanism 2241 to move along the third track 233. The connecting mechanism 2241 can be connected with the set part of the fire blanket body 221, and after being driven by the third driving mechanism 2242 towards the set direction, the connecting mechanism 2241 can drive the fire blanket body 221 to unwind.
[0056] The connecting mechanism 2241 comprises at least one second electromagnetic adsorption mechanism 2243, and a designated area of the fire blanket body 221 is provided with a second adsorption matching mechanism capable of being adsorbed by the second electromagnetic adsorption mechanism 2243 when the second electromagnetic adsorption mechanism 2243 has magnetism. The output end of the main control circuit 1 is connected to the input end of the second electromagnetic adsorption mechanism 2243, and the switch of the second electromagnetic adsorption mechanism 2243 can be controlled, so as to control whether the second electromagnetic adsorption mechanism 2243 and the second adsorption matching mechanism have magnetic adsorption force.
[0057] The fire blanket body 221 is arranged along an axis of rotation 2211 and can be rolled along the axis of rotation 2211. The axis of rotation 2211 is connected to a fourth driving mechanism and can be rotated under the driving of the fourth driving mechanism (of course, the fourth driving mechanism can not be provided, and the fire blanket body is rotated along the axis of rotation 2211 under the driving of the third driving mechanism). The third track 243 is arranged horizontally and perpendicularly to the central axis of the axis of rotation 2211. A designated area of the axis of rotation 2211 is provided with at least one third electromagnetic adsorption mechanism 2212, and a designated area of the fire blanket body 221 is provided with a third adsorption matching mechanism capable of being adsorbed by the third electromagnetic adsorption mechanism 2212 when the third electromagnetic adsorption mechanism 2212 has magnetism. The output end of the main control circuit 1 is connected to the input end of the third electromagnetic adsorption mechanism 2212, and the switch of the third electromagnetic adsorption mechanism 2212 can be controlled, so as to control whether the third electromagnetic adsorption mechanism 2212 and the third adsorption matching mechanism have adsorption force.
[0058] When it is necessary to deploy the fire blanket body 221, the connecting mechanism 2241 adsorbs one end of the fire blanket body 221 through the second electromagnetic adsorption mechanism 2243; the main control circuit 1 controls the third driving mechanism 2242 to act, drives the connecting mechanism 2241 to move along the third track 233 away from one side of the fire blanket body 221, and thus drives the fire blanket body 221 to be deployed. After deployment, the second electromagnetic adsorption mechanism 2243 and the third electromagnetic adsorption mechanism 2212 are controlled to lose magnetic adsorption force, so that the fire blanket body 221 falls on the corresponding parking space to extinguish the fire.
[0059] Of course, the fire blanket deployment driving mechanism 224 can also be realized by a gas pressure driving mechanism; compressed gas drives a piston to move in a cylinder, thus driving a connecting rod to act and drive the fire blanket body to be deployed.
[0060] The intelligent fire-fighting system can comprise a height adjusting device 5 connected to the high-pressure spray gun device 21 and / or the fire blanket device 22, which can adjust the height of the high-pressure spray gun device 21 and / or the fire blanket device 22. In an embodiment, the height adjusting device 5 can adjust the height of the high-pressure spray gun device 21 by adjusting the height of the first support 23; in another embodiment, the height adjusting device 5 can also adjust the height of the high-pressure spray gun device 21 and the fire blanket device 22 by adjusting the height of the second support 24.
[0061] The intelligent fire-fighting system of the utility model can be used in ground parking lots, underground parking lots, and stereo garage parking lots; the composition of the intelligent fire-fighting system can be selected according to the space limitation of different parking lots. In addition, fire blankets and high-pressure spray guns can be selected as needed; in some scenarios, only fire blankets or high-pressure spray guns can be set; in another scenario, fire blankets and high-pressure spray guns can be set simultaneously.
[0062] The utility model integrates multiple advanced technologies and intelligent control systems, significantly improving the efficiency and safety of fire-fighting in parking lots. First, the system monitors the temperature and real-time video stream of the fire scene in real time through infrared thermal imaging cameras, accurately locates the fire source, and responds quickly, greatly shortening the reaction time in the early stage of the fire and effectively preventing the spread of the fire. Second, the high-pressure spray gun system has a multi-nozzle design and pressure adjustment function, which can flexibly adjust the fire-fighting strategy according to the size of the fire and the type of the fire, maximize the fire-fighting effect, and reduce water waste. The rapid deployment and automatic reset function of the fire blanket system can quickly isolate the fire source from oxygen in new energy vehicle fires, preventing secondary disasters. In addition, the design of the slide rail and slide block system allows the fire-fighting device to move freely in the horizontal and vertical directions, adapting to parking lots of different heights and complex layouts, ensuring that the fire-fighting equipment can quickly reach the fire scene. The remote control function of the system is realized through B5G / 6G communication technology, allowing operators to monitor and control the equipment in real time from a safe distance, further ensuring personnel safety. The overall scheme not only improves the accuracy and efficiency of fire-fighting, but also has high flexibility and adaptability, meeting the needs of parking lots of various sizes and complexities, providing an intelligent, efficient, and reliable fire-fighting solution for modern parking lots.
[0063] In one use scenario of the utility model, the utility model has the following advantages:
[0064] Intelligent fire detection and response: Through the combination of infrared thermal imaging cameras and intelligent control systems, the system can analyze the temperature distribution and fire development of the fire scene in real time, and automatically generate the optimal fire extinguishing strategy. This intelligent fire detection and response mechanism not only improves the timeliness of fire handling, but also reduces the possibility of human error, ensuring the accuracy and efficiency of the fire extinguishing process.
[0065] Multi-functional fire extinguishing device: The dual fire extinguishing function design of high-pressure spray gun and fire blanket makes the system able to deal with different types of fires, especially for lithium-ion battery fires in new energy vehicle fires. The fire blanket can quickly isolate oxygen to prevent fire spread and secondary disasters. At the same time, the multi-nozzle design and pressure adjustment function of the high-pressure spray gun can flexibly adjust the fire extinguishing method according to the size of the fire and the type of fire, ensuring the maximization of fire extinguishing effect.
[0066] Quick deployment and flexible movement: The design of slide rail and slide block system makes the fire extinguishing device freely move in horizontal and vertical directions, adapting to different heights and complex layouts of parking lots. This design not only ensures that the fire extinguishing equipment can quickly reach the fire scene, but also can quickly adjust the position of the fire extinguishing equipment after the fire occurs, ensuring the accuracy and efficiency of the fire extinguishing operation.
[0067] Remote control and real-time monitoring: Through B5G / 6G communication technology, the system supports remote control and real-time monitoring functions. The operator can monitor the fire scene in real time from a safe distance and perform fire extinguishing operations through remote control equipment. This remote control function not only improves the safety of the operator, but also enables rapid response after a fire occurs, ensuring the timeliness and effectiveness of the fire extinguishing operation.
[0068] Energy saving and environmental protection: The system can flexibly adjust the fire extinguishing method according to the size of the fire and the type of fire through intelligent fire extinguishing strategy and pressure adjustment function, reducing water resource waste. At the same time, the automatic reset function and modular design of the fire blanket make the equipment reusable, reducing resource waste and maintenance costs.
[0069] High adaptability and scalability: The fire extinguishing system of the invention has high flexibility and adaptability, which can adapt to various scales and complexity of parking lot requirements. Whether it is an underground parking lot, a multi-level parking building or a mechanical parking garage, the system can adjust the position of the slide rail and slide block to ensure that the fire extinguishing equipment can quickly reach the fire scene, meeting the fire extinguishing needs of different scenarios.
[0070] In summary, the intelligent fire-fighting system provided by the utility model has high flexibility and adaptability, can meet the needs of parking lots of various scales and complexity, and provides an intelligent, efficient and reliable fire-fighting solution for modern parking lots.
[0071] The technical features of the above-described embodiments can be combined in any manner, and to make the description concise, all possible combinations of the technical features in the above-described embodiments are not described, but as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present disclosure.
[0072] The description and application of the utility model herein are illustrative, and the scope of the utility model is not limited in the above-described embodiments. The effects or advantages involved in the embodiments can be interfered by various factors and can not be embodied in the embodiments. The description of the effects or advantages is not used to limit the embodiments. The variations and changes of the disclosed embodiments are possible, and the replacements and equivalent components of the embodiments are known to those skilled in the art. It should be clear to those skilled in the art that the utility model can be realized in other forms, structures, arrangements, proportions, and with other components, materials and parts without departing from the spirit or essential characteristics of the utility model. Other variations and changes of the disclosed embodiments can be made without departing from the scope and spirit of the utility model.
Claims
1. An intelligent fire protection system, characterized in that, The intelligent fire protection system includes: a main control circuit, fire protection components, and a monitoring component, wherein the main control circuit is connected to the fire protection components and the monitoring component respectively; The fire-fighting components include a high-pressure spray gun and a fire blanket; the high-pressure spray gun and the fire blanket are supported in a designated area by a support mechanism. The high-pressure spray gun device includes at least one high-pressure spray gun and at least one first moving drive mechanism. The first moving drive mechanism is connected to the corresponding high-pressure spray gun and can drive the high-pressure spray gun to move along a set path. The fire blanket device includes at least one fire blanket body and at least one second moving drive mechanism. The second moving drive mechanism is connected to the corresponding fire blanket body and can drive the fire blanket body to move along a set path. The monitoring component includes at least one temperature sensor, which is used to sense temperature data of a set area; the output terminal of the temperature sensor is connected to the input terminal of the main control circuit, and can send the sensed temperature data to the main control circuit.
2. The intelligent fire protection system according to claim 1, characterized in that: The high-pressure spray gun device is based on a first bracket, the first bracket is provided with at least one first track, and the first moving drive mechanism is provided on the corresponding first track, which can drive the corresponding high-pressure spray gun to move along the set first track.
3. The intelligent fire protection system according to claim 2, characterized in that: The first moving drive mechanism includes a first drive motor and a roller. The first drive motor is connected to the roller and can drive the roller to rotate. The roller is set in a set first track and can move along the first track under the drive of the first drive motor, thereby driving the corresponding high-pressure spray gun to move. Alternatively, the first moving drive mechanism includes a first drive motor, a ball screw, a nut, and a slider, with the slider connected to the high-pressure spray gun; the first drive motor drives the ball screw to rotate, and the nut is nested in the ball screw and can slide in a set direction under the drive of the ball screw; The nut connects to the slider, thereby enabling the slider to slide.
4. The intelligent fire protection system according to claim 1, characterized in that: The fire blanket device is based on a second support, the second support is provided with at least one second track, and the second moving drive mechanism is provided on the corresponding second track, which can drive the corresponding fire blanket body to move along the set second track.
5. The intelligent fire protection system according to claim 4, characterized in that: The second moving drive mechanism includes several moving units, each of which is connected to a set part of the fire blanket body. Each moving unit can move along a set second track, thereby driving the fire blanket body to move in a set direction.
6. The intelligent fire protection system according to claim 5, characterized in that: Each mobile unit is equipped with an electromagnetic adsorption mechanism, and the set area of the fire blanket body is equipped with an adsorption and engagement mechanism. When the electromagnetic adsorption mechanism has magnetic adsorption force, the adsorption and engagement mechanism is adsorbed by the corresponding electromagnetic adsorption mechanism. When the electromagnetic adsorption mechanism does not have magnetic adsorption force, the fire blanket body falls towards the set area under the action of gravity. The moving unit is a sliding mechanism, which is connected to a second drive motor. Under the drive of the second drive motor, the sliding mechanism can slide along a set second track.
7. The intelligent fire protection system according to claim 4, characterized in that: The fire blanket device further includes a fire blanket deployment drive mechanism, which includes a connecting mechanism, a third drive mechanism, and a third track. The connecting mechanism is connected to the third driving mechanism, the third driving mechanism is disposed on the third track, and the third driving mechanism can drive the connecting mechanism to move along the third track; The connecting mechanism can connect to a set part of the fire blanket body, and after being driven in a set direction by the third driving mechanism, it can drive the fire blanket body to unfold.
8. The intelligent fire protection system according to claim 7, characterized in that: The connecting mechanism includes at least one second electromagnetic adsorption mechanism, and the designated area of the fire blanket body is provided with a second adsorption and engagement mechanism that can be adsorbed by the second electromagnetic adsorption mechanism when the second electromagnetic adsorption mechanism is magnetic. The output terminal of the main control circuit is connected to the input terminal of the second electromagnetic adsorption mechanism, and can control the switching of the second electromagnetic adsorption mechanism, thereby controlling whether there is magnetic adsorption force between the second electromagnetic adsorption mechanism and the second adsorption cooperation mechanism.
9. The intelligent fire protection system according to claim 8, characterized in that: The fire blanket body is arranged along a pivot and can be rolled up along the pivot; the third track is arranged horizontally and perpendicular to the central axis of the pivot. The set area of the rotating shaft is provided with at least one third electromagnetic adsorption mechanism, and the set area of the fire blanket body is provided with a third adsorption cooperation mechanism that can be adsorbed by the third electromagnetic adsorption mechanism when the third electromagnetic adsorption mechanism is magnetic. The output terminal of the main control circuit is connected to the input terminal of the third electromagnetic adsorption mechanism, and can control the switching of the third electromagnetic adsorption mechanism, thereby controlling whether there is an adsorption force between the third electromagnetic adsorption mechanism and the third adsorption coordination mechanism.
10. The intelligent fire protection system according to claim 1, characterized in that: The intelligent fire protection system includes a height adjustment device, which is connected to the high-pressure spray gun device and / or the fire blanket device, and can adjust the height of the high-pressure spray gun device and / or the fire blanket device.