基于区域划分和主要影响因素识别的危险高能地震事件判别方法:案例研究

Yaoqi Liu, Anye Cao, Qiang Wang, Geng Li, Xu Yang, Changbin Wang
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引用次数: 0

摘要

风险因素调查已被确定为岩爆日常管理的一个重要方面。然而,在进行动态风险管理时,主要影响因素的识别方法以及地震能量与其他震源参数之间关系的研究尚未得到广泛探索。本研究旨在量化影响风险因素,判别危险的高能地震事件。根据岩土工程数据和长壁面板近两个月的地震数据,利用层次分析法(AHP)和熵权法(EWM)确定主要控制因素。此外,还系统分析了震源参数之间的分布规律和相关关系。结果表明,煤深、煤层厚度、煤倾角和开采速度的影响覆盖了整个开采过程,而断层只在局部地区表现突出。地震能量与其他震源参数之间存在不同程度的对数正相关关系,这种正相关关系在危险的高能地震事件中更为明显。利用地震能量与其他震源参数的线性对数关系,结合动态风险的影响权重,提出了评价高能地震事件的综合能量指数。通过与基于能量标准的高能地震事件进行比较,证明综合能量指数识别方法更为准确。此外,还归纳了该方法的局限性和改进之处,以获得广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hazardous High-Energy Seismic Event Discrimination Method Based on Region Division and Identification of Main Impact Factors: A Case Study
An investigation of risk factors has been identified as a crucial aspect of the routine management of rockburst. However, the identification methods for principal impact factors and the examination of the relationship between seismic energy and other source parameters have not been extensively explored to conduct dynamic risk management. This study aims to quantify impact risk factors and discriminate hazardous high-energy seismic events. The analytic hierarchy process (AHP) and entropy weight method (EWM) are utilized to ascertain the primary control factors based on geotechnical data and nearly two months of seismic data from a longwall panel. Furthermore, the distribution law and correlation relationship among seismic source parameters are systematically analyzed. Results show that the effect of coal depth, coal seam thickness, coal dip, and mining speed covers the entire mining process, while the fault is only prominent in localized areas. There are varying degrees of log-positive correlations between seismic energy and other source parameters, and this positive correlation is more pronounced for hazardous high-energy seismic events. Utilizing the linear logarithmic relationship between seismic energy and other source parameters, along with the impact weights of dynamic risks, the comprehensive energy index for evaluating high-energy seismic events is proposed. The comprehensive energy index identification method proves to be more accurate by comparing with the high-energy seismic events based on energy criteria. The limitations and improvements of this method are also synthesized to obtaining a wide range of applications.
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