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2 The Hazard Rectification The hazard rectification includes the information's identification and information audit after rectification. The hazard rectification will start immediately when the audit is qualified. The leader of the restrict team in responsibility, as a man in charge of the hazard rectification, will link the corresponding hazards automatically, and he should take a corrective action and rectification deadline, and audit the parts of the relevant rectification information. The rectification information will be input into the system when its audit is qualified, as to the information that the relevant departments and the restrict teams have completed the rectification. Additionally, the safety supervision department will make a check in person, the hazard rectification will be completed once the check is passed, otherwise, the unqualified hazard rectification is invalid and the man in charge of the hazard rectification must take a new and effective corrective action again and again until the check is qualified. In a software system, the system will select different early warning signals to warn the uncorrected hazard information in the system platform according to the different hazard grade, warning the man in charge of the hazard rectification of the uncorrected hazard information which should be handled in time. In this way, it is possible to prevent any hazards being out of control and reduce or avoid the loss caused by the hazard.
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3 Assessment Process Assessment process starts while examining the hazard and confirms the fine type, fine property, fine content and fines according to the fine code implemented uniformly. Meanwhile, it should also ensure the information of those responsible and their departments. The safety supervision department, whose job is to audit the hazard information and supervise the responsible to pay the fine within the deadline, will input the information that has passed the audits into the system.
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4 The Hazard Data Analysis The archived data can be queried by multi-conditions combination and generate varieties of reports and cognitive charts. This function module is opened for all users (departments can only query their own relevant hazard information).
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Conclusion The system aims at making the hazard information management more rapidly and more effectively in order to achieve the goal of risk control. The closed-loop coal mine hazard information management system has been designed by using . NET and Web Service, the object-oriented technique, the database technology, etc. The system has made a significant difference, for example, it has changed the manual management mode of the hazard information, increased the flexibility of the hazard information and improved the hazard data sharing and backup in different places. Overall, it provides an easier, safer, more extensible, more advanced way for coal mine safety in production. References.
DOI: 10.4028/www.scientific.net/amr.765-767.945
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