Intelligent fire early warning method and system, electronic equipment and storable medium
By using temperature sensors and gas detection devices in the warehouse to monitor environmental parameters in real time, and generating early warning information in combination with preset interval analysis, the problem of difficulty in time discovering flammable and explosive gases in the existing technology is solved, and the safety supervision of the warehouse environment and the timely handling of fire hazards is achieved.
Patent Information
- Application Number
- CN202510374944.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-06-17
AI Technical Summary
The existing technology is difficult to detect and warn of the existence of flammable and explosive gases in warehouse supervision in a timely manner, making it difficult for fire hazards to be discovered and dealt with in the first time.
The temperature sensor and gas detection device monitor the temperature and flammable gas concentration of the warehouse environment in real time, combine the preset warning range for analysis, generate corresponding warning information, and prompt and intervene through the alarm system.
Real-time detection and early warning of flammable and explosive gases in the warehouse are realized, timely detection and handling of fire hazards is improved, and the safety of the warehouse environment is ensured.
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Figure CN120164291A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of fire protection technology, and particularly to an intelligent fire warning method, system, electronic device and storage medium. Background Art
[0002] Warehousing is the storage and custody of goods and items through a warehouse. A warehouse, that is, a storehouse, is a general term for buildings and sites for storing, keeping, and storing items. It can be a building, a cave, a large container, or a specific site, etc., and has the function of storing and protecting items. Storage means storing and reserving for future use, which means receiving and storing for use, and has the meaning of receiving, keeping, and delivering for use. Warehousing is a comprehensive place that centrally reflects the material activities of a factory. It is a transfer station connecting production, supply, and sales, and plays an important auxiliary role in promoting production and improving efficiency. Warehousing is the temporary storage of products and items during the production and circulation processes due to order preposition or market forecast preposition. At the same time, around the physical activities of warehousing, clear and accurate reports, documents, and accurate information calculated by the accounting department are also carried out simultaneously. Therefore, warehousing is the integration of logistics, information flow, and document flow.
[0003] However, in the prior art, in a warehouse for storing items, the area of the warehouse is relatively large. During supervision, it is mostly through vision or smoke after a fire for alarm intervention, which makes supervision more troublesome. When storing items that are prone to volatilization or fermentation to produce flammable and explosive gases in the warehouse, such as a warehouse storing easily fermentable items such as coal and grain, under the action of microorganisms, organic matter decomposes to produce methane. When the concentration in the air reaches the explosion limit range of 5% - 15%, or for example, storing chemicals where metals react with acids, or having electrolysis equipment, etc., hydrogen may be generated. The explosion limit of hydrogen in the air is 4% - 75.6%. When the concentration is within this range and there is no good ventilation, it is difficult to detect and view in time and conduct alarm intervention, and the flammable and explosive gases are easily ignited, leading to fires. Summary of the Invention The purpose of the present invention is to provide an intelligent fire warning method, system, electronic device and storage medium, which has the advantages of real-time detection of the monitored storage warehouse and making reasonable warning according to the actual situation in the storage warehouse, so as to solve the problems raised in the above background art.
[0004] To achieve the above purpose, the present invention provides the following technical solution: An intelligent fire warning method, including the following steps: S101. Obtain the temperature and ventilation condition of the storage environment; Among them, the real-time temperature data of the monitored area of the target warehouse can be collected through a temperature sensor. As the temperature constantly changes, the temperature sensor records the temperature in the monitored area of the warehouse in real time and sends signals in real time to enter intervention or alarm at any time. The concentration of flammable gases in the monitored area of the warehouse is detected in real time through a gas detection device. As the concentration of flammable gases constantly changes, the gas detection device records the concentration in the monitored area of the warehouse in real time and sends signals in real time to enter intervention or alarm at any time; S102. Analyze the obtained environmental information with the preset early warning information range; Among them, the intervention temperature is set at 110°C, the alarm temperature is set at 120°C to 130°C. Analyze the real-time temperature data collected from the monitored area of the warehouse with the preset early warning temperature range and send the corresponding early warning information through the alarm system; Among them, the intervention concentration is set at 4%. Analyze the concentration data of flammable gases collected from the monitored area of the warehouse with the preset early warning concentration range and send the corresponding early warning information through the alarm system; S103. Perform a secondary real-time detection on the storage environment according to the early warning information and obtain the detection result; S104. Generate an instruction according to the detection result and perform the corresponding operation according to the instruction; Among them, when the real-time temperature in the monitored area of the warehouse reaches the intervention alarm temperature or the alarm temperature, the alarm system will send the corresponding early warning information. While broadcasting the early warning information, the environment in the monitored area of the warehouse is detected, and then the corresponding data parameters are obtained. Determine whether the data parameters of the environment in the monitored area of the warehouse meet the corresponding normal parameter values through detection, so as to obtain the corresponding detection result. According to the detection result of the environment in the monitored area of the warehouse, a corresponding feedback instruction is generated, and the system performs the corresponding target operation according to the feedback instruction; Further, the method described in claim 1 includes the first early warning information and the following steps: S201. Determine whether the real-time temperature is within the early warning range; S202. If the temperature is within the early warning range, obtain the first early warning information; S203. Obtain the early warning intervention corresponding to the first early warning information according to the early warning range; Among them, after obtaining the first early warning information, it is compared with the set early warning range. For example, the real-time temperature in the monitored area of the warehouse is collected through a temperature sensor, and the real-time temperature in the monitored area of the warehouse is obtained as 112°C, while the early warning set temperature is 110°C. The system analyzes and compares the real-time temperature with the preset early warning temperature range, and concludes that the real-time temperature in the monitored area of the warehouse is within the preset early warning temperature range, automatically generates the first early warning information, and gives an alarm through the alarm to indicate that the temperature is too high; Further, the method according to claim 1 includes a second warning message and the following steps: S204. If the temperature is within the alarm range, a second warning message is obtained; Among them, the temperature in the warehouse monitoring area is monitored by a temperature detector, and the monitored temperature is compared with the preset alarm temperature in real time. If the monitored temperature reaches the alarm range temperature, the corresponding second warning message is obtained; S205. According to the alarm range, obtain the corresponding alarm for the second warning message; Among them, after obtaining the second warning message, it is compared with the set alarm range. For example, the real-time temperature in the warehouse monitoring area is collected by a temperature sensor, and the real-time temperature in the warehouse monitoring area is obtained as 125 °C, while the warning set temperature is 120 °C to 130 °C. The system analyzes and compares the real-time temperature with the preset warning temperature range, and concludes that the real-time temperature in the warehouse monitoring area is within the preset alarm temperature range, automatically generates a second warning message, and gives an alarm prompt through the alarm that the temperature is too high; Further, the method according to claim 1 includes a third warning message and the following steps: S301. Determine whether the real-time ventilation is within the warning range; S302. If the ventilation is higher than the warning range, a third warning message is obtained; Among them, the concentration of flammable gas in the warehouse monitoring area is detected by a gas detection device, and the monitored concentration of flammable gas is compared with the preset alarm concentration in real time. If the monitored concentration of flammable gas reaches the alarm range concentration of flammable gas, the corresponding third warning message is obtained; S303. According to the warning range, obtain the corresponding alarm for the third warning message; Among them, after obtaining the third warning message, it is compared with the set alarm range. For example, the real-time concentration of flammable gas in the warehouse monitoring area is collected by a gas detection device, and the real-time temperature in the warehouse monitoring area is obtained as 6%, while the warning set temperature is 4%. The system analyzes and compares the real-time concentration of flammable gas with the preset concentration range of flammable gas, and concludes that the real-time concentration of flammable gas in the warehouse monitoring area is within the preset alarm temperature range, automatically generates a third warning message, and gives an alarm prompt through the alarm that the ventilation effect in the warehouse monitoring area is poor; Further, an intelligent fire warning method includes warning time recording and the following steps: S401. Record the warning intervention duration in real time; S402. If the warning intervention duration exceeds the preset time, send out a signal; S403. Receive the signal and contact relevant personnel through a preset contact method; Furthermore, the intelligent fire warning system is characterized by further comprising an acquisition module, an analysis module, a detection module, a processing module and a recording module; The acquisition module is composed of the above temperature sensor and gas detection device for detecting the temperature and flammable gas in the warehouse monitoring area. The analysis module is a program written in a computer for analyzing the detected data and comparing it with a preset range. The detection module is a program written in a computer for performing a secondary comparison of the acquired detection data with the actual environment and generating a signal. The processing module is composed of a processor for processing the data that reaches the warning or alarm range. The recording module is a memory for recording the warning time; Furthermore, an electronic device includes: a memory, a processor, and a computer program stored in the memory and capable of running on the processor. When the processor loads and executes the computer program; Furthermore, a storage medium includes a storage hard disk, and a computer program is stored in the computer-readable storage hard disk.
[0005] In summary, due to the adoption of the above technologies, the beneficial effects of the present invention are: 1. Real-time monitoring is carried out in the storage warehouse through various detection devices, and the real-time detected data is compared with the preset warning intervention or alarm range, and warning intervention and alarm are determined in combination with the actual situation.
[0006] 2. The intervention time is recorded in a timely manner through a computer and a computer program. After the intervention time exceeds the preset time range, the computer calls the reserved contact information to enable relevant personnel to conduct in-depth intervention or early fire fighting in the storage warehouse. Description of the Drawings
[0007] Figure 1 It is the overall flow schematic diagram of the intelligent fire warning method, system, electronic device and storage medium of the present invention; Figure 2 It is the flow schematic diagram of steps S201 - S205 in the intelligent fire warning method, system, electronic device and storage medium of the present invention; Figure 3 It is the flow schematic diagram of steps S301 - S303 in the intelligent fire warning method, system, electronic device and storage medium of the present invention; Figure 4 It is the flow schematic diagram of steps S401 - S403 in the intelligent fire warning method, system, electronic device and storage medium of the present invention; Figure 5 It is the overall module schematic diagram of the intelligent fire warning method, system, electronic device and storage medium of the present invention.
[0008] In the figure: 1. Acquisition module; 2. Analysis module; 3. Detection module; 4. Processing module; 5. Recording module. Specific implementation mode
[0009] To make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, rather than all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0010] The present invention provides an intelligent fire warning method and system as Figure 1 shown, including the following steps: S101. Obtain the temperature and ventilation conditions of the storage environment; S102. Analyze the obtained environmental information with a preset warning information range; S103. Perform secondary real-time detection on the storage environment according to the warning information, and obtain the detection result; S104. Generate an instruction according to the detection result, and perform corresponding operations according to the instruction; In the actual application process of step S101, the real-time temperature data of the monitored area of the target warehouse can be collected by a temperature sensor. As the temperature continuously changes, the temperature sensor records the temperature in the warehouse monitoring area in real time and sends signals in real time, and can enter intervention or alarm at any time. The concentration of flammable gases in the warehouse monitoring area is detected in real time by a gas detection device. As the concentration of flammable gases continuously changes, the gas detection device records the concentration in the warehouse monitoring area in real time and sends signals in real time, and can enter intervention or alarm at any time; In the actual application process of step S102, the ignition point of ordinary paper is between 130°C and 180°C. To prevent late reporting and false reporting, the intervention temperature is set at 110°C, the alarm temperature is set at 120°C to 130°C, and the real-time temperature data collected in the warehouse monitoring area is analyzed with the preset warning temperature range and the corresponding warning information is sent through the alarm system; In some warehouses storing easily fermentable items such as coal and grain, under the action of microorganisms, the decomposition of organic matter will produce methane. When the concentration of methane in the air reaches the explosion limit range of 4% - 14%, it may burn violently or even explode when encountering a fire source. The concentration of flammable gas in the space of the warehouse monitoring area being lower than 5% indicates good ventilation. To prevent late reporting and false reporting, the intervention concentration is set at 4%. The concentration data of the flammable gas collected in the warehouse monitoring area is analyzed with the preset warning concentration range and corresponding warning information is sent through the alarm system. In the actual application process from step S103 to step S104, when the real-time temperature in the warehouse monitoring area reaches the intervention alarm temperature or the alarm temperature, the alarm system will send corresponding warning information. While broadcasting the warning information, the environment of the warehouse monitoring area is detected, and then corresponding data parameters are obtained. By detecting and judging whether the data parameters of the environment in the warehouse monitoring area conform to the corresponding normal parameter values, the corresponding detection results are obtained. According to the detection results of the environment in the warehouse monitoring area, corresponding feedback instructions are generated, and the system performs corresponding target operations according to the feedback instructions. In one implementation manner of this embodiment, the warning information includes the first warning information, such as Figure 2 As shown, steps S102 to S104 further include the following steps:; S201. Judge whether the real-time temperature is within the warning range; S202. If the temperature is within the warning range, obtain the first warning information; S203. According to the warning range, obtain the corresponding warning intervention for the first warning information; In the actual application process from step S201 to step S202, the warning information refers to the warning prompt information when a serious fire occurs or may occur and causes or may cause serious consequences. Judge whether the obtained real-time temperature is within the preset warning temperature range. If it is within the warning temperature range, the corresponding first warning information is obtained. Through the first warning, the advantages of temperature detection in the warehouse monitoring area and early intervention in the degree of flammability but non-combustion in the warehouse monitoring area can be achieved. In the actual application process of step S203, after obtaining the first warning information, it is compared with the set warning range. For example, the real-time temperature in the warehouse monitoring area is collected through a temperature sensor, and the real-time temperature in the warehouse monitoring area is obtained as 112°C, while the warning set temperature is 110°C. The system analyzes and compares the real-time temperature with the preset warning temperature range, and concludes that the real-time temperature in the warehouse monitoring area is within the preset warning temperature range, automatically generates the first warning information, and gives an intermittent alarm prompt through the alarm that the temperature is too high. In one implementation manner of this embodiment, the warning information includes the second warning information, such as Figure 2As shown, step S201 further includes the following steps: S204. If the temperature is within the alarm range, a second warning message is obtained. S205. According to the alarm range, obtain the corresponding alarm for the second warning message. In the actual application process of step S204, the temperature in the warehouse monitoring area is monitored by a temperature detector, and the monitored temperature is compared with the preset alarm temperature in real time. If the monitored temperature reaches the temperature in the alarm range, the corresponding second warning message is obtained. Through the second warning, the temperature detection of the warehouse monitoring area is carried out, and the advantage of intervening in the fire occurring in the warehouse monitoring area is achieved. In the actual application process of step S205, after obtaining the second warning message, it is compared with the set alarm range. For example, the real-time temperature of the warehouse monitoring area is collected by a temperature sensor, and the real-time temperature of the warehouse monitoring area is obtained as 125°C, while the warning set temperature is 120°C to 130°C. The system analyzes and compares the real-time temperature with the preset warning temperature range, and concludes that the real-time temperature of the warehouse monitoring area is within the preset alarm temperature range, and automatically generates a second warning message, and continuously alarms through an alarm to indicate that the temperature is too high. In one implementation manner of this embodiment, the warning message includes a third warning message, such as Figure 3 As shown, steps S102 to S104 further include the following steps: S301. Determine whether the real-time ventilation is within the warning range. S302. If the ventilation is higher than the warning range, a third warning message is obtained. S303. According to the warning range, obtain the corresponding alarm for the third warning message. In the actual application process of steps S301 to S302, the concentration of flammable gas in the warehouse monitoring area is detected by a gas detection device, and the monitored concentration of flammable gas is compared with the preset alarm concentration in real time. If the monitored concentration of flammable gas reaches the concentration of flammable gas in the alarm range, the corresponding third warning message is obtained. The gas detection device may be composed of multiple groups of distributed gas methane sensors and hydrogen sensors. Through the third warning, the flammable gas in the warehouse monitoring area is detected, and the ventilation effect in the warehouse monitoring area is detected and judged by the concentration of flammable gas, so as to avoid the possible occurrence of easy ignition in the warehouse detection area due to poor ventilation. In the actual application process of step S303, after obtaining the third warning information, it is compared with the set alarm range. For example, the gas detection device is used to collect the real-time concentration of flammable gas in the warehouse monitoring area. The real-time temperature in the warehouse monitoring area is obtained as 6%, while the preset temperature for warning is 4%. The system analyzes and compares the real-time concentration of flammable gas with the preset concentration range of flammable gas, and concludes that the real-time concentration of flammable gas in the warehouse monitoring area is within the preset alarm temperature range, automatically generates the third warning information, and gives a long and short alarm prompt through the alarm to indicate that the ventilation effect in the warehouse monitoring area is poor; An intelligent fire warning method, including warning time recording and the following steps: S401. Record the warning intervention duration in real time; S402. If the warning intervention duration exceeds the preset time, send a signal outward; S403. Receive the signal and contact relevant personnel through the preset contact method; In the actual application process of step S401, when intervening in the temperature and ventilation conditions in the warehouse monitoring area, the duration of the intervention time is timed and stored. The devices for timing and storage can be computer devices such as desktop computers, laptop computers or cloud servers; In the actual application process of step S402, a preset duration is set for the warning intervention time. For example, the warning intervention duration is set to 40 minutes. If the warning intervention duration exceeds 40 minutes, a signal is sent outward through the transmitter to warn that the intervention time is too long but ineffective, avoiding the warning situation occurring intermittently for a long time and causing the best intervention time to be missed.
[0011] In the actual application process of step S403, the contact information of relevant personnel is preset on the computer through a computer program. After the transmitter sends a signal outward to warn that the intervention time is too long, the signal is received through the receiver and the relevant personnel are called according to the contact information preset on the computer, and the relevant personnel are called through the preset contact method to check the warning intervention situation; An intelligent fire warning system, characterized by further comprising an acquisition module 1, an analysis module 2, a detection module 3, a processing module 4 and a recording module 5; The acquisition module 1 is composed of the above temperature sensor and gas detection device, which is used to detect the temperature and flammable gas in the warehouse monitoring area, and then send the detection data to the analysis module 2. The analysis module 2 is used to analyze the preset warning or alarm range in the computer and the detected data. The detection module 3 is used to perform secondary detection and comparison on the data obtained from the analysis module 2 with the actual environment, and then send it to the processing module 4. The processing module 4 is composed of a processor and is used to process the data that reaches the warning or alarm range. The recording module 5 is a memory and is used to record the warning time; The present invention provides an electronic device, including: a memory, a processor, and a computer program stored in the memory and capable of running on the processor. When the processor loads and executes the computer program; The present invention provides a storage medium, including a storage hard disk, and a computer program is stored in the computer-readable storage hard disk.
[0012] As described above, only the preferred specific embodiments of the present invention are provided, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
[0013] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.
Claims
1. An intelligent fire early warning method, characterized in that: The steps include: S101, obtaining the temperature and ventilation conditions of the storage environment; Among them, the temperature sensor can be used to collect the real-time temperature data of the target warehouse monitoring area. As the temperature changes continuously, the temperature sensor records the temperature in the warehouse monitoring area in real time and sends a signal in real time, and intervenes or alarms at any time. The gas detection device can detect the concentration of flammable gas in the warehouse monitoring area in real time. As the concentration of flammable gas changes continuously, the gas detection device records the concentration in the warehouse monitoring area in real time and sends a signal in real time, and intervenes or alarms at any time; S102, analyzing the acquired environmental information and the preset warning information interval; The intervention temperature is set at 110°C, the alarm temperature is set at 120°C to 130°C, the real-time temperature data of the warehouse monitoring area collected is analyzed with the preset warning temperature range, and the corresponding warning information is sent through the alarm system; The intervention concentration is set at 4%, and the flammable gas concentration data collected in the warehouse monitoring area is analyzed with the preset warning concentration range, and the corresponding warning information is sent through the alarm system; S103, performing a second real-time detection of the storage environment according to the warning information, and obtaining the detection result; S104, generating an instruction according to the detection result, and executing a corresponding operation according to the instruction; Among them, when the real-time temperature of the warehouse monitoring area reaches the intervention alarm temperature or the alarm temperature, the alarm system will send the corresponding early warning information, and detect the warehouse monitoring area environment while broadcasting the early warning information, and then obtain the corresponding data parameters. Through the detection, it is determined whether the data parameters of the warehouse monitoring area environment meet the corresponding normal parameter values, so as to obtain the corresponding detection results. According to the detection results of the warehouse monitoring area environment, the corresponding feedback instructions are generated, and the system executes the corresponding target operation according to the feedback instructions.
2. The method according to claim 1, characterized in that: Includes the first warning information and the following steps: S201, determining whether the real-time temperature is within the warning range; S202: if the temperature is within the warning range, obtaining first warning information; S203, obtaining, according to the warning interval, a warning intervention corresponding to the first warning information; Among them, after obtaining the first warning information, it is compared with the set warning range. For example, the real-time temperature of the warehouse monitoring area is collected by the temperature sensor, and the real-time temperature of the warehouse monitoring area is 112°C, while the warning setting temperature is 110°C. The system analyzes and compares the real-time temperature with the preset warning temperature range, and concludes that the real-time temperature of the warehouse monitoring area is within the preset warning temperature range. The first warning information is automatically generated, and an alarm is used to indicate that the temperature is too high.
3. The method according to claim 1, characterized in that: Includes the second warning message and the following steps: S204, if the temperature is within the warning range, obtaining second warning information; The temperature in the warehouse monitoring area is monitored by a temperature detector, and the monitored temperature is compared with the preset alarm temperature in real time. If the monitored temperature reaches the alarm interval temperature, the corresponding second warning information is obtained; S205, obtaining and issuing an alarm corresponding to the second warning information according to the alarm interval; Among them, after obtaining the second warning information, it is compared with the set alarm range. For example, the real-time temperature of the warehouse monitoring area is collected by the temperature sensor, and the real-time temperature of the warehouse monitoring area is 125°C, while the warning setting temperature is 120°C to 130°C. The system analyzes and compares the real-time temperature with the preset warning temperature range, and concludes that the real-time temperature of the warehouse monitoring area is within the preset alarm temperature range. The second warning information is automatically generated, and the alarm is used to indicate that the temperature is too high.
4. The method according to claim 1, characterized in that: Includes the third warning information and the following steps: S301, determining whether the real-time ventilation is in the warning interval; S302: if the ventilation is higher than the warning interval, obtaining third warning information; Among them, the flammable gas concentration in the warehouse monitoring area is detected by the gas detection device, and the monitored flammable gas concentration is compared with the preset alarm concentration in real time. If the monitored flammable gas concentration reaches the flammable gas concentration in the alarm range, the corresponding three warning information will be obtained; S303, obtaining an alarm corresponding to the third warning information according to the warning interval; Among them, after obtaining the third warning information, it is compared with the set alarm range. For example, the real-time flammable gas concentration in the warehouse monitoring area is collected by the gas detection device, and the real-time temperature of the warehouse monitoring area is 6%, while the warning setting temperature is 4%. The system analyzes and compares the real-time flammable gas concentration with the preset flammable gas concentration range, and concludes that the real-time flammable gas concentration in the warehouse monitoring area is within the preset alarm temperature range. The third warning information is automatically generated, and the alarm is used to indicate that the ventilation effect of the warehouse monitoring area is poor.
5. The method according to claim 1, characterized in that: Including warning time record and the following steps: S401, recording the warning intervention duration in real time; S402, if the warning intervention duration exceeds the preset time, a signal is sent out; S403, receiving the signal, and contacting relevant personnel through a preset contact method;.
6. Intelligent fire warning system, characterized in that, It also includes an acquisition module, an analysis module, a detection module, a processing module and a recording module; The acquisition module is composed of the above-mentioned temperature sensor and gas detection device, and is used to detect the temperature and flammable gas in the warehouse monitoring area. The analysis module is a program written in a computer, and is used to analyze the detected data and compare it with the preset interval. The detection module is a program written in a computer, and is used to perform a secondary comparison between the acquired detection data and the actual environment and generate a signal. The processing module is composed of a processor, and is used to process the data that reaches the warning or alarm interval. The recording module is a memory, and is used to record the warning time.
7. An electronic device, characterized in that: include: A memory, a processor, and a computer program stored in the memory and capable of running on the processor, wherein when the processor loads and executes the computer program, the method according to claim 1 is adopted.
8. A storage medium, characterized in that: It comprises a storage hard disk, in which a computer program is stored. When the computer program is loaded and executed by a processor, the method according to claim 1 is adopted.