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基于InSAR技术的矿区地质灾害识别与监测

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随着 InSAR技术的不断发展,其在矿山地质灾害勘查中的应用范围和效果都有了明显的提高.利用这种方法,可对大范围的连续形变进行跟踪监测,帮助识别和测量区域内的地质灾害.此外,与高分辨光学遥感资料相结合,对孕灾地质环境及矿山地质灾害体进行初步解释,主要形变区域及矿山地质灾害隐患的类型,范围及变形趋势的圈定.为矿山地质灾害危险性的研究和评估奠定了基础.基于此,该文章主要针对矿区地质灾害识别和监测工作进行了分析,并且探讨了InSAR技术在应用过程中所起到的作用和效果,同时还提出了相应的意见和建议,希望能给有关人员带来帮助和参考.
Identification and Monitoring of Geological Hazards in Mining Areas Based on InSAR Technology
With the continuous development of InSAR technology,its application scope and effectiveness in mining geological hazard exploration have been significantly improved.By using this method,it is possible to track and monitor large-scale continuous deformation,helping to identify and measure geological hazards within the area.In addition,combined with high-resolution optical remote sensing data,a preliminary interpretation of the geological environment and mining geological hazards,as well as the delineation of the main deformation areas and the types,ranges,and deformation trends of mining geological hazards,will be conducted.This has laid the foundation for the research and assessment of geological hazards in mines.In this context,the article mainly analyzes the identification and monitoring of geological hazards in mining areas,and explores the role and effectiveness of InSAR technology in the application process.At the same time,corresponding opinions and suggestions are also proposed,hoping to provide assistance and reference for relevant personnel.

geological hazards in mining areasInSAR deformation monitoringInvestigation and Prevention

张伟、刘宏韬、金明煜

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中水北方勘测设计研究有限责任公司,天津 300222

矿区地质灾害 InSAR变形监测 调查防治

2024

世界有色金属
有色金属技术经济研究院

世界有色金属

影响因子:0.138
ISSN:1002-5065
年,卷(期):2024.(17)