A pollution barrier method and device for industrial sites
By obtaining the initial isolation area and plan at the industrial site, combining pollutant information and construction time, predicting pollutant information during construction, and adjusting the final isolation plan, the problem of pollutant diffusion was solved and an effective pollutant isolation effect was achieved.
Patent Information
- Application Number
- CN202311014177.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-11
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2043-08-11
AI Technical Summary
The pollution barrier methods used in existing industrial sites are not as effective as expected. Pollutants may spread to non-key areas during construction, resulting in poor barrier effects.
By obtaining the initial isolation area and plan of the industrial site, combining pollutant information and construction time, predicting pollutant information during construction, and adjusting the final isolation plan to ensure that pollutants do not spread outside the isolation area after construction is completed.
Accurate prediction and adjustment of pollutant diffusion during the construction process were achieved, ensuring that the barrier effect met expectations and preventing pollutants from spreading to non-key areas.
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Figure CN117181757B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of environmental protection, and in particular to a pollution barrier method and device for industrial sites. Background Art
[0002] Industrial production processes can release large amounts of pollutants, making soil at industrial sites susceptible to contamination. Pollutants in soil have a relatively unpredictable distribution and diffusion pattern, making them difficult to control. However, contamination can be limited to specific areas through isolation.
[0003] However, different scopes and types of barrier solutions require different construction times, and during the construction process, pollutants may spread outside the key areas, resulting in the barrier effect not meeting expectations. Summary of the Invention
[0004] The embodiments of the present invention provide a pollution barrier method and device for industrial sites to solve the problem that the effects of existing barrier methods do not meet expectations.
[0005] In a first aspect, an embodiment of the present invention provides a method for preventing pollution of an industrial site, comprising:
[0006] Obtaining the initial isolation area within the industrial site and the initial isolation plan corresponding to the initial isolation area;
[0007] Determine construction time based on the initial barrier plan;
[0008] Determining pollutant information during construction based on pollutant information within the industrial site and construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations;
[0009] A final isolation plan is determined based on pollutant information during construction, so as to perform pollution isolation based on the final isolation plan.
[0010] In one possible implementation, determining pollutant information during construction based on pollutant information within the industrial site and construction time includes:
[0011] Determine pollutant transport characteristics based on historical pollutant information within industrial sites;
[0012] The predicted pollutant information within the industrial site during construction is determined based on the real-time pollutant information and pollutant migration characteristics within the industrial site.
[0013] In one possible implementation, determining pollutant information during construction based on pollutant information within the industrial site and construction time further includes:
[0014] Determine pollutant migration characteristics based on historical pollutant information and historical industrial production status within the industrial site;
[0015] Determine the predicted pollutant information within the industrial site during construction based on the real-time pollutant information within the industrial site, planned industrial production status and pollutant migration characteristics.
[0016] In one possible implementation, determining a final isolation solution based on pollutant information during construction includes:
[0017] Based on the pollutant information at each time point during the construction period, a curve showing how the barrier area changes with construction time is determined as a first curve;
[0018] Based on the construction time corresponding to the initial isolation solution, a curve showing how the construction time varies with the isolation area is determined and used as the second curve;
[0019] Based on the first curve and the second curve, a final blocking solution is determined.
[0020] In one possible implementation, obtaining an initial barrier area within an industrial site includes:
[0021] Obtain soil test results at multiple locations within an industrial site;
[0022] Inversion is performed based on the soil test results to obtain pollutant information within the industrial site;
[0023] Determine the initial containment area based on the pollutant information within the industrial site.
[0024] In a possible implementation, the initial barrier solution includes barrier materials, barrier processes, and barrier scale;
[0025] Obtaining the initial blocking solution corresponding to the initial blocking area includes:
[0026] Determine the barrier material based on the type of contaminant in the initial barrier area;
[0027] Determine the isolation process based on the pollutant concentration in the initial isolation area;
[0028] The size of the blockage is determined based on the size of the initial blockage area.
[0029] In one possible implementation, determining the construction time based on the initial isolation plan includes:
[0030] Determine the construction volume of various construction projects based on barrier materials, barrier technology and barrier scale;
[0031] Determine the construction time based on the construction volume and unit time of each type of construction project.
[0032] In a second aspect, an embodiment of the present invention provides a pollution barrier device for an industrial site, comprising:
[0033] An information acquisition module is used to obtain an initial isolation area within the industrial site and an initial isolation plan corresponding to the initial isolation area;
[0034] A time determination module is used to determine the construction time based on the initial barrier plan;
[0035] An information prediction module is used to determine pollutant information during construction based on pollutant information within the industrial site and construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations;
[0036] The scheme determination module is used to determine the final isolation scheme based on the pollutant information during the construction period, so as to perform pollution isolation based on the final isolation scheme.
[0037] In a third aspect, an embodiment of the present invention provides a terminal comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein when the processor executes the computer program, the steps of the method described in the first aspect or any possible implementation of the first aspect are implemented.
[0038] In a fourth aspect, an embodiment of the present invention provides a computer-readable storage medium, which stores a computer program. When the computer program is executed by a processor, it implements the steps of the method described in the first aspect or any possible implementation of the first aspect.
[0039] An embodiment of the present invention provides a pollution barrier method and device for industrial sites. The construction time is determined through an initial barrier plan, and then the pollutant information during the construction period is estimated. The barrier plan is adjusted based on the estimated results of the change in the concentration of various types of pollutants during the construction period to obtain a final barrier plan. On the basis of the initial barrier plan, the consideration of the construction time can be increased to ensure that after the construction is completed, the pollutants do not spread outside the barrier area, thereby achieving the expected barrier effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0041] Figure 1 This is a flow chart for implementing a pollution barrier method for an industrial site provided by one embodiment of the present invention;
[0042] Figure 2 This is a schematic structural diagram of a pollution barrier device for an industrial site provided by one embodiment of the present invention;
[0043] Figure 3 FIG. 4 is a schematic diagram of a terminal provided by an embodiment of the present invention. DETAILED DESCRIPTION
[0044] In the following description, specific details such as particular system structures and techniques are provided for purposes of illustration, not limitation, to facilitate a thorough understanding of the embodiments of the present invention. However, it will be apparent to those skilled in the art that the present invention may be practiced in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted so as not to obscure the description of the present invention with unnecessary detail.
[0045] In order to make the purpose, technical solutions and advantages of the present invention more clear, specific embodiments will be described below with reference to the accompanying drawings.
[0046] See also Figure 1 , which shows a flowchart of an implementation method of pollution isolation for an industrial site provided by an embodiment of the present invention, and is described in detail as follows:
[0047] Step 101: Acquire an initial isolation area within an industrial site and an initial isolation plan corresponding to the initial isolation area.
[0048] In this embodiment, the initial isolation scheme refers to the isolation scheme determined according to the initial isolation area in the prior art. The initial isolation area is an area selected based on real-time pollutant information within the industrial site, and does not consider the diffusion of pollutants after the construction period.
[0049] Step 102: Determine the construction time based on the initial isolation plan.
[0050] In this embodiment, the construction time refers to the time required to complete the implementation of the initial isolation plan. Once the initial isolation plan is determined, the construction time can be estimated.
[0051] Before construction is completed, pollutants in the barrier area are not controlled by the barrier measures and may therefore diffuse outside the barrier area, resulting in the barrier effect not meeting expectations.
[0052] In this regard, after estimating the construction time, the diffusion of pollutants can be further estimated, so as to accurately adjust the barrier plan so that the actual barrier effect meets the barrier requirements.
[0053] Step 103 : determining pollutant information during the construction period based on the pollutant information in the industrial site and the construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations.
[0054] In this embodiment, pollutant information can represent the distribution of various types of pollutants within an industrial site. The migration characteristics of pollutants are affected by their type and concentration. Pre-construction pollutant information can be used to predict pollutant information that will diffuse over time after construction begins, such as during construction and upon completion. This allows for precise adjustments to containment plans based on pollutant information at each point in time.
[0055] Step 104 : determining a final isolation plan based on the pollutant information during the construction period, and performing pollution isolation based on the final isolation plan.
[0056] In this embodiment, based on the pollutant information during construction, a larger isolation area can be re-determined based on the diffusion of pollutants. The final isolation plan determined based on this isolation area takes into account the diffusion of pollutants and can achieve a better isolation effect.
[0057] Specifically, the pollutant information during construction may be pollutant information at multiple time points. First, the isolation areas corresponding to the pollutant information at each time point are determined respectively, and then the isolation area with the largest range is selected, and finally the final isolation plan corresponding to the isolation area is determined.
[0058] In one possible implementation, determining pollutant information during construction based on pollutant information within the industrial site and construction time includes:
[0059] Determine pollutant transport characteristics based on historical pollutant information within industrial sites;
[0060] The predicted pollutant information within the industrial site during construction is determined based on the real-time pollutant information and pollutant migration characteristics within the industrial site.
[0061] In this embodiment, the migration characteristics of pollutants are also affected by soil composition and geographical environment. By using historical pollutant information, the migration characteristics of pollutants can be more accurately determined based on factors such as the soil composition and geographical environment of the industrial site itself, thereby obtaining more accurate predicted pollutant information.
[0062] In one possible implementation, determining pollutant information during construction based on pollutant information within the industrial site and construction time further includes:
[0063] Determine pollutant migration characteristics based on historical pollutant information and historical industrial production status within the industrial site;
[0064] Determine the predicted pollutant information within the industrial site during construction based on the real-time pollutant information within the industrial site, planned industrial production status and pollutant migration characteristics.
[0065] In this embodiment, pollutant information within an industrial site is related to the state of industrial production. For example, if the industrial production state is producing a certain product at a certain production rate, pollutants associated with that product may be discharged into the industrial site at a certain emission rate, and the concentration of that pollutant within the industrial site will increase at a corresponding rate. Integrating the industrial production state with the impact of industrial production state on changes in pollutant concentration allows for more accurate determination of pollutant migration characteristics, thereby obtaining more accurate predicted pollutant information.
[0066] In one possible implementation, determining a final isolation solution based on pollutant information during construction includes:
[0067] Based on the pollutant information at each time point during the construction period, a curve showing how the barrier area changes with construction time is determined as a first curve;
[0068] Based on the construction time corresponding to the initial isolation solution, a curve showing how the construction time varies with the isolation area is determined and used as the second curve;
[0069] Based on the first curve and the second curve, a final blocking solution is determined.
[0070] In this embodiment, the construction time of the barrier solution is affected by the construction volume of the barrier solution, which in turn is affected by the size of the barrier area. Because the final barrier area determined in step 104 is larger than the initial barrier area, the construction time of the final barrier solution corresponding to the final barrier area is also longer than that of the initial barrier solution. This means that even after the final barrier solution is completed, pollutants may still diffuse outside the final barrier area.
[0071] In this regard, in this embodiment, the mutual influence relationship between the barrier area and the construction duration is further optimized. Based on the intersection of the first curve and the second curve, a barrier area with a moderate range is determined in which the pollutants do not diffuse outside the barrier area after the construction is completed, thereby determining an optimal final barrier solution and achieving the optimal barrier effect.
[0072] In one possible implementation, obtaining an initial barrier area within an industrial site includes:
[0073] Obtain soil test results at multiple locations within an industrial site;
[0074] Inversion is performed based on the soil test results to obtain pollutant information within the industrial site;
[0075] Determine the initial containment area based on the pollutant information within the industrial site.
[0076] In this embodiment, soil contaminant detection typically begins with a rough inspection at sparse sampling points. Based on these rough inspection results, detailed inspections are then conducted in key areas, resulting in soil test results at multiple locations. Through machine learning models and other methods, a more detailed pollutant distribution can be inverted based on these multiple soil test results, thereby determining the distribution boundaries of the pollutants and delineating initial isolation zones.
[0077] In a possible implementation, the initial barrier solution includes barrier materials, barrier processes, and barrier scale;
[0078] Obtaining the initial blocking solution corresponding to the initial blocking area includes:
[0079] Determine the barrier material based on the type of contaminant in the initial barrier area;
[0080] Determine the isolation process based on the pollutant concentration in the initial isolation area;
[0081] The size of the blockage is determined based on the size of the initial blockage area.
[0082] In this embodiment, the barrier materials include asphalt, concrete, elastic membrane lining, soil cover, etc. The barrier process includes soil treatment in the early stage of construction, the combination and connection method of different barrier layers, etc. The barrier scale includes depth, area, thickness, etc.
[0083] In one possible implementation, determining the construction time based on the initial isolation plan includes:
[0084] Determine the construction volume of various construction projects based on barrier materials, barrier technology and barrier scale;
[0085] Determine the construction time based on the construction volume and unit time of each type of construction project.
[0086] In this embodiment, construction items, such as pre-construction soil preparation, excavation, material laying, and backfilling, can be determined based on the barrier material and barrier process. The construction volume for each construction item, such as excavation depth, laying area, and backfilling volume, can also be determined based on the barrier scale. The unit time for each construction item can be preset or estimated based on experience.
[0087] The embodiment of the present invention determines the construction time through an initial barrier plan, and then estimates the pollutant information during the construction period, so as to adjust the barrier plan based on the estimated results of the change in the concentration of various types of pollutants during the construction period to obtain a final barrier plan. On the basis of the initial barrier plan, it can increase the consideration of the construction time to ensure that after the construction is completed, the pollutants do not spread outside the barrier area, thereby achieving the expected barrier effect.
[0088] It should be understood that the size of the serial numbers of the steps in the above embodiments 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 embodiments of the present invention.
[0089] The following are device embodiments of the present invention. For details not fully described therein, reference may be made to the corresponding method embodiments described above.
[0090] Figure 2 A schematic structural diagram of a pollution barrier device for an industrial site provided by an embodiment of the present invention is shown. For ease of explanation, only the portion related to the embodiment of the present invention is shown, which is described in detail as follows:
[0091] like Figure 2 As shown, a pollution barrier device 2 for an industrial site includes:
[0092] An information acquisition module 21 is used to acquire an initial isolation area within the industrial site and an initial isolation plan corresponding to the initial isolation area;
[0093] A time determination module 22, for determining the construction time based on the initial isolation plan;
[0094] An information prediction module 23 is configured to determine pollutant information during construction based on pollutant information within the industrial site and construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations;
[0095] The scheme determination module 24 is used to determine a final isolation scheme based on the pollutant information during the construction period, so as to perform pollution isolation based on the final isolation scheme.
[0096] In a possible implementation, the information prediction module 23 is specifically configured to:
[0097] Determine pollutant transport characteristics based on historical pollutant information within industrial sites;
[0098] The predicted pollutant information within the industrial site during construction is determined based on the real-time pollutant information and pollutant migration characteristics within the industrial site.
[0099] In a possible implementation, the information prediction module 23 is specifically configured to:
[0100] Determine pollutant migration characteristics based on historical pollutant information and historical industrial production status within the industrial site;
[0101] Determine the predicted pollutant information within the industrial site during construction based on the real-time pollutant information within the industrial site, the planned industrial production status and the pollutant migration characteristics.
[0102] In a possible implementation, the solution determination module 24 is specifically configured to:
[0103] Based on the pollutant information at each time point during the construction period, a curve showing how the barrier area changes with construction time is determined as a first curve;
[0104] Based on the construction time corresponding to the initial isolation solution, a curve showing how the construction time varies with the isolation area is determined and used as the second curve;
[0105] Based on the first curve and the second curve, a final blocking solution is determined.
[0106] In a possible implementation, the information acquisition module 21 is specifically configured to:
[0107] Obtain soil test results at multiple locations within an industrial site;
[0108] Inversion is performed based on the soil test results to obtain pollutant information within the industrial site;
[0109] Determine the initial containment area based on the pollutant information within the industrial site.
[0110] In a possible implementation, the initial barrier solution includes barrier materials, barrier processes, and barrier scale;
[0111] The information acquisition module 21 is specifically used for:
[0112] Determine the barrier material based on the type of contaminant in the initial barrier area;
[0113] Determine the isolation process based on the pollutant concentration in the initial isolation area;
[0114] The size of the blockage is determined based on the size of the initial blockage area.
[0115] In a possible implementation, the time determination module 22 is specifically configured to:
[0116] Determine the construction volume of various construction projects based on barrier materials, barrier technology and barrier scale;
[0117] Determine the construction time based on the construction volume and unit time of each type of construction project.
[0118] The embodiment of the present invention determines the construction time through an initial barrier plan, and then estimates the pollutant information during the construction period, so as to adjust the barrier plan based on the estimated results of the change in the concentration of various types of pollutants during the construction period to obtain a final barrier plan. On the basis of the initial barrier plan, it can increase the consideration of the construction time to ensure that after the construction is completed, the pollutants do not spread outside the barrier area, thereby achieving the expected barrier effect.
[0119] Figure 3 Schematic diagram of a terminal provided by an embodiment of the present invention. Figure 3 As shown, the terminal 3 of this embodiment includes: a processor 30, a memory 31, and a computer program 32 stored in the memory 31 and executable on the processor 30. When the processor 30 executes the computer program 32, the steps of the above-mentioned various embodiments of the pollution barrier method for an industrial site are implemented, for example Figure 1 Alternatively, when the processor 30 executes the computer program 32, the functions of the modules / units in the above-mentioned device embodiments are realized, for example, Figure 2 The functions of each module are shown.
[0120] Exemplarily, the computer program 32 may be divided into one or more modules / units, which are stored in the memory 31 and executed by the processor 30 to implement the present invention. The one or more modules / units may be a series of computer program instruction segments capable of implementing specific functions, which are used to describe the execution process of the computer program 32 in the terminal 3. For example, the computer program 32 may be divided into Figure 2 The modules shown.
[0121] The terminal 3 may be a computing device such as a desktop computer, a notebook, a PDA, or a cloud server. The terminal 3 may include, but is not limited to, a processor 30 and a memory 31. Those skilled in the art will understand that Figure 3 It is only an example of terminal 3 and does not constitute a limitation on terminal 3. It may include more or fewer components than shown in the figure, or a combination of certain components, or different components. For example, the terminal may also include input and output devices, network access devices, buses, etc.
[0122] The processor 30 may be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor may be a microprocessor or any conventional processor.
[0123] The memory 31 may be an internal storage unit of the terminal 3, such as a hard disk or memory of the terminal 3. The memory 31 may also be an external storage device of the terminal 3, such as a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash memory card, etc. equipped on the terminal 3. Furthermore, the memory 31 may include both an internal storage unit of the terminal 3 and an external storage device. The memory 31 is used to store the computer program and other programs and data required by the terminal. The memory 31 may also be used to temporarily store data that has been output or is about to be output.
[0124] Those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above-mentioned functional units and modules is used as an example for illustration. In actual applications, the above-mentioned functions can be distributed and completed by different functional units and modules as needed, that is, the internal structure of the device can be divided into different functional units or modules to complete all or part of the functions described above. The functional units and modules in the embodiment can be integrated into one processing unit, or each unit can exist physically alone, or two or more units can be integrated into one unit. The above-mentioned integrated unit can be implemented in the form of hardware or in the form of software functional units. In addition, the specific names of the functional units and modules are only for the convenience of distinguishing each other, and are not used to limit the scope of protection of this application. The specific working process of the units and modules in the above-mentioned system can refer to the corresponding process in the aforementioned method embodiment, and will not be repeated here.
[0125] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described or recorded in detail in a certain embodiment, reference can be made to the relevant description of other embodiments.
[0126] Those skilled in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professionals and technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present invention.
[0127] In the embodiments provided by the present invention, it should be understood that the disclosed devices / terminals and methods can be implemented in other ways. For example, the device / terminal embodiments described above are merely illustrative. For example, the division of the modules or units is merely a logical functional division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed can be through some interface, indirect coupling or communication connection of devices or units, and can be electrical, mechanical, or other forms.
[0128] The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.
[0129] In addition, the functional units in the various embodiments of the present invention may be integrated into a single processing unit, each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.
[0130] If the integrated module / unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the present invention can implement all or part of the processes in the above-mentioned embodiment method, and can also be completed by instructing the relevant hardware through a computer program. The computer program can be stored in a computer-readable storage medium. When the computer program is executed by a processor, it can implement the steps of each of the above-mentioned industrial site pollution barrier method embodiments. The computer program includes computer program code, which can be in source code form, object code form, executable file or some intermediate form. The computer-readable medium can include: any entity or device that can carry the computer program code, recording medium, USB flash drive, mobile hard disk, magnetic disk, optical disk, computer memory, read-only memory (ROM), random access memory (RAM), electrical carrier signal, telecommunication signal and software distribution medium. It should be noted that the content contained in the computer-readable medium can be appropriately increased or decreased according to the requirements of legislation and patent practices in the jurisdiction. For example, in some jurisdictions, according to legislation and patent practices, computer-readable media does not include electrical carrier signals and telecommunication signals.
[0131] The embodiments described above are only used to illustrate the technical solutions of the present invention, rather than to limit the same. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention, and should all be included in the scope of protection of the present invention.
Claims
1. A pollution barrier method for industrial sites, characterized in that: include: Obtaining an initial isolation area within the industrial site and an initial isolation plan corresponding to the initial isolation area; Determine the construction time based on the initial barrier plan; Determining pollutant information during the construction period based on the pollutant information within the industrial site and the construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations; determining a final isolation plan based on the pollutant information during the construction period, so as to perform pollution isolation based on the final isolation plan; The initial barrier solution includes barrier materials, barrier technology and barrier scale; Obtaining the initial blocking solution corresponding to the initial blocking area includes: determining a barrier material based on the type of pollutants in the initial barrier area; determining a barrier process based on the pollutant concentration in the initial barrier area; determining a barrier size based on the size of the initial barrier area; Determining the construction time based on the initial barrier plan includes: Determining the construction volume of various construction projects based on the barrier material, the barrier process, and the barrier scale; Determine construction time based on the construction volume and unit time of various construction projects; The determining of the pollutant information during the construction period based on the pollutant information in the industrial site and the construction time includes: determining pollutant transport characteristics based on historical pollutant information within the industrial site; determining predicted pollutant information within the industrial site during construction based on the real-time pollutant information within the industrial site and the pollutant migration characteristics; Determining the final isolation solution based on the pollutant information during the construction period includes: Based on the pollutant information at each time point during the construction period, a curve showing how the barrier area changes with construction time is determined as a first curve; Determine a curve showing how the construction time varies with the barrier area based on the construction time corresponding to the initial barrier solution, and use the curve as the second curve; A final blocking solution is determined based on the first curve and the second curve.
2. The pollution barrier method for industrial sites according to claim 1, characterized in that: The determining of pollutant information during the construction period based on the pollutant information in the industrial site and the construction time further includes: determining pollutant migration characteristics based on historical pollutant information and historical industrial production status within the industrial site; Predicted pollutant information within the industrial site during construction is determined based on the real-time pollutant information within the industrial site, the planned industrial production status, and the pollutant migration characteristics.
3. The pollution barrier method for industrial sites according to claim 1, characterized in that: The initial isolation area within the industrial site includes: Obtain soil test results at multiple locations within an industrial site; Perform inversion based on the soil test results to obtain pollutant information within the industrial site; An initial isolation area is determined based on pollutant information within the industrial site.
4. A pollution barrier device for industrial sites, characterized in that: include: An information acquisition module, configured to acquire an initial isolation area within the industrial site and an initial isolation plan corresponding to the initial isolation area; A time determination module, configured to determine the construction time based on the initial isolation plan; An information prediction module, configured to determine pollutant information during construction based on the pollutant information within the industrial site and the construction time; wherein the pollutant information includes pollutant types and pollutant concentrations at multiple detection locations; a scheme determination module, configured to determine a final isolation scheme based on the pollutant information during the construction period, so as to perform pollution isolation based on the final isolation scheme; The initial barrier solution includes barrier materials, barrier technology and barrier scale; The information acquisition module is specifically used for: determining a barrier material based on the type of pollutants in the initial barrier area; determining a barrier process based on the pollutant concentration in the initial barrier area; determining a barrier size based on the size of the initial barrier area; The time determination module is specifically used to: Determining the construction volume of various construction projects based on the barrier material, the barrier process, and the barrier scale; Determine construction time based on the construction volume and unit time of various construction projects; The information prediction module is specifically used for: determining pollutant transport characteristics based on historical pollutant information within the industrial site; determining predicted pollutant information within the industrial site during construction based on the real-time pollutant information within the industrial site and the pollutant migration characteristics; The solution determination module is specifically used to: Based on the pollutant information at each time point during the construction period, a curve showing how the barrier area changes with construction time is determined as a first curve; Determine a curve showing how the construction time varies with the barrier area based on the construction time corresponding to the initial barrier solution, and use the curve as the second curve; A final blocking solution is determined based on the first curve and the second curve.
5. A terminal comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the computer program, the steps of the method according to any one of claims 1 to 4 are implemented.
6. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 4 are implemented.
Citation Information
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