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Analysis for Microseismic Energy of Immediate Rockbursts in Deep Tunnels with Different Excavation Methods

机译:不同挖掘方法深隧道立即岩浆微震能量分析

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Abstract>This study integrates microseismic data and data from hundreds of rockbursts of different intensities that occurred in a water drainage tunnel and four deep headrace tunnels at Jinping II Hydropower Station in Sichuan Province, China. The tunnels with overburden depths between 1,900 and 2,525 m, the maximum principal stress of which reaches 63 MPa in a rock mass, is composed mainly of marble. The tunnels have a total length of 12.4?km. The microseismic energy produced during the development of immediate rockbursts induced by the excavation by the drill-and-blast method (DBM) and a tunnel-boring machine (TBM) were studied. The results indicate that the daily maximum microseismic energy can be used as a basis for estimating rockburst intensity. The daily maximum microseismic energy (logarithm) corresponds to intense rockbursts (6), moderate rockbursts (between 5 and 6), weak rockbursts (between 4 and 5), and no rockbursts (4). Before the occurrence of intense rockbursts, there were numerous weak and moderate rockbursts during TBM excavation, whereas such a phenomenon was not observed during DBM excavation. The microseismic energy (logarithm) primarily concentrated in the range of 1 to 5 under TBM excavation, which is concentrated in the range of –1 to 4 under DBM excavation. For rockbursts of the same intensity, the range of microseismic energy remained the same for either type of excavation method. The distribution range of the microseismic energy moved in the direction of high energy as the level of rockburst intensity rose (intense rockbursts??moderate rockbursts??weak rockbursts??no rockburst). Microseismic energy can be used as a guideline for building a warning system and reduce the risk of rockbursts during construction.]]>
机译:<![cdata [ <标题>摘要 >本研究将数百人的微震数据和数据集成在中国四川省锦床II水电站的排水隧道和四个深深的头部隧道中发生的数百岩浆。具有1,900至2,525米的悬垂性覆盖层的隧道,最大主要应力在岩体中达到63个MPa,主要由大理石组成。隧道的总长度为12.4公里。研究了通过钻机和喷砂方法(DBM)和隧道钻孔机(TBM)挖掘诱导立即摇滚突发的微震能量。结果表明,每日最大微震能量可用作估算岩爆强度的基础。每日最大微震能量(对数)对应于激烈的岩石(& 6),中度岩肉(5至6之间),弱摇滚(在4到5之间),没有摇滚乐(& 4)。在激烈的摇滚乐发生之前,在TBM挖掘过程中有许多弱且温和的岩虫,而在DBM挖掘期间未观察到这种现象。在TBM挖掘下,微震能量(对数)主要集中在1至5的范围内,其在DBM挖掘下集中在-1至4的范围内。对于相同强度的摇滚乐,对于任一种类型的挖掘方法,微震能量的范围保持不变。微震能量的分布范围在高能量方向上移动,因为岩爆强度升起(激烈的摇滚乐)?&中等摇滚乐?&?弱摇滚乐?&?没有摇滚乐)。微震能量可用作建设警告系统的指导并降低施工期间摇滚乐的风险。 ]]>

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