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作 者:谢宏[1] 张元 XIE Hong;ZHANG Yuan(North China Institute of Science and Technology,Yanjiao,065201,China)
出 处:《华北科技学院学报》2022年第4期83-88,共6页Journal of North China Institute of Science and Technology
摘 要:近年瓦斯综合治理体系的研究和建设同步推进,取得了一些进展。回溯瓦斯综合治理体系研究的重要时间节点和事件,可以发现,研究的逻辑起点尚存在较多值得商榷的地方。研究表明:(1)瓦斯综合治理体系研究的逻辑起点是瓦斯综合治理能力,瓦斯综合治理体系建设是以瓦斯综合治理能力为核心的建设;(2)瓦斯综合治理体系涵盖瓦斯灾害风险评价和针对性的综合干预措施两个模块;(3)建立瓦斯综合治理能力与风险评价、干预程度之间的概念模型、结构模型、数理模型、计算机仿真模型,是体系理论研究的必由之路;(4)系统动力学在解决这一问题时,可以发挥其动态、多变量、非线性、具备反馈功能的优势,引入安全生产指数为目标函数SD建模,动态衡量矿井瓦斯灾害风险的可控程度,实时发现要素管理重点,促进瓦斯综合治理。In recent years,the research and construction of gas comprehensive control system have been pushed forward simultaneously,and some progress has been made.Looking back to the important time nodes and events in the study of gas comprehensive control system,it can be found that the logical starting point of the study is still open to question.The results show that:(1)the logical starting point of the study of gas comprehensive control system is the gas comprehensive control ability,and the construction of gas comprehensive control system is based on the gas comprehensive control ability;(2)the gas comprehensive control system includes two modules:gas disaster risk assessment and targeted comprehensive intervention measures;(3)establishing the conceptual model,structural model,mathematical model and computer simulation model between gas comprehensive control ability,risk evaluation and intervention degree is the only way for study the system theory;(4)in solving this problem,the system dynamics can take advantage of its dynamic,multi-variable,non-linear,feedback function,and the safety production index is introduced as the objective function of SD modeling to dynamically measure controllable degree of mine gas disaster risk,the key elements of management is found in real time,and promote gas comprehensive control.
关 键 词:瓦斯综合治理体系 瓦斯灾害风险评价 瓦斯综合治理能力 系统动力学
分 类 号:TD713[矿业工程—矿井通风与安全]
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