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Dynamic simulation for the process of mining subsidence based on cellular automata model

机译:基于蜂窝自动机模型的矿业沉降过程动态仿真

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摘要

Under the background of the ecological civilization era, rapidly obtaining coal mining information, timely assessing the ecological environmental impacts, and drafting different management and protection measures in advance to enhance the capacity of green mine construction have become the urgent technical problems to be solved at present. Simulating and analyzing mining subsidence is the foundation for a land reclamation plan. The Cellular Automata (CA) model provides a new tool for simulating the evolution of mining subsidence. This paper takes a mine in East China as a research area, analyses the methods and measures for developing a model of mining subsidence based on the theories of CA and mining technology, then discusses the results of simulation from different aspects. Through comparative analysis, it can be found that the predicted result is well consonant with the observation data. The CA model can simulate complex systems. The system of mining subsidence evolution CA is developed with the support of ArcGIS and Python, which can help to realize data management, visualization, and spatial analysis. The dynamic evolution of subsidence provides a basis for constructing a reclamation program. The research results show that the research methods and techniques adopted in this paper are feasible for the dynamic mining subsidence, and the work will continue to do in the future to help the construction of ecological civilization in mining areas.
机译:在生态文明时代的背景下,迅速获取煤炭挖掘信息,及时评估生态环境影响,并提前起草不同的管理和保护措施,提升绿色矿山建设的能力已成为目前亟待解决的迫切技术问题。模拟和分析采矿沉降是土地回收计划的基础。蜂窝自动机(CA)模型为模拟采矿沉降的演变提供了一种新工具。本文将东部地雷作为研究领域,分析了基于CA和采矿技术理论开发矿业沉降模型的方法和措施,然后讨论了不同方面的模拟结果。通过比较分析,可以发现预测结果与观察数据很好辅音。 CA模型可以模拟复杂系统。采用矿区沉降系统的系统是通过ArcGIS和Python的支持开发的,这有助于实现数据管理,可视化和空间分析。沉降的动态演变为构建填海计划提供了基础。研究结果表明,本文采用的研究方法和技术对于动态采矿押业是可行的,未来工作将继续在矿区建设生态文明。

著录项

  • 作者

    Qiuji Chen; Jiye Li; Enke Hou;

  • 作者单位
  • 年度 2020
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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