基于系统工程的透明矿井构建技术与应用实践

Construction technology and application practice of transparent mines based on systems engineering

  • 摘要: 针对煤矿智能化高速发展对透明矿井的迫切需求,阐明了科学构建透明矿井技术体系的必要性。从理论层面诠释了透明矿井、地质保障以及透明地质的内涵与技术特征,论述了透明矿井与透明地质之间相互依存、相互协同的关系。创新性的应用系统工程理论中的V模型思想,以透明矿井建设中的地质数据需求分析、地质模型分析评价、应用场景验证为主线,提出了以数据驱动、模型表达、场景应用为核心的多层级关联耦合的透明矿井系统工程技术体系架构。探讨了透明矿井技术体系架构实现的4大关键技术:多源巷−孔探测技术体系、多源异构数据融合、面向工程应用的动态地质模型更新和透明矿井实用场景构建。针对地质信息透明化探测的需求,研究了多源巷−孔探测技术体系中随掘地震实时探测、随采地震实时探测、定向长钻孔综合探测为核心技术手段的工作原理和数据处理流程;给出了一种融合物探、钻探、地质、工程等矿井数据的融合处理方法,实现对矿井多源异构空间地质数据的融合处理;为解决透明矿井应用场景支撑弱的难题,研发了涵盖采掘工作面地质透明化、隐蔽灾害地质透明化和工作面超前地质预测预报透明矿井实用场景关键技术体系,实现了透明矿井地质保障与生产业务场景的深度融合。通过对不同矿区3级透明地质保障系统构建、快速解决探掘协同平台、随采智能规划截割和超前立体预测预报4个方面的工程实践,进一步验证了系统理论具有较好的实践意义。

     

    Abstract: In response to the urgent demand for transparent mines in the rapid development of intelligent coal mines, the necessity of scientifically constructing a transparent mine technology system has been elucidated. From a theoretical perspective, the connotation and technical characteristics of transparent mines, geological security, and transparent geology are explained, and the interdependent and collaborative relationship between transparent mines and transparent geology is discussed. V model idea in innovative application systems engineering theory is proposed, which focuses on the analysis of geological data requirements, geological model analysis and evaluation, and application scenario verification in transparent mine construction. It proposes a multi-level interconnected and coupled transparent mine system engineering technology architecture with data-driven, model expression, and scenario application as the core. Four key technologies for implementing the architecture of transparent mine technology system were discussed: multi-source tunnel hole detection technology system, multi-source heterogeneous data fusion, dynamic geological model update for engineering applications, and construction of practical scenarios for transparent mines. In response to the demand for transparent detection of geological information, the working principle and data processing flow of real-time seismic detection during excavation, real-time seismic detection during mining, and comprehensive detection of directional long boreholes in the multi-source tunnel hole detection technology system were studied as the core technical means; A fusion processing method for mining data, including geophysical exploration, drilling, geology, and engineering, has been proposed to achieve the fusion processing of multi-source heterogeneous spatial geological data in mines; To solve the problem of weak support for transparent mine application scenarios, a key technology system covering geological transparency of mining faces, geological transparency of hidden disasters, and advanced geological prediction and forecasting of working faces for transparent mine practical scenarios has been developed, achieving a deep integration of geological support and production business scenarios for transparent mines. Through the engineering practice of constructing a three-level transparent geological guarantee system for different mining areas, quickly solving exploration and excavation collaborative platforms, intelligent planning and cutting during mining, and advanced three-dimensional prediction and forecasting, the theoretical significance of the system has been further verified.

     

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