Improved fault tree analysis process for environment risk evaluation

A technology of environmental risk and fault tree, applied in the field of environmental risk assessment, can solve problems such as inability to conduct quantitative analysis, and achieve the effect of ensuring scientificity

Inactive Publication Date: 2009-07-08
卜全民
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  • Abstract
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  • Application Information

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Problems solved by technology

This method only sets two possibilities of "0" and "1" for the state of any event in the fault tree, or in other words, it uses the "either-or" thinking method; 2) According to the decomposition of the fault tree It is true that some minimal cut sets can lead to "results" from "causes", but this is only a qualitative conclusion and cannot be analyzed quantitatively (Vaurio, J.K.. Fault tree analysis of phased mission systems with repairable and non-repairable components[J ]. Reliability Engineering and System Safety, 2001, 74(2): 169-180)
Therefore, the analysi

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  • Improved fault tree analysis process for environment risk evaluation
  • Improved fault tree analysis process for environment risk evaluation
  • Improved fault tree analysis process for environment risk evaluation

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Embodiment 1

[0025] When using the fault tree analysis method to evaluate the environmental risk caused by the leakage of highly toxic substances such as dichlorvos technical caused by the explosion accident of the synthetic dichlorvos technical reactor unit of Nantong Jiangshan Pesticide Chemical Co., Ltd., the synthesis The causal event of "corrosion and erosion" in the explosion accident of dichlorvos technical reactor was taken as an example for analysis and application. Let x2 (the value of corrosion and erosion events) be treated as variables, and the other basic events xi take the value of 0.40, adopt the weighted average method, and set TC = 0.45, the following results can be obtained, as figure 1 shown.

[0026] In the same corrosion and erosion medium environment, the following five coupon tests of different materials were carried out (the corrosion time and sample size were the same), and the coupon corrosion results are shown in Table 1:

[0027] Table 1 Corrosion results of ...

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Abstract

The invention discloses an improved fault tree analysis method for environmental risk evaluation. The improved fault tree analysis method is characterized in that membership degree set method is introduced into the fault tree analysis; and a weighted average method is adopted to calculate the membership degree of the upper level event according to the membership degree of the lower level event without erasing the value or contribute of any factor. During environmental risk evaluation, the method can overcome 'this or that' disadvantages of the prior fault tree analysis method to achieve scientific environmental risk evaluation method and ensure scientific and reasonable results, thereby more effectively performing the functions of environmental risk prediction and fault prevention of the environmental risk evaluation.

Description

technical field [0001] The invention belongs to the technical field of environmental risk assessment, and in particular relates to an improved fault tree analysis method for environmental risk assessment. Background technique [0002] With the rapid development of the global economy, various sudden environmental risk accidents have occurred, such as the explosion accident of the Pabor pesticide plant in India in 1984, the leakage of the Chernobyl nuclear power plant in 1986, and the Jilin Songhua accident in my country in 2005. River pollution and Guangdong Beijiang cadmium pollution incidents have caused serious harm to human health and the ecological environment. Therefore, people are paying more and more attention to preventing environmental risks from the source, evaluating the possibility and consequences of environmental risk events, and thus proposing rationalized programs or measures to reduce environmental risks. It can be seen that environmental risk assessment is ...

Claims

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Application Information

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IPC IPC(8): G06Q10/00G01N17/00G06Q10/04
Inventor 卜全民
Owner 卜全民
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