多煤层开采中的地震能量衰减特征及岩爆预警方法研究

IF 3.5 3区 工程技术 Q3 ENERGY & FUELS
Hongwei Mu, Yongliang Zhang, Mingzhong Gao, Quanlin Zhu, Jingbo Li, Jinfeng Cao, Wentao Fan
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引用次数: 0

摘要

多煤层开采中动、静载荷叠加诱发岩爆的机理十分独特。为研究大能量微震事件的传播衰减规律及该条件下的岩爆诱发机理,本研究采用FLAC3D动态模块,模拟分析了传播距离、多煤层开采的覆土结构、层间塑性区等因素对振动波衰减的影响。结果表明,当煤层开采距离较近时,振动波在通过两层煤之间的塑性区时衰减明显。在衰减距离相同的情况下,多煤层开采结构对振动波衰减的影响更大。考虑到近距离煤层群开采与单煤层开采在岩爆诱发机制上的差异,建立了多煤层开采中叠加动、静载荷诱发岩爆的判别标准,以及适用于这种情况的监测和预警方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Research on the attenuation characteristics of seismic energy in multicoal seam mining and the warning method of rock burst

Research on the attenuation characteristics of seismic energy in multicoal seam mining and the warning method of rock burst

The mechanism of rock burst induced by the superposition of dynamic and static loads in multicoal seam mining is unique. To investigate the propagation attenuation law of large-energy microseismic events and the induced mechanism of rock burst under this condition, this study employs FLAC3D's dynamic module to simulate and analyze the influence of propagation distance, overburden structure in multicoal seam mining, and interlayer plastic zone on vibration wave attenuation. Results indicate that when coal seams are mined at close distances, vibration waves experience significant attenuation while passing through the plastic zone between two layers of coal. At equal attenuation distances, multicoal seam mining structures exhibit greater effects on vibration wave attenuation. Considering differences between rock-burst induction mechanisms in close-distance coal seam group mining versus single coal seam mining, a discriminant criterion for rock bursts induced by superimposed dynamic and static loads in multicoal seam mining is established along with a monitoring and early warning method suitable for such conditions.

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来源期刊
Energy Science & Engineering
Energy Science & Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
6.80
自引率
7.90%
发文量
298
审稿时长
11 weeks
期刊介绍: Energy Science & Engineering is a peer reviewed, open access journal dedicated to fundamental and applied research on energy and supply and use. Published as a co-operative venture of Wiley and SCI (Society of Chemical Industry), the journal offers authors a fast route to publication and the ability to share their research with the widest possible audience of scientists, professionals and other interested people across the globe. Securing an affordable and low carbon energy supply is a critical challenge of the 21st century and the solutions will require collaboration between scientists and engineers worldwide. This new journal aims to facilitate collaboration and spark innovation in energy research and development. Due to the importance of this topic to society and economic development the journal will give priority to quality research papers that are accessible to a broad readership and discuss sustainable, state-of-the art approaches to shaping the future of energy. This multidisciplinary journal will appeal to all researchers and professionals working in any area of energy in academia, industry or government, including scientists, engineers, consultants, policy-makers, government officials, economists and corporate organisations.
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