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矿井突水平行应急管理理论和方法基础研究
引用本文:冯治东,王桃,顾清华,卢才武,李瑞华,白鱼秀. 矿井突水平行应急管理理论和方法基础研究[J]. 系统工程理论与实践, 2017, 37(12): 3289-3296. DOI: 10.12011/1000-6788(2017)12-3289-08
作者姓名:冯治东  王桃  顾清华  卢才武  李瑞华  白鱼秀
作者单位:1. 榆林学院 信息工程学院, 榆林 719000;2. 西安建筑科技大学 管理学院, 西安 710055;3. 西安建筑科技大学 华清学院, 西安 710043
基金项目:国家自然科学青年基金(51404182);陕西省教育厅专项科研计划项目(16JK1896)
摘    要:研究了基于ACP理论的矿井突水平行应急管理理论和方法基础,应对矿井突水应急管理问题,达到有效协同和集成化管控效果.在分析矿井突水系统的边界和内涵基础上构建人工矿井突水系统,以4D时空管理为导向讨论了基于人工系统的突水计算实验问题,并从常态下的突水感知和非常态下的计算实验式自动化预案及数字广播式的指令下发两个方面,研究探讨了矿井突水平行应急管理中的平行执行问题.矿井突水平行应急管理是以"认识自然、理解自然、利用自然和改造自然"为目的,通过人工系统直接影响或改变实际矿井现场的运行方向,为矿井突水安全管理提供可行的集成化管控支持.

关 键 词:矿井突水  平行系统  平行应急管理  4D计算  
收稿时间:2016-06-16

Study on parallel emergency management method for mine water inrush
FENG Zhidong,WANG Tao,GU Qinghua,LU Caiwu,LI Ruihua,BAI Yuxiu. Study on parallel emergency management method for mine water inrush[J]. Systems Engineering —Theory & Practice, 2017, 37(12): 3289-3296. DOI: 10.12011/1000-6788(2017)12-3289-08
Authors:FENG Zhidong  WANG Tao  GU Qinghua  LU Caiwu  LI Ruihua  BAI Yuxiu
Affiliation:1. School of Information Engineering, Yulin University, Yulin 719000, China;2. School of Management, Xi'an University of Architecture & Technology, Xi'an 710055, China;3. Huaqing College, Xi'an University of Architecture & Technology, Xi'an 710043, China
Abstract:A parallel emergency management method is put forward, in order to solve the problem of emergency management of mine water inrush. The artificial model of mine water inrush system is constructed by making the main elements of mine water inrush system as mapping objects based on multi-agent system. Water inrush computational experiment is studied by 4D management in the orient. Based on the two aspects of the water inrush perception in normal state and the experimental auto emergency plan, the parallel execution of system is discussed. The method can directly affect or change the actual system by artificial system, so it is the concept of awareness and understanding of nature, and use or changing the nature. It can provide feasible integrated management and control for mine water inrush safety management.
Keywords:mine water inrush  parallel system  parallel emergency management  4D calculation  
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