煤炭地质学“十三五”主要进展及展望

The main progress in the 13th five-year plan and the prospect of coal geology

  • 摘要: 在简要分析煤炭地质学演变的基础上,重点回顾了“十三五”期间学科在基础理论研究、地质保障技术、煤岩检测技术方面的主要进展,同时指出面临的主要问题和未来一段时期的学科发展方向。认为“十四五”乃至更长一段时间内,煤炭地质学应围绕“提供充足绿色煤炭”和“减轻煤矿地质灾害”的煤炭工业发展目标,以攻克煤炭绿色勘查、精准智能开采和清洁高效利用中的关键地质理论和技术瓶颈为突破口,聚焦以下方面开展研究:①煤系矿产资源共伴生规律、协同勘探技术与开发地质条件精准评价方法;②智能物探仪器和钻探装备研制;③煤层中断层属性的叠前地震反演技术,槽波地震联合勘探技术、槽波雷达探测技术、高密度电法勘探技术的创新试验;④孔中、孔间、孔-巷、巷-巷等多方式立体探测与精细解释技术;⑤工作面煤/岩界面识别的多参数综合成像技术;⑥采动应力耦合叠加效应下煤矿动力地质灾害演化机理与微震监测和视电阻率法动态预警技术;⑦多源异构地质地理信息的深度融合与动态地质建模技术。

     

    Abstract: Based on the brief analysis the evolution of "coal geology", the main progress of discipline in basic theoretical research, geological guarantee technology, coal and rock detection during the 13th five-year Plan period is reviewed emphatically, meanwhile the main problems faced and the development direction in the 14th five-year plan period and even a longer period of time are pointed out. It is considered that coal geology should around the development goals of coal industry of "providing sufficient green coal" and "reducing geological disasters in coal mine", taking the key geological theories and technical bottlenecks in green coal exploration, precise intelligent mining and clean and efficient utilization as breakthroughs in the future, the research work should focus on:① Symbiosis law, collaborative exploration technology and accurate evaluation method of development geological conditions of coal measures mineral resources; ② Development of intelligent geophysical prospecting instrument and intelligent drilling equipment; ③ Innovative experiment to detect coal seam fault attributes by pre-stack seismic inversion technology, joint exploration technology of channel wave seismic, channel wave radar detection technology, high density electrical exploration technology; ④ Multi-mode stereo detection and fine interpretation technology of in-borehole, between-borehole, roadway-borehole and between roadway; ⑤ Multi-parameter synthetic imaging technology for coal/rock interface recognition in working face; ⑥ Evolution mechanism of coal mine dynamic geological disaster under coupling superposition effect of mining stress, micro seismic monitoring and dynamic early warning by apparent resistivity method; ⑦ Depth fusion and dynamic geological modeling of multi-source heterogeneous geological and geographic information.

     

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