A resource configuration method for offshore oil spill emergency equipment warehouse

By using decision parameters in the marine oil spill emergency equipment database to generate the optimal resource allocation scheme, the problem of inconsistency caused by relying on human experience has been solved, enabling rapid and accurate emergency resource allocation and improving the efficiency of marine oil spill response and environmental protection.

CN119761729BActive Publication Date: 2026-02-06TRANSPORT PLANNING & RES INST MINIST OF TRANSPORT
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Patent Information

Application Number
CN202411832182.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-02-06
Estimated Expiration
2044-12-12

AI Technical Summary

Technical Problem

In existing technologies, the allocation of emergency resources for marine oil spills relies on human experience and lacks scientific data analysis, resulting in inconsistent allocation and low response efficiency.

Method used

A resource allocation method for marine oil spill emergency equipment depots is provided. The method receives decision parameters through an input interface, generates an optimal resource allocation scheme, considers the performance and collaboration of emergency resources, and uses computer models to support rapid decision-making.

Benefits of technology

It has improved the efficiency of handling marine oil spills, reduced losses, protected the marine ecological environment, and ensured the accuracy and rapid response of resource allocation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a resource configuration method for a marine oil spill emergency equipment warehouse. In response to a decision parameter input by a user on an input interface, resource information corresponding to at least one emergency resource is determined. The decision parameter is used to constrain the implementation effect of a resource configuration scheme generated for a marine oil spill accident. In a case where it is determined that there is at least one resource configuration scheme based on the decision parameter and the resource information corresponding to the at least one emergency resource, a cost value corresponding to each resource configuration scheme is obtained. A resource configuration scheme corresponding to a minimum cost value among the cost values is determined as a target resource configuration scheme, and a first prompt information is generated. The first prompt information is used to prompt handling of the marine oil spill accident based on the target resource configuration scheme, so as to improve the disposal efficiency of the pollution caused by the marine oil spill accident and reduce the loss caused by the marine oil spill accident.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of offshore oil spill emergency disposal equipment configuration, and particularly relates to a resource configuration method for an offshore oil spill emergency equipment warehouse. BACKGROUND

[0002] Petroleum, as a strategic resource, plays an important role in the national economy and can be transported by sea shipping. However, due to the complexity of the marine environment, offshore oil spill accidents often occur during sea shipping. Offshore oil spill accidents not only harm the marine environment and ecology, but also cause personnel and economic losses. Therefore, how to improve the disposal capacity for offshore oil spill accidents is an urgent problem to be solved when offshore oil spill accidents occur.

[0003] In the process of disposing offshore oil spill accidents, considering the influence of factors such as the variability of the real-time marine environment, the performance parameters, locations and quantities of various resources participating in the disposal of offshore oil spill accidents are different. The correct selection and combination of emergency resources in an uncertain environment directly affect the efficiency of the emergency disposal of offshore oil spill accidents.

[0004] At present, in the process of disposing offshore oil spill accidents, subjective judgments are often made by relevant technical personnel based on artificial experience to configure various emergency resources for handling offshore oil spill accidents. However, the configuration method based on artificial experience lacks scientific data analysis and model support. Moreover, the resource configuration based on artificial experience ignores the connection between different equipment types, resulting in inconsistency of resource configuration, thereby limiting the accuracy of the disposal of offshore oil spill accidents. SUMMARY

[0005] The technical problem to be solved by the present application is to provide a resource configuration method for an offshore oil spill emergency equipment warehouse, which can quickly calculate the optimal resource configuration scheme for offshore oil spill accidents to make disposal decisions for offshore oil spill accidents quickly, improve the disposal efficiency of offshore oil spill accident pollution, and reduce the losses caused by offshore oil spill accidents.

[0006] The technical solution of the present application to solve the above technical problem is as follows:

[0007] In a first aspect, the present application provides a resource configuration method for a marine oil spill emergency equipment warehouse, comprising: displaying an input interface. The input interface is used to receive decision parameters input by a user for a marine oil spill accident. The decision parameters are used to constrain the implementation effect of a resource configuration scheme generated for the marine oil spill accident. At least one emergency resource corresponding resource information is determined in response to the decision parameters input by the user on the input interface. At least one resource configuration scheme is determined based on the decision parameters and the resource information corresponding to the at least one emergency resource. For any one of the at least one resource configuration scheme, the any one resource configuration scheme includes at least one target emergency resource, and the target emergency resource is an emergency resource in the at least one emergency resource. A cost value corresponding to each of the at least one resource configuration scheme is obtained. The resource configuration scheme corresponding to the minimum cost value in the cost values is determined as a target resource configuration scheme. First prompt information is generated. The first prompt information is used to prompt that the emergency resources included in the target resource configuration scheme are used to handle the marine oil spill accident.

[0008] Based on the above technical solutions, the present application can be further improved as follows.

[0009] Further, the decision parameters include:

[0010] The comprehensive clean-up control capability parameter is associated with a rate of handling the marine oil spill accident;

[0011] The emergency service radius parameter is associated with a range of handling the marine oil spill accident;

[0012] The maximum working time parameter is associated with a maximum working time of each emergency resource participating in handling the marine oil spill accident;

[0013] The emergency ship speed parameter is associated with a travel speed of a ship where the marine oil spill accident occurs;

[0014] The discharge pump rate parameter is associated with a rate of discharging seawater in the ship where the marine oil spill accident occurs;

[0015] The emergency unloading treatment parameter is associated with an emergency unloading capability of an emergency unloading resource;

[0016] The mechanical recovery treatment parameter is associated with a mechanical recovery capability of a mechanical recovery resource;

[0017] The emergency spraying treatment parameter is associated with an emergency spraying capability of an emergency spraying resource;

[0018] The oil storage and transportation treatment parameter is associated with an oil storage and transportation capability of an oil storage and transportation resource;

[0019] The oil spill containment treatment parameter is associated with an oil spill containment capability of an oil spill containment resource.

[0020] The oil spill adsorption treatment parameter is associated with the oil spill adsorption capacity of the oil spill adsorption resource.

[0021] Further, in response to the decision parameter input by the user at the input interface, resource information corresponding to the at least one emergency resource is determined in an emergency resource database. The emergency resource database includes a preset number of types of emergency resources. Each type of emergency resource includes at least one emergency device. The types of emergency resources include at least one of emergency unloading resources, mechanical recycling resources, emergency spraying resources, oil storage and transportation resources, oil spill containment resources, and oil spill adsorption resources.

[0022] Further, the resource information includes price information, working performance information, and applicability information for various types of oil products corresponding to the emergency resources.

[0023] Further, based on the decision parameter, a constraint condition is generated. Based on the constraint condition and the resource information corresponding to the at least one emergency resource, it is determined that there is at least one resource configuration scheme.

[0024] Further, the constraint condition includes:

[0025] The expected emergency unloading treatment parameter is greater than the emergency unloading treatment parameter. The expected emergency unloading treatment parameter is associated with the emergency unloading capacity of the emergency unloading resource included in the generated resource configuration scheme. The emergency unloading capacity of the emergency unloading resource is associated with the working performance information and the applicability information for various types of oil products of the emergency unloading resource.

[0026] The expected mechanical recycling treatment parameter is greater than the mechanical recycling treatment parameter. The expected mechanical recycling treatment parameter is associated with the mechanical recycling capacity of the mechanical recycling resource included in the generated resource configuration scheme. The mechanical recycling capacity of the mechanical recycling resource is associated with the working performance information and the applicability information for various types of oil products of the mechanical recycling resource.

[0027] The expected emergency spraying treatment parameter is greater than the emergency spraying treatment parameter. The expected emergency spraying treatment parameter is associated with the emergency spraying capacity of the emergency spraying resource included in the generated resource configuration scheme. The emergency spraying capacity of the emergency spraying resource is associated with the working performance information and the applicability information for various types of oil products of the emergency spraying resource.

[0028] The expected oil storage and transportation treatment parameter is greater than the oil storage and transportation treatment parameter. The expected oil storage and transportation treatment parameter is associated with the oil storage and transportation capacity of the oil storage and transportation resource included in the generated resource configuration scheme. The oil storage and transportation capacity of the oil storage and transportation resource is associated with the working performance information and the applicability information for various types of oil products of the oil storage and transportation resource.

[0029] The expected oil spill containment treatment parameter is greater than the oil spill containment treatment parameter.

[0030] The expected oil spill adsorption resource parameter is greater than the oil spill adsorption treatment parameter.

[0031] Further, based on the decision parameter and the resource information corresponding to the at least one emergency resource, it is determined that there is no resource configuration scheme. The second prompt information is generated, and the second prompt information is used to prompt the re-input of the decision parameter in the input interface.

[0032] Further, based on the price information of the at least one target emergency resource, a cost value corresponding to any resource configuration scheme is determined.

[0033] Further, the first prompt information includes at least one of text prompt information, graphical prompt information, and sound prompt information.

[0034] Further, in response to the input resource configuration instruction, the target resource configuration scheme is used to treat the marine oil spill accident based on the emergency resources included in the target resource configuration scheme.

[0035] The beneficial effects of the present application are as follows:

[0036] The present application can quickly calculate the optimal resource configuration scheme for marine oil spill accidents, help decision makers make quick response and disposal decisions, reduce the time delay of marine oil spill accident disposal, improve the emergency disposal efficiency of pollution caused by marine oil spill accidents, reduce the loss of marine oil spill accidents, and protect the marine ecological environment.

[0037] Moreover, the present application is different from the traditional resource configuration method of artificial experience and subjective judgment, and has scientific data and model support, so that the accuracy of the obtained resource configuration scheme is higher.

[0038] In addition, the present application considers the mutual cooperation between each emergency resource and the influence of the ability of each emergency resource on resource configuration, and can accurately configure each emergency resource.

[0039] In a second aspect, the present application provides a resource configuration system, comprising: a memory, one or more processors. The memory is coupled to the processors. Wherein the memory stores computer program codes, the computer program codes comprising computer instructions, when the computer instructions are executed by the processors, the resource configuration system provided by the present application executes the resource configuration method for the offshore oil spill emergency equipment warehouse according to any one of the first aspect.

[0040] In a third aspect, the present application provides an electronic device, comprising: a memory, one or more processors; the memory and the processors are coupled; wherein the memory stores computer program codes, the computer program codes comprising computer instructions, when the computer instructions are executed by the processors, the electronic device executes the resource configuration method for the offshore oil spill emergency equipment warehouse according to any one of the first aspect.

[0041] In a fourth aspect, a computer readable storage medium is provided, comprising computer instructions, when the computer instructions are executed on an electronic device, the electronic device executes the resource configuration method for the offshore oil spill emergency equipment warehouse according to any one of the first aspect.

[0042] In a fifth aspect, a computer program product is provided, when the computer program product is executed on a computer, the computer executes the resource configuration method for the offshore oil spill emergency equipment warehouse according to any one of the first aspect.

[0043] It can be understood that the beneficial effects of the resource configuration system of the second aspect, the electronic device of the third aspect, the computer readable storage medium of the fourth aspect, and the computer program product of the fifth aspect provided above can refer to the beneficial effects of the first aspect and any possible design of the first aspect, which will not be repeated here. BRIEF DESCRIPTION OF DRAWINGS

[0044] Figure 1 A flowchart of a resource configuration method for an offshore oil spill emergency equipment warehouse provided by the present application;

[0045] Figure 2 A schematic diagram of an input interface provided by the present application;

[0046] Figure 3 A schematic diagram of second prompt information provided by the present application;

[0047] Figure 4 A schematic diagram of first prompt information provided by the present application;

[0048] Figure 5 A processing flowchart for determining whether an offshore oil spill accident occurs provided by the present application;

[0049] Figure 6A structural schematic diagram of a resource configuration system provided by the present application is shown. DETAILED DESCRIPTION

[0050] The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application. In the description of the present application, unless otherwise specified, " / " represents an "or" relationship between the objects before and after the " / ", for example, A / B can represent A or B; in the present application, "and / or" is only a description of the relationship between the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases of A alone, A and B together, and B alone, where A and B can be singular or plural. In the description of the present application, unless otherwise specified, "multiple" means two or more than two. "At least one of the following" or similar expressions means any combination of the items, including any combination of single or multiple items. For example, at least one of a, b, or c can mean a, b, c, a-b, a-c, b-c, or a-b-c, where a, b, and c can be single or multiple. In addition, in order to clearly describe the technical solutions of the embodiments of the present application, in the embodiments of the present application, "first", "second", etc. are used to distinguish the same items or similar items with basically the same function and effect. Those skilled in the art can understand that "first", "second", etc. do not limit the quantity and execution order, and "first", "second", etc. also do not necessarily mean different. At the same time, in the embodiments of the present application, "exemplary" or "for example" means as an example, illustration or description. Any embodiment or design scheme described as "exemplary" or "for example" in the embodiments of the present application should not be interpreted as more preferred or more advantageous than other embodiments or design schemes.

[0051] In view of the low accuracy of the current offshore oil spill accident disposal and other problems, the present application provides a resource configuration method for an offshore oil spill emergency equipment warehouse, which can quickly calculate the optimal resource configuration scheme for offshore oil spill accidents to make disposal decisions for offshore oil spill accidents quickly, improve the disposal efficiency of offshore oil spill accident pollution, and reduce the loss caused by offshore oil spill accidents.

[0052] Referring to Figure 1 The resource configuration method for the offshore oil spill emergency equipment warehouse provided by the present application includes the following steps S101-S106:

[0053] S101: display an input interface.

[0054] The input interface is used to receive decision parameters input by a user for an offshore oil spill accident. The decision parameters are used to constrain the implementation effect of the resource configuration scheme generated for the offshore oil spill accident.

[0055] In some embodiments, the decision parameters can include at least one of a comprehensive clean-up control capability parameter, an emergency service radius parameter, a maximum working time length parameter, an emergency ship speed parameter, a discharge pump rate parameter, an emergency unloading treatment parameter, a mechanical recycling treatment parameter, an emergency spraying treatment parameter, a waste oil storage and transportation treatment parameter, an oil spill containment treatment parameter, and an oil spill adsorption treatment parameter. Each of the decision parameters is described in detail as follows:

[0056] In some embodiments, the comprehensive clean-up control capability parameter is associated with a speed of handling the marine oil spill accident. For example, the shorter the time length required for handling the marine oil spill accident based on the generated resource configuration scheme, the greater the corresponding comprehensive clean-up control capability parameter, indicating that the generated resource configuration scheme is faster in speed of handling the marine oil spill accident.

[0057] In some embodiments, the emergency service radius parameter is associated with a range of handling the marine oil spill accident. For example, the greater the range (i.e., the greater the radius) of handling the marine oil spill accident based on the generated resource configuration scheme, the greater the corresponding emergency service radius parameter, indicating that the generated resource configuration scheme is capable of handling a greater range of marine oil spill accidents.

[0058] In some embodiments, the maximum working time length parameter is associated with a maximum working time length of each emergency resource participating in handling the marine oil spill accident. For example, the generated resource configuration scheme includes five emergency resources. The maximum working time lengths of the five emergency resources are 2h, 3h, 4h, 5h, and 6h, respectively. In order to ensure the normal work of the emergency resource with the minimum maximum working time length among the five emergency resources, the maximum working time length parameter can be set to 2h.

[0059] In some embodiments, the emergency ship speed parameter is associated with a travel speed of the ship where the marine oil spill accident occurs. For example, the greater the travel speed of the ship where the marine oil spill accident occurs, the greater the emergency ship speed parameter.

[0060] In some embodiments, the discharge pump rate parameter is associated with a rate of discharging seawater in the ship where the marine oil spill accident occurs. For example, the greater the rate of discharging seawater in the ship where the marine oil spill accident occurs, the greater the discharge pump rate parameter.

[0061] In some embodiments, the emergency unloading treatment parameter is associated with an emergency unloading capacity of the emergency unloading resource. The emergency unloading capacity refers to the capacity of all emergency unloading resources to offload residual oil products in the ship after the marine oil spill accident, and the emergency unloading capacity is associated with the weight of the residual oil products offloaded by the emergency unloading resource.

[0062] In some embodiments, the mechanical recovery processing parameter is associated with a mechanical recovery capability of the mechanical recovery resource. The mechanical recovery capability is associated with a total weight of the oil spill that can be recovered by all the mechanical recovery resources participating in the offshore oil spill incident.

[0063] In some embodiments, the emergency spraying processing parameter is associated with an emergency spraying capability of the emergency spraying resource. The emergency spraying capability refers to the capability of the oil spill dispersant (including chemical dispersant, biological treatment agent, etc.) to process the oil spill. The emergency spraying capability is associated with a weight of the oil spill in water that can be dispersed or degraded by the oil spill dispersant of all the emergency spraying resources participating in the offshore oil spill incident.

[0064] In some embodiments, the oil storage and transportation processing parameter is associated with an oil storage and transportation capability of the oil storage and transportation resource. The oil storage and transportation capability refers to the capability of storing and transporting the oil spill in the process of handling the offshore oil spill incident. The oil storage and transportation capability is associated with the storage capacity of the oil storage and transportation resource.

[0065] In some embodiments, the oil spill containment processing parameter is associated with an oil spill containment capability of the oil spill containment resource. The oil spill containment capability refers to the capability of containing the oil spill and protecting sensitive resources after the offshore oil spill incident. The oil spill containment capability is associated with the comprehensive removal and control capability of all the oil spill containment resources participating in the offshore oil spill incident.

[0066] In some embodiments, the oil spill adsorption processing parameter is associated with an oil spill adsorption capability of the oil spill adsorption resource. The oil spill adsorption capability refers to the capability of the oil spill adsorption resource to adsorb the oil spill generated in the offshore oil spill incident. The oil spill adsorption capability is associated with the weight of the oil spill that can be absorbed by all the oil spill adsorption resources participating in the offshore oil spill incident.

[0067] In some embodiments, referring to Figure 2 The input interface can include a plurality of input controls (for example, input control 201). The input control can be an Entry control, and the input control is used to receive the decision parameter input by the user for the offshore oil spill incident. Different input controls are used to receive different decision parameters input by the user for the offshore oil spill incident (for example, the input control 201 is used to receive the comprehensive removal and control capability parameter input by the user).

[0068] In some embodiments, the input interface can further include a plurality of function spaces in addition to the input controls. For example, the input interface can further include a text control. The text control can be a Label control. The text control is used to prompt the user to input a corresponding decision parameter in a corresponding input control. For another example, the input interface can further include a custom control, which can be a Button control. The custom control is used to prompt the user to create an input control corresponding to an added decision parameter in the input interface. For another example, the input interface can further include an edit control. The edit control can be a Text control. The edit control is used to provide the user with a text editing function. For example, the user can input a decision parameter in an input control based on the editing function of the edit control. For another example, the user can create an input control corresponding to an added decision parameter in a custom control based on the editing function of the edit control. For another example, the user can modify the related content of a text control based on the editing function of the edit control, and the like. The embodiments of the present application do not make specific limitations on the types, functions, and quantities of the controls included in the input interface.

[0069] S102: In response to the decision parameters input by the user in the input interface, determine the resource information corresponding to the at least one emergency resource.

[0070] In some embodiments, the user can input decision parameters in the input interface. In response to the decision parameters input by the user in the input interface, the resource information corresponding to the at least one emergency resource can be determined in the emergency resource database.

[0071] In some embodiments, the emergency resource database includes a preset number of types of emergency resources. For any type of emergency resource in the preset number of types of emergency resources, any type of emergency resource includes at least one emergency device. The types of emergency resources include at least one of emergency unloading resources, mechanical recycling resources, emergency spraying resources, contaminated oil storage and transportation resources, oil spill containment resources, and oil spill adsorption resources.

[0072] For example, the emergency resource database can include emergency unloading resources, mechanical recycling resources, emergency spraying resources, contaminated oil storage and transportation resources, oil spill containment resources, and oil spill adsorption resources. The emergency unloading resources can include 3 emergency unloading devices, the mechanical recycling resources can include 5 mechanical recycling devices, the emergency spraying resources can include 7 emergency spraying devices, the contaminated oil storage and transportation resources can include 2 contaminated oil storage and transportation devices, the oil spill containment resources can include 6 oil spill containment devices, and the oil spill adsorption resources can include 3 oil spill adsorption devices.

[0073] In some embodiments, the resource information can include price information, working performance information, and suitability information for various types of oil products of the corresponding emergency resources.

[0074] The price information of the emergency resource can include a purchase price of the emergency resource. The working performance information of the emergency resource can include a working performance parameter (e.g., maximum working duration, power consumption, working efficiency, etc.) of the emergency resource. The applicability information of the emergency resource to various types of oil can include an applicability of the emergency resource to at least one type of oil (e.g., the emergency resource is applicable to oil A but not applicable to oil B, etc.).

[0075] S103: Determine, based on the decision parameter and the resource information corresponding to the at least one emergency resource, that there is at least one resource configuration scheme.

[0076] For any one of the at least one resource configuration scheme, the any one resource configuration scheme includes at least one target emergency resource, and the target emergency resource is an emergency resource in the at least one emergency resource.

[0077] For example, based on the decision parameter and the resource information corresponding to the at least one emergency resource, it can be determined that there is a resource configuration scheme A. The resource configuration scheme A can include 3 emergency unloading devices, 1 mechanical recycling device, 2 oil storage and transportation devices, 2 emergency spraying devices, 3 oil spill containment devices, and 1 oil spill adsorption device. The device types of the emergency devices included in any type of emergency resource can be the same or different. For example, two of the 3 emergency unloading devices included in the resource configuration scheme A have the same device model. For another example, the 2 oil storage and transportation devices included in the resource configuration scheme A have different device models. For another example, the 3 oil spill containment devices included in the resource configuration scheme A have different device models.

[0078] In some embodiments, based on the decision parameter, a constraint condition can be generated. Based on the constraint condition and the resource information corresponding to the at least one emergency resource, it can be determined that there is at least one resource configuration scheme.

[0079] In some embodiments, in a case where it is determined that the decision parameter includes an emergency unloading processing parameter, a constraint condition that an expected emergency unloading processing parameter is greater than the emergency unloading processing parameter can be generated.

[0080] The expected emergency unloading processing parameter is associated with an emergency unloading capability of an emergency unloading resource included in the generated resource configuration scheme. The emergency unloading capability of the emergency unloading resource is associated with the working performance information of the emergency unloading resource and the applicability information of the emergency unloading resource to various types of oil.

[0081] In some embodiments, in a case where it is determined that the decision parameter includes a mechanical recycling processing parameter, a constraint condition that an expected mechanical recycling processing parameter is greater than the mechanical recycling processing parameter can be generated.

[0082] The expected mechanical recycling processing parameter is associated with a mechanical recycling capability of a mechanical recycling resource included in the generated resource configuration scheme. The mechanical recycling capability of the mechanical recycling resource is associated with working performance information of the mechanical recycling resource and applicability information of the mechanical recycling resource to various types of oil products.

[0083] In some embodiments, in a case where it is determined that the decision parameter includes the emergency spraying processing parameter, a constraint condition that the expected emergency spraying processing parameter is greater than the emergency spraying processing parameter can be generated.

[0084] The expected emergency spraying processing parameter is associated with an emergency spraying capability of an emergency spraying resource included in the generated resource configuration scheme. The emergency spraying capability of the emergency spraying resource is associated with working performance information of the emergency spraying resource and applicability information of the emergency spraying resource to various types of oil products.

[0085] In some embodiments, in a case where it is determined that the decision parameter includes the sludge storage and transportation processing parameter, a constraint condition that the expected sludge storage and transportation processing parameter is greater than the sludge storage and transportation processing parameter can be generated.

[0086] The expected sludge storage and transportation processing parameter is associated with a sludge storage and transportation capability of a sludge storage and transportation resource included in the generated resource configuration scheme. The sludge storage and transportation capability of the sludge storage and transportation resource is associated with working performance information of the sludge storage and transportation resource and applicability information of the sludge storage and transportation resource to various types of oil products.

[0087] In some embodiments, in a case where it is determined that the decision parameter includes the oil spill containment processing parameter, a constraint condition that the expected oil spill containment processing parameter is greater than the oil spill containment processing parameter can be generated.

[0088] The expected oil spill containment processing parameter is associated with an oil spill containment capability of an oil spill containment resource included in the generated resource configuration scheme. The oil spill containment capability of the oil spill containment resource is associated with working performance information of the oil spill containment resource and applicability information of the oil spill containment resource to various types of oil products.

[0089] In some embodiments, in a case where it is determined that the decision parameter includes the oil spill adsorption processing parameter, a constraint condition that the expected oil spill adsorption resource parameter is greater than the oil spill adsorption processing parameter can be generated.

[0090] The expected oil spill adsorption resource parameter is associated with an oil spill adsorption capability of an oil spill adsorption resource included in the generated resource configuration scheme. The oil spill adsorption capability of the oil spill adsorption resource is associated with working performance information of the oil spill adsorption resource and applicability information of the oil spill adsorption resource to various types of oil products.

[0091] In some embodiments, if it is determined that there is no resource allocation scheme based on the decision parameters and the resource information corresponding to the at least one emergency resource, second prompt information can be generated, and the second prompt information is used to prompt re-input of the decision parameters in the input interface.

[0092] For example, if it is determined that there is no resource allocation scheme based on the decision parameters input by the user in the input interface and the determined resource information corresponding to the at least one emergency resource, second prompt information can be generated. The second prompt information can exist in the form of a prompt box 301 to prompt the user to re-input the decision parameters in the input interface. Figure 3

[0093] S104: Obtain a cost value corresponding to each of the at least one resource allocation scheme.

[0094] In some embodiments, the cost value corresponding to each resource allocation scheme is determined based on price information of the at least one target emergency resource.

[0095] For example, if the resource allocation scheme A includes 3 emergency unloading devices, 1 mechanical recycling device, 2 oil storage and transportation devices, 2 emergency spraying devices, 3 oil spill containment devices, and 1 oil spill adsorption device, the cost value corresponding to the resource allocation scheme A is the total purchase price of the 3 emergency unloading devices, 1 mechanical recycling device, 2 oil storage and transportation devices, 2 emergency spraying devices, 3 oil spill containment devices, and 1 oil spill adsorption device.

[0096] S105: Determine the resource allocation scheme corresponding to the minimum cost value among the cost values as a target resource allocation scheme.

[0097] The present application can obtain the resource allocation scheme with the minimum cost value among the obtained resource allocation schemes as the optimal resource allocation scheme (also referred to as the target resource allocation scheme in the embodiments of the present application) for subsequent processing of the marine oil spill accident. In this case, even if an emergency resource fails or is damaged during the subsequent processing of the marine oil spill accident, the cost of the subsequent processing of the marine oil spill accident can be controlled to be minimum.

[0098] For example, if the following three resource allocation schemes are obtained, which are resource allocation scheme A, resource allocation scheme B, and resource allocation scheme C. Through calculation, if the cost value of the resource allocation scheme A is less than the cost value of the resource allocation scheme C, and the cost value of the resource allocation scheme B is less than the cost value of the resource allocation scheme A, that is, the cost value of the resource allocation scheme B is minimum among the resource allocation scheme A, the resource allocation scheme B, and the resource allocation scheme C, the resource allocation scheme B can be determined as the optimal resource allocation scheme.

[0099] S106: Generate first prompt information.​

[0100] The first prompt information is used to prompt the emergency resources included in the target resource configuration scheme to handle the marine oil spill accident.

[0101] In some embodiments, the first prompt information includes at least one of text prompt information, graphic prompt information, and sound prompt information.

[0102] For example, referring to Figure 4 , the first prompt information can be text information 401, and the first prompt information includes the type and quantity of each emergency resource included in the target resource configuration scheme.

[0103] In some embodiments, the user can input a resource configuration instruction for instructing the target resource configuration scheme to handle the marine oil spill accident based on the first prompt information. Then, in response to the resource configuration instruction input by the user, the marine oil spill accident can be handled based on the emergency resources included in the target resource configuration scheme.

[0104] In some embodiments, the resource configuration method for the marine oil spill emergency equipment warehouse provided by the present application can further perform the following steps S501-S506 before performing the above step S101, referring to Figure 5 .

[0105] S501: Obtain accident parameters.

[0106] The accident parameters can include seawater parameters (for example, seawater density parameters, etc.), sea surface environment parameters (for example, sea surface gas composition parameters, etc.), and transport ship parameters (for example, transport ship speed parameters, transport ship internal pressure parameters, transport ship weight parameters, etc.).

[0107] S502: Determine whether a marine oil spill accident occurs based on the accident parameters.

[0108] If it is determined that a marine oil spill accident occurs based on the accident parameters, the above step S101 can be continued, that is, the input interface is displayed.

[0109] If it is determined that a marine oil spill accident does not occur based on the accident parameters, the following step S503 can be continued.

[0110] If it is neither determined that a marine oil spill accident occurs nor determined that a marine oil spill accident does not occur based on the accident parameters, that is, it is unknown whether a marine oil spill accident occurs, the following step S504 can be continued.

[0111] S503: Store the obtained accident parameters and the decision that it is determined that a marine oil spill accident does not occur based on the obtained accident parameters in a decision memorandum.

[0112] Wherein, after the accident parameters obtained and the decision of no marine oil spill accident determined based on the accident parameters obtained are stored in the decision memorandum, if the same or similar accident parameters are obtained subsequently, it can be directly determined that no marine oil spill accident occurs, and the decision event of determining whether marine oil spill accident occurs can be improved.

[0113] S504: Scoring the environment around the transport ship based on the accident parameters and a preset environment scoring rule.

[0114] Wherein, the higher the environment score is, the lower the environmental pollution rate around the transport ship is, i.e. the smaller the possibility of marine oil spill accident is. The lower the environment score is, the higher the environmental pollution rate around the transport ship is, i.e. the larger the possibility of marine oil spill accident is. Therefore, whether marine oil spill accident occurs can be determined based on the environment score around the transport ship.

[0115] Wherein, the specific steps of determining whether marine oil spill accident occurs based on the environment score around the transport ship can continue to refer to the following steps S505 and S506.

[0116] S505: If the environment score is greater than a preset threshold, it is determined that no marine oil spill accident occurs.

[0117] In some embodiments, after step S505 is performed, step S503 described above can be continued to be performed, so that if the same or similar accident parameters are obtained subsequently, it can be directly determined that no marine oil spill accident occurs, and the decision event of determining whether marine oil spill accident occurs can be improved.

[0118] S506: If the environment score is less than a preset threshold, it is determined that marine oil spill accident occurs.

[0119] In some embodiments, after step S506 is performed, step S101 described above can be continued to be performed, i.e. the input interface is displayed. The user is prompted to input decision parameters in the input interface, and the optimal resource configuration scheme is formulated based on the decision parameters input by the user.

[0120] Next, a resource configuration method for a marine oil spill emergency equipment warehouse provided by the present application will be described in detail in combination with specific embodiments.

[0121] Step one: define the application interface.

[0122] Firstly, an input interface of 1200*600 pixels can be defined and displayed in the center, and the title of the input interface can be "Marine Oil Spill Emergency Equipment Warehouse-Emergency Disposal Equipment Configuration". The input interface is as shown in Figure 2 The input interface can include a plurality of input controls for supporting the user to input decision parameters.

[0123] Step two: obtaining the decision parameters input by the user

[0124] This stage can be implemented based on a defined "dataall" function. The "dataall" function can be used to obtain the decision parameters filled in by the user in the input control in the input interface. Different decision parameters can be defined by different characters. For example, "H" represents the comprehensive removal control capability parameter, "R" represents the emergency service radius parameter, "T" represents the maximum service time length parameter, "A" represents the emergency ship speed parameter, "B" represents the discharge pump rate parameter, and "P1", "P2", "P3", "P4", "P5", and "P6" can represent the emergency unloading treatment parameter, the mechanical recycling treatment parameter, the emergency spraying treatment parameter, the oil storage and transportation treatment parameter, the oil spill containment treatment parameter, and the oil spill adsorption treatment parameter, respectively.

[0125] Step three: obtaining the resource information corresponding to each emergency resource included in the emergency resource database

[0126] In this stage, the data obtained from the emergency resource database can be integrated in the following manner for subsequent calling.

[0127] A two-dimensional empty list with three elements and element values of 0 is created for each emergency resource included in the emergency resource database. The three elements are used to represent the price information, the working performance information, and the applicability information of each type of oil product corresponding to each emergency resource. Then, based on the resource information corresponding to each emergency resource included in the emergency resource database, the two-dimensional empty list created for each emergency resource is filled in.

[0128] In addition, based on the working performance information of the mechanical recycling resource and the oil storage and transportation resource, the ratio of the discharge time to the filling time of the oil storage and transportation equipment can be calculated.

[0129] Step four: determining the optimal resource allocation scheme

[0130] In this stage, the constraint conditions can be generated based on the decision parameters input by the user. Then, based on the generated constraint conditions and the resource information corresponding to each emergency resource included in the emergency resource database, each emergency resource included in the resource database can be combined with each other to obtain a resource allocation scheme that can satisfy the constraint conditions. (In the case where a resource allocation scheme that satisfies the constraint conditions cannot be obtained, the user can be prompted to re-input the decision parameters).

[0131] Then, the cost of each resource allocation scheme can be calculated, so that the resource allocation scheme with the lowest cost is determined as the optimal allocation scheme.

[0132] Step five: outputting the result

[0133] At this stage, the first prompt information can be generated based on the determined optimal configuration scheme. The first prompt information can be used to prompt the emergency resources included in the optimal resource configuration scheme to handle the marine oil spill accident. For example, the first prompt information can be text information, and the content of the first prompt information can be the model, type, quantity, name, and the like of each emergency resource included in the determined optimal resource configuration scheme.

[0134] In some embodiments, the present application also provides a resource configuration system, which can be used for Figure 6 The resource configuration system provided by the present application can include a data input module, an oil spill emergency disposal equipment database module, a verification data module, a solving module, and a result generation module.

[0135] The data input module can be used to display an input interface. The description of the input interface can be referred to the description in the foregoing embodiments, which is not limited herein.

[0136] The oil spill emergency disposal equipment database module can be used to determine the resource information corresponding to at least one emergency resource in response to the decision parameters input by the user on the input interface. The description of the decision parameters, the emergency resources, and the resource information corresponding to the emergency resources can be referred to the description in the foregoing embodiments, which is not limited herein.

[0137] The verification data module can be used to generate a second prompt information if it is determined that there is no resource configuration scheme based on the decision parameters and the resource information corresponding to the at least one emergency resource. The description of the second prompt information can be referred to the description in the foregoing embodiments, which is not limited herein.

[0138] The solving module can be used to obtain the cost value corresponding to each resource configuration scheme and determine the resource configuration scheme corresponding to the minimum cost value in the cost values as the target resource configuration scheme based on the decision parameters and the resource information corresponding to the at least one emergency resource if it is determined that there is at least one resource configuration scheme.

[0139] The description of obtaining the cost value corresponding to each resource configuration scheme can be referred to the description in the foregoing embodiments, which is not limited herein.

[0140] The result generation module can be used to generate the first prompt information. The description of the first prompt information can be referred to the description in the foregoing embodiments, which is not limited herein.

[0141] It can be seen that the resource configuration method for the offshore oil spill emergency equipment warehouse and the resource configuration system can quickly calculate the optimal resource configuration scheme for the offshore oil spill accident, help decision makers make quick response and disposal decisions, reduce the time delay of the offshore oil spill accident disposal, improve the emergency disposal efficiency of the pollution caused by the offshore oil spill accident, reduce the loss of the offshore oil spill accident, and protect the marine ecological environment.

[0142] In addition, the resource configuration method of the present application is different from the traditional resource configuration method of artificial experience and subjective judgment, and has scientific data and model support, so that the accuracy of the obtained resource configuration scheme is higher.

[0143] In addition, the present application considers the mutual cooperation between each emergency resource and the influence of the ability of each emergency resource on resource configuration, and can accurately configure each emergency resource.

[0144] In some schemes, multiple embodiments of the present application can be combined, and the combined scheme can be implemented. Optionally, some operations in the flow of each method embodiment are combined, and / or the order of some operations is optionally changed. In addition, the execution order between the steps of each flow is only exemplary, and does not constitute a limitation on the execution order between the steps, and other execution orders between the steps can also be used. It is not intended to indicate that the execution order is the only execution order in which the operations can be performed. Those skilled in the art can think of various ways to reorder the operations described herein. In addition, it should be pointed out that the process details related to some embodiments herein are also applicable in a similar manner to other embodiments, or different embodiments can be combined for use.

[0145] In addition, some steps in the method embodiment can be equivalently replaced by other possible steps. Alternatively, some steps in the method embodiment can be optional and can be deleted in some use scenarios. Alternatively, other possible steps can be added to the method embodiment. In addition, each method embodiment can be implemented individually or in combination.

[0146] Through the description of the above embodiments, those skilled in the art can clearly understand that, for the convenience and brevity of description, only the division of the above functional modules is taken as an example for illustration, and in actual application, the above functions can be completed by different functional modules according to needs, that is, the internal structure of the system is divided into different functional modules to complete all or part of the functions described above.

[0147] In several embodiments provided in the present application, it should be understood that the disclosed system and method can be implemented in other manners. For example, the division of the system embodiments described above is merely a logical function division, and there can be another division manner for the actual implementation. For example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed mutual couplings or direct couplings or communication connections between different units, or the among different units, can be indirect couplings or communication connections through some interfaces, and electrical, mechanical or other forms.

[0148] In addition, each function unit in the embodiments of the present application can be integrated into a processing unit, or each unit can exist physically independently, or two or more units can be integrated into one unit. The integrated unit can be implemented in the form of hardware, or in the form of a software function unit.

[0149] When the integrated unit is implemented in the form of a software function unit and sold or used as an independent product, it can be stored in a readable storage medium. Based on such an understanding, the technical solutions of the embodiments of the present application essentially, or the part that contributes to the prior art, or all or a part of the technical solutions can be embodied in the form of a software product. The software product is stored in a storage medium, and includes several instructions for causing an apparatus (which can be a single chip, a chip, etc.) or a processor to perform all or part of the steps of the methods described in the embodiments of the present application. The foregoing storage medium includes: a U disk, a mobile hard disk, a read only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and various other media that can store program codes.

[0150] The above is merely specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any change or replacement within the technical scope disclosed in the present application should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A resource configuration method for a marine oil spill emergency equipment warehouse, characterized in that, The method comprises the following steps: Step 1: obtaining accident parameters and performing step 21 or step 22; the accident parameters at least include seawater parameters, sea surface environment parameters, and transport ship parameters; Step 21: based on the accident parameters, if it is unable to determine whether a marine oil spill accident occurs, performing environmental scoring on the environment around the transport ship based on the accident parameters and preset environmental scoring rules, and in the case that the environmental score is less than a preset threshold, determining that a marine oil spill accident occurs and performing step 3; Step 22: based on the accident parameters, if it is determined that a marine oil spill accident occurs, performing step 3; Step 3: displaying an input interface; the input interface is used to receive decision parameters input by a user for the marine oil spill accident; the decision parameters are used to constrain the implementation effect of a resource allocation scheme generated for the marine oil spill accident; Step 4: determining resource information corresponding to at least one emergency resource in response to the decision parameters input by the user on the input interface; Step 5: generating a constraint condition based on the decision parameters; Step 6: determining that there is at least one resource allocation scheme based on the constraint condition and the resource information corresponding to the at least one emergency resource; for any one of the at least one resource allocation scheme, the any one resource allocation scheme comprises at least one target emergency resource; the target emergency resource is an emergency resource in the at least one emergency resource; Step 7: obtaining a cost value corresponding to each of the at least one resource allocation scheme; Step 8: determining a resource allocation scheme corresponding to a minimum cost value in the cost values as a target resource allocation scheme; Step 9: generating first prompt information; the first prompt information is used to prompt that the marine oil spill accident is processed based on the emergency resources included in the target resource allocation scheme; The decision parameters comprise: a comprehensive cleaning control capability parameter, which is associated with a rate of processing the marine oil spill accident; an emergency service radius parameter, which is associated with a range of processing the marine oil spill accident; a maximum working time length parameter, which is associated with a maximum working time length of each of the emergency resources participating in processing the marine oil spill accident; an emergency ship speed parameter, which is associated with a driving speed of a ship in which the marine oil spill accident occurs; a discharge pump rate parameter, which is associated with a rate of discharging seawater in the ship in which the marine oil spill accident occurs; an emergency unloading treatment parameter, which is associated with an emergency unloading capability of an emergency unloading resource; a mechanical recycling treatment parameter, which is associated with a mechanical recycling capability of a mechanical recycling resource; an emergency spraying treatment parameter, which is associated with an emergency spraying capability of an emergency spraying resource; a contaminated oil storage and transportation treatment parameter, which is associated with a contaminated oil storage and transportation capability of a contaminated oil storage and transportation resource; an oil spill containment treatment parameter, which is associated with an oil spill containment capability of an oil spill containment resource; an oil spill adsorption treatment parameter, which is associated with an oil spill adsorption capability of an oil spill adsorption resource; The constraint condition comprises: The expected emergency unloading processing parameter is greater than the emergency unloading processing parameter, the expected emergency unloading processing parameter is associated with the emergency unloading capability of the emergency unloading resource included in the generated resource configuration scheme, and the emergency unloading capability of the emergency unloading resource is associated with the working performance information of the emergency unloading resource and the applicable situation information of various types of oil products. The expected mechanical recycling processing parameter is greater than the mechanical recycling processing parameter, the expected mechanical recycling processing parameter is associated with the mechanical recycling capability of the mechanical recycling resource included in the generated resource configuration scheme, and the mechanical recycling capability of the mechanical recycling resource is associated with the working performance information of the mechanical recycling resource and the applicable situation information of various types of oil products. The expected emergency spraying processing parameter is greater than the emergency spraying processing parameter, the expected emergency spraying processing parameter is associated with the emergency spraying capability of the emergency spraying resource included in the generated resource configuration scheme, and the emergency spraying capability of the emergency spraying resource is associated with the working performance information of the emergency spraying resource and the applicable situation information of various types of oil products. The expected oil sludge storage and transportation processing parameter is greater than the oil sludge storage and transportation processing parameter, the expected oil sludge storage and transportation processing parameter is associated with the oil sludge storage and transportation capability of the oil sludge storage and transportation resource included in the generated resource configuration scheme, and the oil sludge storage and transportation capability of the oil sludge storage and transportation resource is associated with the working performance information of the oil sludge storage and transportation resource and the applicable situation information of various types of oil products. The expected oil spill containment processing parameter is greater than the oil spill containment processing parameter, the expected oil spill containment processing parameter is associated with the oil spill containment capability of the oil spill containment resource included in the generated resource configuration scheme, and the oil spill containment capability of the oil spill containment resource is associated with the working performance information of the oil spill containment resource and the applicable situation information of various types of oil products. The expected oil spill adsorption resource parameter is greater than the oil spill adsorption processing parameter, the expected oil spill adsorption resource parameter is associated with the oil spill adsorption capability of the oil spill adsorption resource included in the generated resource configuration scheme, and the oil spill adsorption capability of the oil spill adsorption resource is associated with the working performance information of the oil spill adsorption resource and the applicable situation information of various types of oil products.

2. The method of claim 1, wherein, The resource information corresponding to the at least one emergency resource is determined in response to the decision parameter input by the user in the input interface, including: The resource information corresponding to the at least one emergency resource is determined in the emergency resource database in response to the decision parameter input by the user in the input interface; The emergency resource database includes a preset number of types of emergency resources, and each type of emergency resource includes at least one emergency device; the types of emergency resources include at least one of emergency unloading resources, mechanical recycling resources, emergency spraying resources, oil sludge storage and transportation resources, oil spill containment resources, and oil spill adsorption resources.

3. The method of claim 2, wherein, The resource information includes price information, working performance information, and applicable situation information of various types of oil products corresponding to the emergency resource.

4. The method of claim 3, wherein, After the response to the decision parameter input by the user in the input interface, the method further comprises: Based on the decision parameter and the resource information corresponding to the at least one emergency resource, it is determined that there is no resource configuration scheme; Generate second prompt information; the second prompt information is used to prompt the re-input of the decision parameter in the input interface.

5. The method of claim 4, wherein, The cost value corresponding to each of the at least one resource configuration scheme comprises: Based on the price information of the at least one target emergency resource, the cost value corresponding to the resource configuration scheme is determined.

6. The method of claim 5, wherein, The first prompt information comprises at least one of text prompt information, graphic prompt information and sound prompt information.

7. The method of claim 6, wherein, After the first prompt information is generated, the method further comprises: In response to the input resource configuration instruction, the offshore oil spill accident is processed based on the target resource configuration scheme.

Citation Information

Patent Citations

  • Multi-objective combined optimal configuration method of offshore oil spill accident emergency disposal system

    CN110188960A