A method, system, and storage medium for managing a petrochemicals flow

By working in tandem with the central and station cloud platforms, the system automatically determines whether a parking lot is suitable for parking vehicles and loading/unloading goods, thus solving the problem of high manpower input in petrochemical logistics and achieving cost savings and time optimization.

CN115600881BActive Publication Date: 2026-03-27GUANGDONG LIFENG PETROCHEMICAL LOGISTICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-10
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Petrochemical logistics transportation and loading/unloading processes require a large amount of manpower, resulting in high production costs.

Method used

By analyzing order data through the central PTZ, the parking lot number is obtained, and the image scanning device of the station PTZ is used to obtain real-time information about the parking lot. Then, driving control commands are sent to automatically determine whether the parking lot can accommodate vehicles and load and unload goods, thus reducing manpower input.

Benefits of technology

This reduced manpower input, saved production costs, and saved transportation time by selecting a parking lot in an intermediate location as a temporary storage point, while also ensuring safety by promptly processing fire information.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the field of petrochemical logistics, in particular to a management method for petrochemical logistics, which comprises the following steps: in response to a request of an order client, calling order data; analyzing the order data content, obtaining a parking lot number, and sending a monitoring control instruction; based on a site pan-tilt, obtaining parking lot live information in response to an operation performed by the monitoring control instruction; and if the parking lot live information is consistent with preset information, confirming and sending a driving control instruction, so that the application has the advantage of saving production cost.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of petrochemical logistics, in particular to a management method and system for petrochemical logistics and a storage medium. BACKGROUND

[0002] The petrochemical logistics industry refers to a system that provides transportation, storage, loading and unloading, distribution, and information platform services for petrochemical products including finished oil, alcohol, aromatic hydrocarbon, ester, ether, ketone, and other liquid chemicals. It is a link connecting the supply and demand sides of petrochemical products. The development of the petrochemical industry drives the progress of the petrochemical logistics industry, and the petrochemical logistics industry provides strong support and impetus for the development of the petrochemical industry.

[0003] Petrochemical logistics is simply to send a car to the supplier to load the compound after receiving an order, then transport the compound to the destination, and complete the order process by returning the single (i.e., confirming the quantity, price, and account of the compound arriving at the destination). The above process requires a transport vehicle (a tractor head, a truck, etc.) to deliver the tank to the supplier or the destination. The customer has multiple corresponding parking lots for parking several transport vehicles, and the transfer of the tank may be performed by a forklift or a crane on the site.

[0004] However, the above-mentioned transportation and loading and unloading of compounds require personnel to interface with the actual situation in the parking lot offline to determine whether the parking lot can park the vehicle and load and unload the goods. In this process, more manpower is required, which indirectly increases the actual production cost. SUMMARY

[0005] In order to save production costs, the present application provides a management method and system for petrochemical logistics and a storage medium.

[0006] In a first aspect, the present application provides a management method for petrochemical logistics, which adopts the following technical solution:

[0007] A management method for petrochemical logistics includes the following steps:

[0008] In response to a request from an order client, order data is called;

[0009] The order data content is analyzed to obtain a parking lot number, and a monitoring control instruction is sent;

[0010] Based on the operation performed by the station pan-tilt in response to the monitoring control instruction, parking lot live information is obtained;

[0011] If the parking lot live information is consistent with the preset information, a driving control instruction is confirmed to be sent.

[0012] By adopting the technical scheme, the center PTZ responds to the request of the order client, calls order data, analyzes order data content, and then obtains the parking lot number of the destination. Meanwhile, the monitoring control instruction is sent, the site PTZ responds to the monitoring operation performed by the monitoring control instruction, the parking lot live information is obtained, when the parking lot live information is consistent with the preset information, the driving control instruction is confirmed to be sent, and the driver responds to the instruction to drive out. In the above process, the system uniformly analyzes and determines whether the parking lot can park the vehicle and load and unload the goods, reduces the labor input, and indirectly saves the production cost.

[0013] Optionally, the analyzing the order data content and obtaining the parking lot number comprises the following steps:

[0014] The order destination data is counted and analyzed.

[0015] The distance between each destination of the order is calculated, and the parking lot at the intermediate distance position is selected.

[0016] The database information is called to confirm the obtained parking lot number.

[0017] By adopting the technical scheme, since there are multiple destinations for order delivery, the parking lot at the intermediate position is selected as the temporary storage point, and when the transport vehicle in the temporary storage point arrives at different destinations in the order, the time can be saved as a whole.

[0018] Optionally, after the site PTZ responds to the operation performed by the monitoring instruction to obtain the parking lot live information, the following steps are included:

[0019] When the parking lot live information is inconsistent with the preset information, the dispatch control instruction is sent to the site PTZ;

[0020] Based on the operation performed by the site PTZ in response to the dispatch control instruction, it is confirmed that the driving control instruction is re-sent.

[0021] By adopting the technical scheme, when the parking lot live information is inconsistent with the preset, that is, there is no parking space, the center PTZ sends the dispatch instruction to the site PTZ to drive out the empty vehicle to reserve the empty parking space, so that the center PTZ can send the driving control instruction.

[0022] Optionally, the site PTZ responds to the operation performed by the monitoring instruction to obtain the parking lot live information comprises the following steps:

[0023] The site PTZ sends the scanning control instruction;

[0024] Based on the operation performed by the image scanning device in response to the scanning control instruction, it is confirmed that the parking lot live information is obtained.

[0025] By adopting the above technical solution, images of vehicles throughout the parking lot are scanned, and vehicle images within the parking lot are confirmed in order to obtain real-time information about the parking lot.

[0026] Optionally, if the real-time parking lot information matches the preset information, after confirming the sending of the driving control command, the following steps are also included:

[0027] Send detection and control commands to obtain fire safety information for the parking lot area;

[0028] If the fire safety information of the parking lot area is inconsistent with the preset information, a reversal control command will be sent.

[0029] By adopting the above technical solution, when the fire information in the parking lot area is inconsistent with the preset information, a reversal control command can be sent to transfer empty vehicles with fire information consistent with the preset information to the detected parking lot area, thereby freeing up space for transport vehicles carrying hazardous chemicals that need to enter.

[0030] Optionally, after sending the detection and control command to obtain the fire information of the parking lot area, the method further includes the following steps:

[0031] If the fire safety information for the parking lot area is inconsistent with the preset information, a maintenance control command will be sent.

[0032] By adopting the above technical solution, maintenance control commands can be sent to promptly remind personnel to perform maintenance.

[0033] Optionally, after sending the detection and control command to obtain the fire information of the parking lot area, the method further includes the following steps:

[0034] If the fire safety information in the parking lot area is inconsistent with the preset information, a record control command will be sent.

[0035] By adopting the above technical solution, maintenance information is recorded so that the data can be retrieved in a timely manner during future maintenance of fire-fighting equipment.

[0036] Secondly, this application provides a management system for petrochemical logistics, employing the following technical solution:

[0037] A management system for petrochemical logistics, comprising:

[0038] The order module is used to respond to requests from the order client and retrieve order data;

[0039] The monitoring and control instruction module is used to analyze the order data, obtain the parking lot number, and send monitoring and control instructions.

[0040] The parking lot real-time information acquisition module is used to acquire parking lot real-time information based on the operation performed by the station PTZ in response to the monitoring command.

[0041] The driving control instruction module is configured to send a driving control instruction if the parking lot live information is consistent with the preset information.

[0042] By using the above technical solutions, the order module responds to the request of the order client, calls order data, and the monitoring control instruction module analyzes the order data content to obtain the parking lot number and send a monitoring control instruction. The parking lot live information acquisition module obtains parking lot live information based on the operation performed by the monitoring control instruction, and the driving control instruction module sends a driving control instruction if the parking lot live information is consistent with the preset information.

[0043] In a third aspect, the present application provides an electronic device, which adopts the following technical solutions:

[0044] An electronic device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the steps of the management method for petrochemical logistics according to any one of the above aspects when executing the computer program.

[0045] In a fourth aspect, the present application provides a readable storage medium, which adopts the following technical solutions:

[0046] A readable storage medium includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the steps of the management method for petrochemical logistics according to any one of the above aspects when executing the computer program.

[0047] In summary, the present application has the following beneficial technical effects:

[0048] 1. The present application is analyzed by the system to determine whether the parking lot can park vehicles and load and unload goods, reducing labor input and indirectly saving production costs.

[0049] 2. Selecting the middle position of the parking lot as a temporary storage point, the transport vehicle in the temporary storage point can save time as a whole when reaching different destinations in the order.

[0050] 3. Send maintenance control instructions to timely remind personnel to perform maintenance, which can timely maintain the fire-fighting equipment. BRIEF DESCRIPTION OF DRAWINGS

[0051] Figure 1 is the flowchart of the management method for petrochemical logistics in the embodiments of the present application.

[0052] Figure 2is a flow chart of a sub-step of step S2 in the embodiment of the present application.

[0053] Figure 3 is a flow chart of a sub-step of step S3 in the embodiment of the present application.

[0054] Figure 4 is a flow chart of a sub-step of step A1 in the embodiment of the present application.

[0055] Figure 5 is a principle block diagram of a management system for petrochemical logistics in the embodiment of the present application DETAILED DESCRIPTION

[0056] The following will be described in detail in combination with the accompanying drawings Figures 1-5 The present application will be further described in detail.

[0057] The embodiment of the present application discloses a management method for petrochemical logistics, which can save production cost.

[0058] The method specifically comprises the following steps:

[0059] S1: in response to the request of the order client, calling order data.

[0060] It should be noted that after the customer signs the contract, the order is automatically generated in the order client, and at the same time, the center cloud platform calls the order data to the order client. The center cloud platform here refers to the cloud platform set up in the garage of the second party. The order contains product price, product quantity, multiple destinations and parking lot numbers at multiple destinations.

[0061] S2: analyzing the order data content, obtaining the parking lot number, and sending the monitoring control instruction.

[0062] Referring to Figure 2 , step S2 comprises the following sub-steps:

[0063] S21: counting the order destination data and analyzing.

[0064] The content to be counted is to filter out the geographical position recorded in each destination in the order, combine the map and navigation system, calculate the distance between the starting point and multiple destinations, divide the area where several destinations are relatively close into a delivery area, so as to obtain multiple delivery areas. At the same time, the corresponding batch of vehicle fleet is arranged for each delivery area.

[0065] S22: calculating the distance between each destination of the order, and selecting the parking lot with the intermediate distance.

[0066] Correspondingly, the distance between each destination of the order in the corresponding delivery area is calculated, and the parking lot at the middle position is selected as the temporary storage point. When the transport vehicles in the temporary storage point arrive at different destinations in the order, the overall time can be saved.

[0067] S23: Call database information to confirm the acquisition of the parking lot number.

[0068] It should be noted that the central cloud platform records the number of each parking lot to facilitate the management of each parking lot.

[0069] Review Figure 1 A method for managing petrochemical logistics also includes the following steps:

[0070] S3: Based on the operation performed by the site cloud platform in response to the monitoring instruction, acquire the parking lot live information.

[0071] Referring to Figure 3 For step S3, the following sub-steps are included:

[0072] S31: The site cloud platform sends a scanning control instruction.

[0073] S32: Based on the operation performed by the image scanning device in response to the scanning control instruction, confirm the acquisition of the parking lot live information.

[0074] It should be noted that the site cloud platform corresponds to the central cloud platform described above, and the destination of Party B corresponds to Party A, and the sub-cloud platform is established, and the central cloud platform is uniformly managed.

[0075] Meanwhile, the image scanning device is arranged in each area of the parking lot, and multiple image scanning devices are arranged in each area to correspond to each viewing angle of the parking lot. The image scanning device for the overhead viewing angle of the parking lot can confirm the layout of the vehicle and clearly show the vacancy of the parking space. In addition, the image scanning device can also acquire video information in the parking lot, thereby playing a monitoring role.

[0076] Review Figure 1 A method for managing petrochemical logistics also includes the following steps:

[0077] S4: If the parking lot live information is consistent with the preset information, confirm the sending of the driving control instruction.

[0078] It should be noted that the preset information is that the area in the parking lot has enough parking spaces for the transport vehicles of the vehicle fleet to stay and load and unload. When this information is clear, the central cloud platform can confirm the sending of the vehicle dispatch instruction to notify the driver to dispatch the vehicle. In the above process, the system of the central cloud platform and the site cloud platform uniformly analyzes and determines whether the parking lot can park the vehicle and load and unload the goods, reduces the labor input, and indirectly saves the production cost.

[0079] S5: when the parking lot live information is inconsistent with the preset information, send a dispatch control instruction to the site PTZ.

[0080] S6: based on the operation performed by the site PTZ in response to the dispatch control instruction, confirm the re-sending of the driving control instruction.

[0081] Here, when the parking lot has insufficient remaining parking spaces, the center PTZ sends a dispatch control instruction to the site PTZ, which in turn sends a request, which is presented to the corresponding empty vehicle in the form of a language prompt, a prompt sound, or text information, etc. The empty vehicle here refers to a transport vehicle that has just completed a loading or unloading task or is idle and occupies a parking space in the parking lot.

[0082] The above prompt enables the driver in the vehicle to temporarily dispatch the transport vehicle out of the parking lot to a nearby parking lot or any temporary storage location, thereby freeing up space for a transport vehicle carrying dangerous chemicals that needs to enter, maximizing the utilization of the parking lot.

[0083] On the other hand, in addition to ensuring convenient order delivery, since the petrochemical logistics transports dangerous chemicals, it is necessary to confirm the fire safety status in the parking lot. Therefore, the present application also employs the following scheme.

[0084] Reference Figure 4 Specifically, after step S5, the following steps are also included, and the following steps can be performed before or during the vehicle departure.

[0085] A1: send a detection control instruction to obtain the parking area fire information.

[0086] After step A1, the following sub-steps are included:

[0087] A11: if the parking area fire information is inconsistent with the preset, send a turning control instruction.

[0088] It should be noted that the detection control instruction is sent to the fire pipeline system, which corresponds to the fire pipeline system of the parking area providing the parking space. After receiving the instruction, the water pump is powered, and the drain valve is opened by the electric valve to pump the water from the reservoir, flow through the pipeline and flow back to the reservoir through the drain. In this process, the flow rate of each node of the pipeline is measured by the metering valve to obtain the water flow information and the parking area fire information.

[0089] In addition, when the parking area fire information is inconsistent with the preset, i.e., the water flow information is incorrect, it may be affected by reasons such as pipeline leakage or pipeline blockage, thereby affecting the fire water supply in the parking area. Correspondingly, when a transport vehicle carrying dangerous chemicals stays in this area, there is also a safety hazard.

[0090] Therefore, by reversing the control instruction, as with the above dispatch control instruction, the empty vehicle in the yard area corresponding to the fire pipeline system which has not detected safety hazards is transferred to the above area. The transport vehicle of the empty vehicle has low safety hazards, and if the fire pipeline system is only pipeline leakage or pipeline blockage, it can also be handled in an emergency. Correspondingly, space is created for the transport vehicle with dangerous chemicals that needs to enter, thereby generating an emergency plan.

[0091] After step A1, the following sub-steps are further included:

[0092] A12: If the yard area fire information is inconsistent with the preset, send a maintenance control instruction.

[0093] A13: If the yard area fire information is inconsistent with the preset, send a record control instruction.

[0094] Correspondingly, the maintenance control instruction is sent to timely remind personnel to perform maintenance to timely repair the fire pipeline system. At the same time of maintenance, the maintenance information is recorded. Since the consumer pipeline layout is dense and the fire pipeline layout area is relatively crowded, when the next fault occurs, the relevant positions of the previous fault can be investigated or maintained by the maintenance record, or the above positions can be focused on during maintenance.

[0095] In the embodiment 1 of the present application, the implementation principle of the management method for petrochemical logistics is that the center holder responds to the request of the order client, calls order data, analyzes the order data content, and then obtains the yard number of the destination. At the same time, a monitoring control instruction is sent, and the site holder responds to the monitoring operation performed by the monitoring control instruction to obtain yard live information. If the yard live information is consistent with the preset information, a driving control instruction is sent, and the driver responds to the instruction to drive. In the above process, the system uniformly analyzes and determines whether the yard can park the vehicle and load and unload the goods, reducing the labor input and indirectly saving the production cost.

[0096] It should be understood that the size of the serial number of each step in the above embodiment does not mean the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiment of the present application.

[0097] The embodiment also provides a management system for petrochemical logistics, which is referred to as 5. The management system for petrochemical logistics includes an order module, a monitoring control instruction module, a yard live information acquisition module, and a driving control instruction module. The functions of each functional module are described in detail as follows:

[0098] The order module is used to respond to the request of the order client and call order data.

[0099] The monitoring control instruction module is configured to analyze order data content, acquire a parking lot number, and send a monitoring control instruction.

[0100] The parking lot live information acquisition module is configured to acquire parking lot live information based on an operation performed by a site pan-tilt in response to the monitoring control instruction.

[0101] The driving control instruction module is configured to send a driving control instruction if the parking lot live information is consistent with preset information.

[0102] Correspondingly, the order module is configured to call order data in response to a request from an order client, the monitoring control instruction module is configured to analyze order data content, acquire a parking lot number, and send a monitoring control instruction, the parking lot live information acquisition module is configured to acquire parking lot live information based on an operation performed by a site pan-tilt in response to the monitoring control instruction, and the driving control instruction module is configured to send a driving control instruction if the parking lot live information is consistent with preset information. The above modules cooperate with each other to uniformly analyze and determine whether a parking lot can park a vehicle and load or unload goods, thereby reducing labor input and indirectly saving production costs.

[0103] Specific limitations of the management system for petrochemical logistics can be seen from the limitations of the management method for petrochemical logistics in the foregoing, which will not be repeated here. Each module in the management system for petrochemical logistics can be realized by software, hardware, or a combination thereof, in whole or in part. Each module can be embedded in or independent of a processor in an electronic device in a hardware form, or stored in a memory in an electronic device in a software form, so as to be called and executed by the processor to perform the corresponding operation of each module.

[0104] The embodiment also provides an electronic device including a processor, a memory, a network interface, and a database connected through a system bus. The processor of the electronic device is configured to provide computing and control capabilities. The memory of the electronic device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program, and a database. The internal memory provides an environment for running the operating system and the computer program in the non-volatile storage medium. The network interface of the electronic device is configured to communicate with an external terminal through a network connection. The computer program is executed by the processor to implement a management method for petrochemical logistics:

[0105] S1: calling order data in response to a request from an order client.

[0106] S2: analyzing order data content, acquiring a parking lot number, and sending a monitoring control instruction.

[0107] S3: acquiring parking lot live information based on an operation performed by a site pan-tilt in response to the monitoring control instruction.

[0108] S4: If the parking lot live information is consistent with the preset information, confirm to send the driving control instruction.

[0109] S5: When the parking lot live information is inconsistent with the preset information, confirm to send the dispatch control instruction to the site PTZ.

[0110] S6: Based on the operation performed by the site PTZ in response to the dispatch control instruction, confirm to resend the driving control instruction.

[0111] The computer program is executed by the processor to implement any one of the above method embodiments of the management method for petrochemical logistics.

[0112] The embodiment also provides a computer readable storage medium, and the computer program is stored on the computer readable storage medium. The computer program is executed by the processor to implement the following steps:

[0113] S1: In response to the request of the order client, call the order data.

[0114] S2: Analyze the order data content, obtain the parking lot number, and send the monitoring control instruction.

[0115] S3: Based on the operation performed by the site PTZ in response to the monitoring control instruction, obtain the parking lot live information.

[0116] S4: If the parking lot live information is consistent with the preset information, confirm to send the driving control instruction.

[0117] S5: When the parking lot live information is inconsistent with the preset information, confirm to send the dispatch control instruction to the site PTZ.

[0118] S6: Based on the operation performed by the site PTZ in response to the dispatch control instruction, confirm to resend the driving control instruction.

[0119] The computer program is executed by the processor to implement any one of the above method embodiments of the management method for petrochemical logistics.

[0120] Those skilled in the art can understand that all or part of the processes in the above-mentioned embodiment methods can be completed by instructing the relevant hardware through a computer program. The computer program can be stored in a non-volatile computer readable storage medium, and when executed, can include the processes of the above-mentioned embodiments of each method. Any reference to memory, storage, database or other medium used in each embodiment provided by the present application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM) or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. As an illustration but not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link (Synchlink) DRAM (SLDRAM), memory bus (Rambus) direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0121] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the above-mentioned division of each functional unit and module is exemplified. In actual application, the above-mentioned functions can be completed by different functional units and modules according to needs, that is, the internal structure of the system is divided into different functional units or modules to complete all or part of the above-described functions.

[0122] The above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be included in the protection scope of the present application.

Claims

1. A method of managing a petrochemical stream, characterized in that, It comprises the following steps: In response to the request of the order client, the order data is called; The order data content is analyzed to obtain the parking lot number and send the monitoring control instruction; the analysis of the order data content to obtain the parking lot number comprises the following steps: statistics of order destination data and analysis; calculation of the distance between each destination of the order, selection of the intermediate distance position parking lot; calling of database information to confirm the acquisition of the parking lot number; Based on the operation of the site pan-tilt in response to the monitoring instruction, the parking lot live information is obtained; If the parking lot live information is consistent with the preset information, it is confirmed to send the driving control instruction; when the parking lot live information is inconsistent with the preset information, it is confirmed to send the dispatch control instruction to the site pan-tilt; based on the operation of the site pan-tilt in response to the dispatch control instruction, it is confirmed to resend the driving control instruction; after the dispatch control instruction is sent to the site pan-tilt when the parking lot live information is inconsistent with the preset information, the following steps are further included: sending a detection control instruction to obtain the parking lot area fire information; if the parking lot area fire information is inconsistent with the preset, a turning control instruction is sent.

2. A method of managing petrochemical streams according to claim 1, characterized in that, The operation of the site pan-tilt in response to the monitoring instruction to obtain the parking lot live information comprises the following steps: The site pan-tilt sends a scanning control instruction; Based on the operation of the image scanning device in response to the scanning control instruction, the parking lot live information is confirmed to be obtained.

3. A method of managing petrochemicals streams according to claim 1, characterized in that, After the detection control instruction is sent to obtain the parking lot area fire information, the following steps are further included: If the parking lot area fire information is inconsistent with the preset, a maintenance control instruction is sent.

4. A method of managing petrochemicals streams according to claim 1, characterized in that, After the detection control instruction is sent to obtain the parking lot area fire information, the following steps are further included: If the parking lot area fire information is inconsistent with the preset, a record control instruction is sent.

5. A management system for a petrochemical stream, characterized by, It comprises: An order module for calling order data in response to the request of an order client; A monitoring control instruction module for analyzing the order data content, obtaining the parking lot number, and sending the monitoring control instruction; the analysis of the order data content to obtain the parking lot number comprises the following steps: statistics of order destination data and analysis; calculation of the distance between each destination of the order, selection of the intermediate distance position parking lot; calling of database information to confirm the acquisition of the parking lot number; A parking lot live information acquisition module for obtaining the parking lot live information based on the operation of the site pan-tilt in response to the monitoring instruction; A driving control instruction module for confirming to send the driving control instruction if the parking lot live information is consistent with the preset information; confirming to send the dispatch control instruction to the site pan-tilt when the parking lot live information is inconsistent with the preset information; confirming to resend the driving control instruction based on the operation of the site pan-tilt in response to the dispatch control instruction; after the dispatch control instruction is sent to the site pan-tilt when the parking lot live information is inconsistent with the preset information, the following steps are further included: sending a detection control instruction to obtain the parking lot area fire information; if the parking lot area fire information is inconsistent with the preset, a turning control instruction is sent.

6. An electronic device, comprising: A computer program product comprising a storage means, a processor and a computer program stored in said storage means and loadable in said processor, said processor realizing the steps of the method for managing a petrochemical flow as claimed in any of claims 1 to 4 when said computer program is executed.

7. A readable storage medium, characterized by, The computer program product comprises a storage means, a processor and a computer program stored in said storage means and loadable in said processor, said processor realizing the steps of the method for managing a petrochemical flow as claimed in any of claims 1 to 4 when said computer program is executed.

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