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首页> 外文期刊>Advances in civil engineering >Artificial Seismic Source Field Research on the Impact of the Number and Layout of Stations on the Microseismic Location Error of Mines
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Artificial Seismic Source Field Research on the Impact of the Number and Layout of Stations on the Microseismic Location Error of Mines

机译:人工地震源现场研究对矿山微震定位误差的数量与布局的影响

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摘要

A site experiment is performed herein within a 100m range using a high-frequency structure activity monitor to explore the impact of different factors on the microseismic source location and analyze the range of influence of the velocity model, number of stations, and array surface on the seismic source location. Moreover, the impact of wave velocity, velocity-free location algorithm, and position of the seismic source on the microseismic location error of mines is discussed by establishing the ideal theoretical model of the wave velocity location and with particle swarm optimization. The impact of the number of stations and tables on the location precision is also explored by using the microseismic signals produced by the artificial seismic source. The results show that, for the location model containing the velocity, the velocity error would greatly affect the location precision, and the velocity-free algorithm receives good location results. The location result is more satisfactory when the seismic source point falls in between array envelope lines. The seismic source location precision is in direct proportion to the number of stations. According to the experiment, within a 100m range, when the number of stations is over 12, the effect does not significantly grow with the increase of stations; the number of tables affects the location precision; and the multitable location effect is significantly superior to the single-table effect. The research shows that the optimal station density is 0.0192%, and the appropriate sensor layout to form a multitable monitoring network may effectively enhance the microseismic source precision of mines through the selection of a velocity-free location model. On the contrary, the number of stations can be reduced on the premise of the allowable error of the seismic source location, which may effectively reduce the monitoring cost.
机译:本文在100米范围内进行网站实验,使用高频结构活动监测仪探讨不同因素对微震源位置的影响,并分析速度模型,站数和阵列表面的影响范围地震源位置。此外,通过建立波速定位的理想理论模型和粒子群优化,讨论了波速,无速度定位算法对矿山微震定位误差的影响对微震定位误差的影响。还通过使用由人工地震源产生的微震信号来探索站点和表格数对位置精度的影响。结果表明,对于包含速度的位置模型,速度误差会极大地影响位置精度,并且无速度算法接收良好的位置结果。当地震源点在阵列包络线之间落入时,位置结果更令人满意。地震源定位精度与车站数量直接成比例。根据实验,在100米范围内,当车站数超过12时,效果不会随着站点的增加而显着增长;表的数量会影响位置精度;并且,多元位置效应明显优于单表效应。该研究表明,最优驻地密度为0.0192%,并且相应的传感器布局以形成多元化监测网络,可以通过选择无速度位置模型有效地增强地雷的微震源精度。相反,可以在地震源位置的允许误差的前提下减少站的数量,这可以有效地降低监测成本。

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  • 来源
    《Advances in civil engineering》 |2019年第1期|1487486.1-1487486.11|共11页
  • 作者单位

    Liaoning Tech Univ Sch Civil Engn Fuxing 123000 Peoples R China|China Earthquake Adm Inst Geol Beijing 100000 Peoples R China;

    Liaoning Tech Univ Sch Civil Engn Fuxing 123000 Peoples R China;

    Liaoning Univ Shenyang 110036 Liaoning Peoples R China;

    Liaoning Tech Univ Sch Civil Engn Fuxing 123000 Peoples R China;

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