Real-time situation model and visual fusion decision method and system

A decision-making method and decision-making system technology, applied in the field of decision-making methods and systems integrating real-time situation models and visualization, can solve problems such as inability to accurately simulate accident development trends, inability to conduct visual research and judgment, and inability to truly reflect accident site environmental conditions, etc. It is convenient to quickly carry out rescue, reduce the time of research and judgment, and realize the effect of perceptual analysis and processing

Inactive Publication Date: 2016-08-10
SHANGHAI ADVANCED RES INST CHINESE ACADEMY OF SCI
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  • Application Information

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Problems solved by technology

[0006] In view of the shortcomings of the prior art described above, the purpose of the present invention is to provide a decision-making method and system for the fusion of real-time situational models and visualizations, which is used to solve the problem that the real-time situational models established by the prior art cannot truly reflect the environmental conditions of the accident site. , the development trend of the accident cannot be accurately simulated, and the problem of visual research and judgment cannot be carried out

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  • Real-time situation model and visual fusion decision method and system

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Embodiment 1

[0043] This embodiment discloses a decision-making method based on real-time situation model and visualization fusion of flow parameters, which integrates real-time dynamic weather sensing information, static topography, emergency resources, routes, and population information to participate in visual emergency response. Rescue command decision-making process, such as figure 1 shown, including:

[0044] Step S11, collecting on-site environmental data of the hazardous chemical leakage accident, performing streaming processing on the collected on-site environmental data, and sending the processed on-site environmental data to the command center:

[0045] At the accident site of hazardous chemicals: connect to the meteorological instrument and sensors at the accident site through RJ45 or WIFI, and collect the on-site environmental data in real time, wherein the on-site environmental data includes wind speed, wind direction, temperature, air pressure, concentration of hazardous che...

Embodiment 2

[0064] This embodiment discloses a decision system based on the fusion of real-time situation model and visualization of flow parameters, which is applied to the rescue of hazardous chemical leakage accidents. like Figure 4 As shown, the real-time situation model and visualization fusion decision-making system 400 of this embodiment includes an acquisition unit 410, a processing unit 420, a data sending unit 430, a receiving unit 440, a restoration unit 450, a calculation unit 460, a simulation unit 470, and a prediction unit 480 and evaluation unit 490 .

[0065] Rescue for hazardous chemical leakage accidents is issued through the command center 600 .

[0066] The acquisition unit 410 , the processing unit 420 and the data sending unit 430 of the decision-making system 400 implementing situational model and visualization fusion in this embodiment are located at the side of the accident scene 500 . The real-time collection and transmission of the scene environment data of ...

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Abstract

The invention provides a real-time situation model and visual fusion decision method which is applicable to rescue for leakage accidents of hazardous chemical substances. The method comprises the following steps: field environment data of a hazardous chemical substance accident is collected, fluidized and sent to a command center; the command center de-fluidizes the received data to restore the field environment data; the leakage rate of source intensity is calculated; a real-time situation is simulated according to the leakage rate of source intensity, the field environment data and accident terrain data; concentration points of grid computing are used to carry out triangulation difference calculation on the result of situation simulation, the spread movement track of different dangerous areas is rendered according to color gradient, and the maximum accident influence scope is predicted; and the population density in the maximum accident influence scope is calculated, and an optimal rescue evacuation path is evaluated out. The disadvantages of a static data model and the real-time transmission problem caused by shortage of bandwidth resources are overcome, and the accuracy, effectiveness and level of intelligence of emergency rescue are improved effectively.

Description

technical field [0001] The invention relates to an emergency treatment technology for sudden accidents, in particular to a decision-making method and system based on flow parameter-based real-time situation model and visualization fusion. Background technique [0002] Many process industries use or produce some hazardous chemicals that are harmful to the human body during the production process, especially toxic and harmful gases or liquids. Once the leakage of hazardous chemicals occurs, the leaked hazardous chemicals may cause serious harm to humans within a certain range. When a hazardous chemical leakage accident occurs, the leaked substance and the approximate location of the leak can be relatively easily determined, but it is difficult to obtain the leakage rate or leakage rate of the hazardous gas on site. It is an important part of the accident emergency response process to predict the diffusion trend and influence range of hazardous chemicals with limited informati...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06Q10/04
Inventor 魏建明徐俊刘道明徐正蓺张浩
Owner SHANGHAI ADVANCED RES INST CHINESE ACADEMY OF SCI
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