Petrochemical enterprise device benefit measuring and calculating method and system, electronic equipment and medium

By using electronic devices to automatically analyze the production efficiency of petrochemical enterprises' production facilities, the problem of insufficient intelligence in existing efficiency analysis technologies has been solved, thereby optimizing production efficiency, reducing costs, and improving the overall efficiency of enterprises.

CN121936995APending Publication Date: 2026-04-28TIANJIN KEDIAN PETROCHEMICAL TECH DEV CO LTD
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Patent Information

Application Number
CN202610106054.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-01-27
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

To improve the production efficiency of petrochemical enterprises' production facilities, existing technologies have failed to effectively automate data analysis and optimization strategies, resulting in low efficiency and high costs.

Method used

Production data is acquired through electronic devices, production efficiency is calculated, the efficiency ratio of similar devices is analyzed and optimization strategies are output, intermediate losses and recycling are considered, the status of production equipment is judged to adjust costs, and further analysis and optimization are carried out using marginal benefit models.

Benefits of technology

It enables intelligent analysis and optimization of production equipment efficiency, reduces production costs, improves production efficiency, and enhances the accuracy and efficiency of data calculation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of data processing, in particular to a petrochemical enterprise device benefit measuring and calculating method and system, electronic equipment and a medium, and the method comprises the steps: obtaining production data based on a production device; the production data comprises fixed cost and product output; calculating production benefits corresponding to the production device based on the production data; extracting the production benefits corresponding to the production devices of the same type, and taking the extracted production benefits as first production benefits; performing analysis and comparison based on the first production benefit to obtain an analysis result; and outputting an optimization strategy based on the analysis result. The production device has the effect that the production benefit of the production device can be improved.
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Description

Technical Field

[0001] This application relates to the field of data processing, and in particular to methods, systems, electronic equipment and media for calculating the benefits of petrochemical plant facilities. Background Technology

[0002] The issue of efficiency is essentially about the ratio of input to output. Higher quality and greater quantity of economic results obtained per unit of productivity output result in higher productivity efficiency, and vice versa. The efficiency of a manufacturing enterprise originates from each production unit. By decomposing and implementing enterprise efficiency at the level of specific production units, and improving the efficiency of each unit, the overall productivity efficiency of the enterprise can be improved. Therefore, how to improve the productivity efficiency of production units is a pressing issue that needs to be addressed. Summary of the Invention

[0003] In order to improve the production efficiency of production facilities, this application provides a method, system, electronic equipment and medium for calculating the efficiency of petrochemical enterprise facilities.

[0004] Firstly, the method for calculating the benefits of petrochemical plant facilities provided in this application adopts the following technical solution: A method for calculating the benefits of petrochemical plant facilities includes: Acquire production data based on production facilities; The production data includes fixed costs and product output; Calculate the production efficiency of the corresponding production unit based on the production data; Extract the production benefits corresponding to the production equipment of the same type, and use the extracted production benefits as the first production benefit; The analysis results are obtained by comparing and analyzing the first production efficiency. An optimization strategy is output based on the analysis results.

[0005] By adopting the above technical solution, electronic equipment acquires production data based on the production facilities, including fixed costs and product output. The electronic equipment calculates the production efficiency of the corresponding production facility based on this data, then extracts the production efficiency corresponding to the same type of production facility, and uses this extracted efficiency as the primary production efficiency. The electronic equipment then analyzes and compares these primary efficiency results to obtain an optimization strategy. During the analysis and comparison, only the same type of facility is analyzed and compared, ensuring the rationality of the optimization. Furthermore, the electronic equipment can automatically acquire and analyze data, making it more efficient and intelligent compared to manual statistical calculations. Reasonable optimization can also reduce production costs and improve production efficiency.

[0006] Optionally, before calculating the production efficiency corresponding to the production unit based on the production data, the method further includes: Intermediate losses are obtained based on the aforementioned production equipment; Determine whether intermediate output exists based on the aforementioned intermediate losses; If the intermediate output exists, determine whether there is a recycling threshold. If a recycling threshold exists, determine whether the intermediate output is less than the recycling threshold. If the intermediate output is less than the recycling threshold, the corresponding increase in product output is calculated based on the intermediate output. The product output is adjusted based on the increase in the product quantity.

[0007] By adopting the above technical solution, before the electronic equipment calculates the production efficiency of the corresponding production unit based on production data, the electronic equipment obtains intermediate losses based on the production unit and determines whether intermediate output exists based on these losses. If intermediate output exists, it determines whether a recycling threshold exists, i.e., whether there is a recyclable portion of the losses generated by the production unit. If so, it determines whether the intermediate output is less than the recycling threshold, i.e., whether all intermediate output can be recycled. If the intermediate output is less than the recycling threshold, it calculates the corresponding increase in product output based on the intermediate output. Since the recycled portion can also produce products, this portion needs to be added; that is, the electronic equipment corrects the product output based on the increase in product output. By recycling, product output is increased, which correspondingly reduces production costs and improves production efficiency. Correcting the data based on this also makes the final calculation result more accurate.

[0008] Optionally, when the intermediate output is greater than the recycling threshold, the method further includes: The production device corresponding to the intermediate output being greater than the recycling threshold is identified, and the identified production device is used as the first production device. The operating status is obtained based on the first production device; Based on the described working status, determine whether the first production unit is undergoing temporary commissioning; If the first production unit is undergoing temporary commissioning, then this intermediate output will be ignored; If the first production unit is not a temporary commissioning unit, then calculate the difference between the intermediate output and the recovery threshold. Calculate the first cost increase based on the difference; The fixed cost is adjusted based on the first increase in cost.

[0009] By adopting the above technical solution, when the intermediate output exceeds the recycling threshold, meaning that not all intermediate output can be recycled, the electronic device identifies the production unit corresponding to the intermediate output exceeding the recycling threshold and designates it as the first production unit. Based on the first production unit, the electronic device obtains its operating status and determines whether it is undergoing temporary testing. Generally, the intermediate output is not very high, making recycling impossible; therefore, the operating status of the first production unit is assessed. If the first production unit is undergoing temporary testing, the electronic device ignores this intermediate output, as testing the production unit would result in some waste, and testing is necessary; therefore, this situation is ignored. If the first production unit is not undergoing temporary testing, the electronic device calculates the difference between the intermediate output and the recycling threshold, and calculates the first cost increase based on this difference. Since some intermediate output cannot be recycled, leading to cost increases, the fixed cost is adjusted based on the first cost increase.

[0010] Optionally, before adjusting the fixed cost based on the first cost increase, the method further includes: Obtain historical data from the first production unit; Determine whether there is a first historical data point in the historical data where the intermediate output is greater than the recovery amount threshold; If no first historical data exists, then determine whether the intermediate output in the historical data gradually increases; If the intermediate output in the historical data gradually increases, then output a production equipment aging warning message; If the intermediate output in the historical data does not gradually increase, then the step of correcting the fixed cost based on the first cost increase is not performed and maintenance information is output.

[0011] By adopting the above technical solution, before adjusting the fixed cost based on the first cost increase, the electronic device acquires historical data of the first production unit. It then determines whether there is any historical data showing intermediate output exceeding the recovery threshold, i.e., whether the first production unit has ever experienced excessive intermediate output. If not, it determines whether the intermediate output in the historical data is gradually increasing. If the intermediate output in the historical data is gradually increasing, the electronic device outputs a production unit aging warning message. This indicates that the production unit's aging has led to increasingly larger intermediate output, exceeding the recovery threshold. If the intermediate output in the historical data is not gradually increasing, the electronic device does not execute the step of adjusting the fixed cost based on the first cost increase, and simultaneously outputs maintenance information.

[0012] Optionally, the step of analyzing and comparing based on the first production benefit to obtain the analysis results includes: Obtain the production difficulty coefficient of the production device; Calculate the benefit coefficient, which is equal to one minus the production difficulty coefficient; Calculate the production efficiency ratio; The production efficiency ratio is equal to the first production efficiency divided by the efficiency coefficient; Compare all the aforementioned production efficiency ratios; Obtain the largest production efficiency ratio and use the largest production efficiency ratio as the first production efficiency ratio; Based on the first production efficiency ratio, obtain the corresponding second production device; The marginal benefit model was used to analyze the second production unit.

[0013] By adopting the above technical solution, the electronic equipment performs analysis and comparison based on the first production benefit. Specifically, the electronic equipment obtains the production difficulty coefficient of the production device, calculates the benefit coefficient, the benefit coefficient is equal to one minus the production difficulty coefficient, calculates the production benefit ratio, the production benefit ratio is equal to the first production benefit divided by the benefit coefficient, then compares all production benefit ratios, obtains the largest production benefit ratio and takes the largest production benefit ratio as the first production benefit ratio, obtains the corresponding second production device based on the first production benefit ratio, and then uses the marginal benefit model to analyze the second production device.

[0014] Optionally, after comparing all of the aforementioned production efficiency ratios, the method further includes: Obtain the minimum production efficiency ratio and use the minimum production efficiency ratio as the second production efficiency ratio; Based on the second production efficiency ratio, obtain the corresponding third production unit; Obtain multiple processing technology solutions; The third production unit simulates and implements the processing technology scheme one by one. Calculate and obtain the third production efficiency ratio; Obtain the highest third production efficiency ratio and use the highest third production efficiency ratio as the fourth production efficiency ratio; Determine whether the fourth production efficiency ratio is greater than the second production efficiency ratio; If the fourth production efficiency ratio is greater than the second production efficiency ratio, then the corresponding processing technology scheme shall be implemented.

[0015] By adopting the above technical solution, after the electronic device compares all production efficiency ratios, the electronic device obtains the minimum production efficiency ratio and uses it as the second production efficiency ratio. Based on the second production efficiency ratio, the electronic device obtains the corresponding third production device. The electronic device obtains multiple processing technology schemes and simulates and implements each processing technology scheme based on the third production device, calculates the third production efficiency ratio, obtains the maximum third production efficiency ratio and uses it as the fourth production efficiency ratio, and determines whether the fourth production efficiency ratio is greater than the second production efficiency ratio. If the fourth production efficiency ratio is greater than the second production efficiency ratio, the corresponding processing technology scheme is implemented.

[0016] Optionally, before implementing the corresponding processing technology, the method further includes: Obtain the cost of the renovation; The increase in production efficiency is obtained based on the corresponding processing technology scheme; The cost recovery period is calculated based on the aforementioned renovation costs and the aforementioned increase in production efficiency. Determine whether the cost recovery period is greater than a preset threshold; If the cost recovery period is greater than the preset threshold, then the steps of the corresponding processing scheme will not be executed. By adopting the above technical solution, before the processing technology scheme corresponding to the electronic device in real time, the electronic device obtains the modification cost, obtains the increase in production efficiency based on the corresponding processing technology scheme, and then calculates the cost recovery period based on the modification cost and the increase in production efficiency. It then determines whether the cost recovery period is greater than a preset threshold. If the cost recovery period is greater than the preset threshold, the step of implementing the corresponding processing technology scheme is not executed.

[0017] Secondly, the petrochemical enterprise equipment benefit calculation system provided in this application adopts the following technical solution: A system for calculating the benefits of petrochemical plant facilities, comprising: The first acquisition module is used to acquire production data based on the production equipment; the production data includes fixed costs and product output. The first calculation module is used to calculate the production efficiency of the corresponding production device based on the production data. The first extraction module is used to extract the production benefits corresponding to the same type of production device, and to use the extracted production benefits as the first production benefits; The first analysis module is used to perform analysis and comparison based on the first production benefit to obtain analysis results; The first output module is used to output an optimization strategy based on the analysis results. Thirdly, the electronic device provided in this application adopts the following technical solution: An electronic device includes a processor coupled to a memory; the processor is configured to execute a computer program stored in the memory such that the electronic device performs the method as described in the first aspect.

[0018] Fourthly, the computer-readable storage medium provided in this application adopts the following technical solution: A computer-readable storage medium includes a computer program or instructions that, when executed on a computer, cause the computer to perform the method as described in the first aspect. Attached Figure Description

[0019] Figure 1 This is a flowchart of the method for calculating the benefits of petrochemical plant facilities according to an embodiment of this application.

[0020] Figure 2 This is a block diagram of the petrochemical enterprise equipment benefit calculation system according to an embodiment of this application.

[0021] Figure 3 This is a block diagram of an electronic device according to an embodiment of this application. Detailed Implementation

[0022] This specific embodiment is merely an explanation of this application and is not intended to limit it. Users skilled in the art can make modifications to this embodiment without contributing any inventive step after reading this specification, but such modifications are protected by patent law as long as they fall within the scope of the claims of this application.

[0023] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by users of ordinary skills in the art without creative effort are within the scope of protection of this application.

[0024] Furthermore, the term "and / or" in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this article, unless otherwise specified, generally indicates that the preceding and following related objects have an "or" relationship.

[0025] This application discloses a method for calculating the benefits of petrochemical plant facilities. This method can be executed by an electronic device. The electronic device can be a server or a terminal device. The server can be a standalone physical server, a server cluster or distributed system composed of multiple physical servers, or a cloud server providing cloud computing services. The terminal device can be a smartphone, tablet, desktop computer, etc., but is not limited to these.

[0026] This application discloses a method for calculating the benefits of petrochemical plant facilities. (Refer to...) Figure 1 The main processes included in a method for calculating the benefits of a petrochemical plant are described below (S100~S500): Step S100: Obtain production data based on the production equipment; the production data includes fixed costs and product output. Step S200: Calculate the production efficiency of the corresponding production unit based on the production data; Step S300: Extract the production benefits corresponding to the same type of production equipment, and use the extracted production benefits as the first production benefit; Step S400: Analyze and compare based on the first production benefit to obtain the analysis results; Step S500: Output optimization strategies based on the analysis results.

[0027] Electronic devices acquire production data based on production equipment used for production. Production data includes, but is not limited to, fixed costs and product output. Electronic devices calculate the production efficiency of the corresponding production equipment based on the production data. Then, production equipment is classified. Electronic devices extract the production efficiency corresponding to the same type of production equipment and take the extracted production efficiency as the first production efficiency. That is, electronic devices extract data of multiple first production efficiencies. Electronic devices analyze and compare the first production efficiencies to obtain analysis results. Then, electronic devices output optimization strategies based on the analysis results.

[0028] As an optional implementation of this application, before calculating the production efficiency of the corresponding production device based on production data, the method further includes: obtaining intermediate losses based on the production device; determining whether there is intermediate output based on the intermediate losses; if there is intermediate output, determining whether there is a recovery threshold; if there is a recovery threshold, determining whether the intermediate output is less than the recovery threshold; if the intermediate output is less than the recovery threshold, calculating the corresponding product increase based on the intermediate output; and correcting the product output based on the product increase.

[0029] Before calculating the production efficiency of the corresponding production unit based on production data, the electronic equipment obtains the intermediate losses of the production unit and determines whether there is intermediate output based on these losses. Specifically, it determines whether the materials lost in the intermediate losses can be recycled and reused. If intermediate output exists, the electronic equipment checks if a recycling threshold exists, which can be set by the operator. If a recycling threshold exists, the electronic equipment checks if the intermediate output is less than the threshold. If so, it indicates that all intermediate output can be recycled. Therefore, when the intermediate output is less than the threshold, the electronic equipment calculates the corresponding increase in product output based on the intermediate output. By recycling, costs are reduced, resulting in an equivalent increase in product output. The product output is then adjusted based on this increase in product output.

[0030] As an optional implementation of this application, when the intermediate output is greater than the recovery threshold, the method further includes: obtaining the production device corresponding to the intermediate output being greater than the recovery threshold, and using the obtained production device as the first production device; obtaining the working status based on the first production device; determining whether the first production device is undergoing temporary debugging based on the working status; if the first production device is undergoing temporary debugging, then ignoring this intermediate output; if the first production device is not undergoing temporary debugging, then calculating the difference between the intermediate output and the recovery threshold; calculating the first cost increase based on the difference; and correcting the fixed cost based on the first cost increase.

[0031] When intermediate output exceeds the recovery threshold, the electronic equipment identifies the production unit corresponding to this threshold and designates it as the first production unit. Based on this first production unit, the electronic equipment assesses its operating status and determines whether it is undergoing temporary adjustments. If it is, the electronic equipment ignores the current intermediate output, as temporary adjustments lead to waste and thus increase the intermediate output. If the first production unit is indeed undergoing temporary adjustments, the electronic equipment calculates the difference between the intermediate output and the recovery threshold. Based on this difference, it calculates the first cost increase and then adjusts the fixed cost accordingly to ensure greater accuracy and a more realistic final optimization.

[0032] As an optional implementation of this application, before correcting the fixed cost based on the first cost increase, the method further includes: acquiring historical data of the first production device; determining whether there is first historical data in the historical data where the intermediate output is greater than the recovery threshold; if there is no first historical data, determining whether the intermediate output in the historical data is gradually increasing; if the intermediate output in the historical data is gradually increasing, outputting a production device aging warning message; if the intermediate output in the historical data is not gradually increasing, not performing the step of correcting the fixed cost based on the first cost increase and outputting maintenance information.

[0033] Before the electronic device adjusts the fixed cost based on the first cost increase, it acquires historical data from the first production unit. It determines if any historical data contains intermediate output exceeding the recovery threshold. If no such data exists, the electronic device checks if the intermediate output in the historical data is gradually increasing. If so, it determines that the production unit's aging or lifespan issues are causing the increasing intermediate output, and outputs an aging warning message. If the intermediate output in the historical data is not gradually increasing, the electronic device does not perform the step of adjusting the fixed cost based on the first cost increase and outputs a maintenance request. It determines that the production equipment may be malfunctioning and outputs maintenance information.

[0034] As an optional implementation of this application, the analysis and comparison based on the first production benefit to obtain the analysis result includes: obtaining the production difficulty coefficient of the production device; calculating the benefit coefficient, the benefit coefficient being equal to one minus the production difficulty coefficient to calculate the production benefit ratio; the production benefit ratio being equal to the first production benefit divided by the benefit coefficient; comparing all production benefit ratios; obtaining the largest production benefit ratio and using the largest production benefit ratio as the first production benefit ratio; obtaining the corresponding second production device based on the first production benefit ratio; and analyzing the second production device using a marginal benefit model.

[0035] The analysis is based on a comparison of the first production efficiency to obtain the results. Specifically, the electronic equipment acquires the production difficulty coefficient of the production unit, then calculates the efficiency coefficient, which is equal to one minus the production difficulty coefficient. The production efficiency ratio is then calculated by dividing the first production efficiency by the efficiency coefficient. All production efficiencies are then compared to obtain the highest production efficiency ratio, which is taken as the first production efficiency ratio. Based on this first production efficiency ratio, the electronic equipment acquires the corresponding second production unit, and then analyzes the second production unit using a marginal benefit model. Because the production efficiency ratio of the second production unit is already very high, its optimization is difficult. Therefore, a marginal benefit model is used to analyze whether the benefits gained from optimizing the second production unit can offset the optimization costs.

[0036] As an optional implementation of this application, after comparing all production efficiency ratios, the method further includes: obtaining the minimum production efficiency ratio and using it as the second production efficiency ratio; obtaining the corresponding third production device based on the second production efficiency ratio; obtaining multiple processing technology schemes; simulating and implementing each processing technology scheme in the third production device; calculating and obtaining the third production efficiency ratio; obtaining the maximum third production efficiency ratio and using it as the fourth production efficiency ratio; determining whether the fourth production efficiency ratio is greater than the second production efficiency ratio; and if the fourth production efficiency ratio is greater than the second production efficiency ratio, implementing the corresponding processing technology scheme.

[0037] After comparing all production efficiency ratios, the electronic device obtains the minimum production efficiency ratio and uses it as the second production efficiency ratio. Based on the second production efficiency ratio, the electronic device obtains the corresponding third production device, then obtains multiple processing technology schemes, simulates and implements each processing technology scheme one by one based on the third production device, and then calculates the third production efficiency ratio corresponding to each processing technology scheme. The largest third production efficiency ratio is obtained and used as the fourth production efficiency ratio. The electronic device determines whether the fourth production efficiency ratio is greater than the second production efficiency ratio, that is, whether the production efficiency ratio before the change can be exceeded after changing the processing technology. If the fourth production efficiency ratio is greater than the second production efficiency ratio, the corresponding processing technology scheme is implemented, thereby improving the production efficiency ratio.

[0038] As an optional implementation of this application, before implementing the corresponding processing technology scheme, the method further includes: obtaining the modification cost; obtaining the increase in production efficiency based on the corresponding processing technology scheme; calculating the cost recovery period based on the modification cost and the increase in production efficiency; determining whether the cost recovery period is greater than a preset threshold; if the cost recovery period is greater than the preset threshold, then the step of implementing the corresponding processing technology scheme is not executed.

[0039] Before implementing the corresponding processing technology plan, the modification cost of the electronic equipment is obtained, and the increase in production efficiency is calculated based on the corresponding processing technology plan. Then, the cost payback period is calculated based on the modification cost and the increase in production efficiency. It is then determined whether the cost payback period is greater than a preset threshold. If the cost payback period is greater than the preset threshold, the step of implementing the corresponding processing technology plan will not be executed. Although production efficiency is increased compared to before the modification, the investment cost may be large, which may put some pressure on the company's operations. Therefore, if the payback period is greater than the preset threshold, it cannot be executed.

[0040] Figure 2 A structural block diagram of a petrochemical plant equipment benefit calculation system 600 provided in this application embodiment is shown below. Figure 2 As shown, the petrochemical plant's facility benefit calculation system 600 includes: The first acquisition module 601 is used to acquire production data based on the production equipment; the production data includes fixed costs and product output. The first calculation module 602 is used to calculate the production efficiency of the corresponding production unit based on production data; The first extraction module 603 is used to extract the production benefits corresponding to the same type of production equipment and to use the extracted production benefits as the first production benefits. The first analysis module 604 is used to perform comparative analysis based on the first production benefit to obtain analysis results; The first output module 605 is used to output optimization strategies based on the analysis results.

[0041] In this optional embodiment, the petrochemical plant benefit calculation system 600 further includes: The first acquisition submodule is used to acquire intermediate losses based on the production device before calculating the production benefits of the corresponding production device based on the production data. The first judgment submodule is used to determine whether there is intermediate output based on intermediate loss; if there is intermediate output, it is determined whether there is a recycling threshold; if there is a recycling threshold, it is determined whether the intermediate output is less than the recycling threshold; if the intermediate output is less than the recycling threshold, the corresponding increase in product is calculated based on the intermediate output. The first correction submodule is used to correct product output based on the increase in product output.

[0042] In this optional embodiment, the petrochemical plant benefit calculation system 600 further includes: The second acquisition submodule is used to acquire the production device corresponding to the intermediate output exceeding the recycling threshold when the intermediate output exceeds the recycling threshold, and to use the acquired production device as the first production device. The third acquisition submodule is used to acquire the working status based on the first production unit; The second judgment submodule is used to determine whether the first production unit is undergoing temporary commissioning based on its working status; if the first production unit is undergoing temporary commissioning, the intermediate output will be ignored; if the first production unit is not undergoing temporary commissioning, the difference between the intermediate output and the recovery threshold will be calculated. The first calculation submodule is used to calculate the first cost increase based on the difference. The second correction submodule is used to correct the fixed cost based on the first cost increase.

[0043] In this optional embodiment, the petrochemical plant benefit calculation system 600 further includes: The fourth acquisition submodule is used to acquire historical data of the first production unit before adjusting the fixed cost based on the first cost increase. The third judgment submodule is used to determine whether there is a first historical data in the historical data where the intermediate output is greater than the recovery amount threshold; if there is no first historical data, it is determined whether the intermediate output in the historical data is gradually increasing; if the intermediate output in the historical data is gradually increasing, the production equipment aging prompt information is output; if the intermediate output in the historical data is not gradually increasing, the step of correcting the fixed cost based on the first cost increase is not executed and maintenance information is output.

[0044] Specifically, the first analysis module 604 also includes: The fifth submodule obtains the production difficulty coefficient of the production unit; The second calculation submodule is used to calculate the benefit coefficient, which is equal to one minus the production difficulty coefficient. The third calculation submodule is used to calculate the production efficiency ratio; the production efficiency ratio is equal to the first production efficiency divided by the efficiency coefficient. The first comparison submodule is used to compare all production efficiency ratios; The sixth submodule is used to obtain the maximum production efficiency ratio and use the maximum production efficiency ratio as the first production efficiency ratio; The first analysis submodule is used to analyze the second production unit using a marginal benefit model.

[0045] In this optional embodiment, the petrochemical plant benefit calculation system 600 further includes: The seventh submodule is used to obtain the minimum production efficiency ratio after comparing all production efficiency ratios and to use the minimum production efficiency ratio as the second production efficiency ratio. The eighth acquisition submodule is used to acquire the corresponding third production unit based on the second production efficiency ratio; The ninth submodule is used to acquire multiple processing technology schemes; The first simulation submodule is used to simulate and implement the processing technology scheme one by one in the third production unit; The fourth calculation submodule is used to calculate and obtain the third production efficiency ratio; The tenth submodule is used to obtain the maximum third production efficiency ratio and use the maximum third production efficiency ratio as the fourth production efficiency ratio. The fourth judgment submodule is used to determine whether the fourth production efficiency ratio is greater than the second production efficiency ratio; if the fourth production efficiency ratio is greater than the second production efficiency ratio, the corresponding processing technology plan is implemented.

[0046] In this optional embodiment, the petrochemical plant benefit calculation system 600 further includes: The eleventh submodule is used to obtain the modification cost before implementing the corresponding processing technology plan; The twelfth acquisition submodule is used to obtain the increase in production efficiency based on the corresponding processing technology scheme; The fifth calculation submodule is used to calculate the cost payback period based on the renovation cost and the increase in production efficiency; The fifth judgment submodule is used to determine whether the cost recovery period is greater than a preset threshold; if the cost recovery period is greater than the preset threshold, the step of implementing the corresponding processing technology plan will not be executed.

[0047] Figure 3 This is a structural block diagram of an electronic device 700 provided in an embodiment of this application. The electronic device 700 can be a mobile phone, tablet computer, PC, server, or other similar device. Figure 3 As shown, the electronic device 700 includes a memory 701, a processor 702, and a communication bus 703; the memory and the processor 702 are connected via the communication bus 703. The memory 701 stores a computer program that can be loaded by the processor 702 and executed, as described in the above embodiment, for calculating the benefits of petrochemical plant equipment.

[0048] The memory 701 can be used to store instructions, programs, code, code sets, or instruction sets. The memory 701 may include a stored program area and a stored managed data area. The stored program area may store instructions for implementing an operating system, instructions for at least one function, and instructions for implementing the petrochemical enterprise equipment benefit calculation method provided in the above embodiments, etc. The stored managed data area may store managed data involved in the petrochemical enterprise equipment benefit calculation method provided in the above embodiments, etc.

[0049] Processor 702 may include one or more processing cores. Processor 702 executes instructions, programs, code sets, or instruction sets stored in memory 701, and calls managed data stored in memory 701 to perform various functions of this application and process managed data. Processor 702 may be at least one of the following: Application-Specific Integrated Circuit (ASIC), Digital Signal Processor (DSP), Digital Signal Processing Device (DSPD), Programmable Logic Device (PLD), Field Programmable Gate Array (FPGA), Central Processing Unit (CPU), controller, microcontroller, and microprocessor. It is understood that, for different devices, the electronic devices used to implement the functions of processor 702 may also be other types, and this application embodiment does not specifically limit the specific devices used.

[0050] The communication bus 703 may include a path for transmitting information between the aforementioned components. The communication bus 703 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc. The communication bus 703 can be divided into an address bus, a managed data bus, a control bus, etc. For ease of representation, Figure 3 The symbol is represented by a single double arrow, but this does not mean that there is only one bus or one type of bus.

[0051] This application provides a computer storage medium storing a computer program that can be loaded by a processor and executed as described in the above embodiments for calculating the benefits of petrochemical plant equipment.

[0052] In this embodiment, the computer storage medium can be a tangible device that holds and stores instructions used by the instruction execution device. The computer storage medium can be, but is not limited to, an electrical storage device, a magnetic storage device, an optical storage device, an electromagnetic storage device, a semiconductor storage device, or any combination thereof. Specifically, the computer storage medium can be a portable computer disk, a hard disk, a USB flash drive, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), speaker random access memory (SRAM), portable compact disc read-only memory (CD-ROM), digital multifunction disc (DVD), memory stick, floppy disk, optical disk, magnetic disk, mechanical encoding device, or any combination thereof.

[0053] The terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

Claims

1. A method for calculating the benefits of petrochemical plant facilities, characterized in that, include: Acquire production data based on production facilities; The production data includes fixed costs and product output; Calculate the production efficiency of the corresponding production unit based on the production data; Extract the production benefits corresponding to the production equipment of the same type, and use the extracted production benefits as the first production benefit; The analysis results are obtained by comparing and analyzing the first production efficiency. An optimization strategy is output based on the analysis results.

2. The method for calculating the benefits of petrochemical plant facilities according to claim 1, characterized in that, Before calculating the production efficiency of the corresponding production unit based on the production data, the method further includes: Intermediate losses are obtained based on the aforementioned production equipment; Determine whether intermediate output exists based on the aforementioned intermediate losses; If the intermediate output exists, determine whether there is a recycling threshold. If a recycling threshold exists, determine whether the intermediate output is less than the recycling threshold. If the intermediate output is less than the recycling threshold, the corresponding increase in product output is calculated based on the intermediate output. The product output is adjusted based on the increase in the product quantity.

3. The method for calculating the benefits of petrochemical plant facilities according to claim 2, characterized in that, When the intermediate output is greater than the recovery threshold, the method further includes: The production device corresponding to the intermediate output being greater than the recycling threshold is identified, and the identified production device is used as the first production device. The operating status is obtained based on the first production device; Based on the described working status, determine whether the first production unit is undergoing temporary commissioning; If the first production unit is undergoing temporary commissioning, then this intermediate output will be ignored; If the first production unit is not a temporary commissioning unit, then calculate the difference between the intermediate output and the recovery threshold. Calculate the first cost increase based on the difference; The fixed cost is adjusted based on the first increase in cost.

4. The method for calculating the benefits of petrochemical plant facilities according to claim 3, characterized in that, Before adjusting the fixed cost based on the first cost increase, the method further includes: Obtain historical data from the first production unit; Determine whether there is a first historical data point in the historical data where the intermediate output is greater than the recovery amount threshold; If no first historical data exists, then determine whether the intermediate output in the historical data gradually increases; If the intermediate output in the historical data gradually increases, then output a production equipment aging warning message; If the intermediate output in the historical data does not gradually increase, then the step of correcting the fixed cost based on the first cost increase is not performed and maintenance information is output.

5. The method for calculating the benefits of petrochemical plant facilities according to claim 1, characterized in that, The analysis and comparison based on the first production benefit to obtain the analysis results includes: Obtain the production difficulty coefficient of the production device; Calculate the benefit coefficient, which is equal to one minus the production difficulty coefficient; Calculate the production efficiency ratio; The production efficiency ratio is equal to the first production efficiency divided by the efficiency coefficient; Compare all the aforementioned production efficiency ratios; Obtain the largest production efficiency ratio and use the largest production efficiency ratio as the first production efficiency ratio; Based on the first production efficiency ratio, obtain the corresponding second production device; The marginal benefit model was used to analyze the second production unit.

6. The method for calculating the benefits of petrochemical plant facilities according to claim 5, characterized in that, After comparing all of the aforementioned production efficiency ratios, the method further includes: Obtain the minimum production efficiency ratio and use the minimum production efficiency ratio as the second production efficiency ratio; Based on the second production efficiency ratio, obtain the corresponding third production unit; Obtain multiple processing technology solutions; The third production unit simulates and implements the processing technology scheme one by one. Calculate and obtain the third production efficiency ratio; Obtain the highest third production efficiency ratio and use the highest third production efficiency ratio as the fourth production efficiency ratio; Determine whether the fourth production efficiency ratio is greater than the second production efficiency ratio; If the fourth production efficiency ratio is greater than the second production efficiency ratio, then the corresponding processing technology scheme shall be implemented.

7. The method for calculating the benefits of petrochemical plant facilities according to claim 6, characterized in that, Before implementing the corresponding processing technology scheme, the following is also included: Obtain the cost of the renovation; The increase in production efficiency is obtained based on the corresponding processing technology scheme; The cost recovery period is calculated based on the aforementioned renovation costs and the aforementioned increase in production efficiency. Determine whether the cost recovery period is greater than a preset threshold; If the cost recovery period is greater than the preset threshold, then the steps of the corresponding processing scheme will not be executed.

8. A system for calculating the benefits of petrochemical plant equipment, characterized in that, include: The first acquisition module is used to acquire production data based on the production equipment; the production data includes fixed costs and product output. The first calculation module is used to calculate the production efficiency of the corresponding production device based on the production data. The first extraction module is used to extract the production benefits corresponding to the same type of production device, and to use the extracted production benefits as the first production benefits; The first analysis module is used to perform analysis and comparison based on the first production benefit to obtain analysis results; The first output module is used to output an optimization strategy based on the analysis results.

9. An electronic device, characterized in that, The device includes a processor coupled to a memory; the processor is configured to execute a computer program stored in the memory to cause the electronic device to perform the method as described in any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that, It includes a computer program or instructions that, when run on a computer, cause the computer to perform the method as described in any one of claims 1 to 7.