关于空间时间连续信息的研究 在采矿和综合安全保证系统期间对超负荷压缩拉伸应变过渡区的空间时间连续信息感知
Gang Cheng1,2,3,4, Ziyi Wang1, Bin Shi2
1School of Computer Science, North China Institute of Science and Technology, Beijing 101601, China.
Sensors (Basel, Switzerland)
|September 14, 2024
概括
这项研究引入了一种新的时空连续传感技术,用于监测地下煤矿对上层层的影响. 该方法解决了当前不连续监测的局限性,改善了采矿业务的安全性和风险评估.
科学领域:
- 地质技术工程 地质技术工程
- 采矿工程 采矿工程 采矿工程
- 地质物理学 地质物理学
背景情况:
- 地下煤炭开采导致地面运动,裂和沉降.
- 现有的监控技术往往是不连续的,缺乏实时数据.
- 超负荷变形中的时间滞后效应使安全评估复杂化.
研究的目的:
- 开发用于超负荷变形的时空连续传感技术.
- 分析压缩-拉伸应变过渡区的变形和故障机制.
- 建议为煤层采矿提供综合安全保证系统.
主要方法:
- 在现场观察技术的比较分析 (调查,遥感,测试,勘探,监测).
- 基于时空连续性的变形和故障感知技术的开发.
- 详细介绍分布式光纤传感 (DFOS) 用于超负荷变形感知.
主要成果:
- 提出了一种基于时空连续性的新型变形和故障感知技术.
- 总结了超负荷压缩-拉伸应变过渡区的演变特征和故障机制.
- 采用DFOS的集成煤层采矿超负荷安全保证系统进行了介绍.
结论:
- 拟议的基于DFOS的技术提供实时,连续的时空信息,关于超负荷变形.
- 这项技术增强了对超负荷变形机制和矿山沉降的理解.
- 这些发现为采矿强度设计,风险管理和生态恢复提供了关键指导.
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