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A framework for human error risk analysis of coal mine emergency evacuation in China
Institution:1. Safety and Security Science Group, Faculty of Technology, Policy and Management, TU Delft, Delft, the Netherlands;2. Faculty of Applied Economics, Antwerp Research Group on Safety and Security (ARGoSS), University Antwerp, Antwerp, Belgium;3. CEDON, KULeuven, Campus Brussels, Brussels, Belgium;4. School of Occupational and Public Health, Ryerson University, Toronto, Canada;1. State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei 230026, China;2. Electric Power Research Institute, State Grid Anhui Electric Power Co., Ltd., Hefei 230601, China
Abstract:Evacuation from underground coal mine in emergency as soon as possible makes the difference between life and death. Human factors have an important impact on a successful evacuation, but literature review shows that there is a lack of consideration of human error risk during coal mine emergency evacuation in China. To address the above problems, in this paper, we established a framework for human error risk analysis of coal mine emergency evacuation, consisting of scenario and task analysis, risk assessment and risk reduction. A general evacuation procedure which is applicable for different causes is detailed through the scenario and task analysis. A new method based on expert judgment, named OGI-Model, is proposed to evaluate the reliability of human safety barrier. In this new approach, human safety barrier is divided into three sub-barriers, i.e., organization safety sub-barrier (OSSB), group safety sub-barrier (GSSB), and individual safety sub-barrier (ISSB). Each sub-barrier consists of a series of concrete measures against specific evacuation actions. An example is provided in this paper to demonstrate the use of this framework and its effectiveness.
Keywords:Coal mine emergency evacuation  Human factors  Human error  Risk analysis  Safety barriers
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