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通过基于实验室的岩石位移测试揭示伊朗煤矿随时间变化的顶板稳定性动态。

Unraveling time-dependent roof stability dynamics in Iran's coal mines through laboratory-based rock displacement testing.

作者信息

Khoshmagham Alireza, Hosseini Navid, Shirinabadi Reza, Bangian Tabrizi Amir Hossein, Gholinejad Mehran, Kianoush Pooria

机构信息

Department of Petroleum and Mining Engineering, South Tehran Branch, Islamic Azad University, 1777613651, Tehran, Islamic Republic of Iran.

National Iranian Oil Company, Exploration Directorate (NIOC-EXP), Tehran, Islamic Republic of Iran.

出版信息

Sci Rep. 2024 Aug 22;14(1):19488. doi: 10.1038/s41598-024-69854-x.

Abstract

Roof stability is a critical concern in coal mines, as the potential for roof collapse poses a significant risk to miners' safety and productivity. Roof stability is heavily influenced by the time-dependent properties of the rock mass above the workings. This study uses rock displacement testing to examine the effect of time-dependent properties on roof stability and resistance reduction in coal mines in Iran. The study employed laboratory-based rock displacement tests on samples collected from coal mines in Iran, subjected to varying stress levels over time, to simulate the gradual deterioration of rock mass strength in underground mining conditions. The samples were monitored for displacement under these conditions to quantify the reduction in roof resistance over time and assess its effect on roof stability. The study found that areas with high stress at equilibrium gradually fail with time, and the stress transfers from the failure zone into deeper solid rock. The results demonstrate that varying viscous parameters can lead to different relaxation behaviors and stress distribution. Furthermore, incorporating strength degradation into numerical simulation can capture the failure under creep conditions and improve the accuracy of predicting time-dependent roof failure. This research aims to enhance safety measures and reduce the risk of collapses by investigating the time-dependent properties of roof stability through rock displacement testing in Iran's coal mines. The study's innovative approach uses numerical simulation based on the viscoelastic-plastic model to simulate the time-dependent behavior of the rock and incorporate strength degradation into the simulation. The results provide valuable insights into the time-dependent behavior of rock mass in coal mines in Iran and contribute to developing strategies for improving roof stability and lessening the chance of roof collapses. The instantaneous elastic strain was 4.35 × 10, and creep simulation was activated to run for a time equivalent to 2 × 10 s.

摘要

顶板稳定性是煤矿中的一个关键问题,因为顶板坍塌的可能性对矿工的安全和生产率构成了重大风险。顶板稳定性受到工作面上覆岩体随时间变化特性的严重影响。本研究采用岩石位移测试来研究随时间变化的特性对伊朗煤矿顶板稳定性和阻力降低的影响。该研究对从伊朗煤矿采集的样本进行了基于实验室的岩石位移测试,这些样本在不同应力水平下随时间变化,以模拟地下采矿条件下岩体强度的逐渐劣化。在这些条件下对样本的位移进行监测,以量化顶板阻力随时间的降低,并评估其对顶板稳定性的影响。研究发现,处于平衡状态时高应力区域会随时间逐渐破坏,应力从破坏区域转移到更深的坚固岩石中。结果表明,不同的粘性参数会导致不同的松弛行为和应力分布。此外,将强度劣化纳入数值模拟可以捕捉蠕变条件下的破坏,并提高预测随时间变化的顶板破坏的准确性。本研究旨在通过在伊朗煤矿进行岩石位移测试来研究顶板稳定性随时间变化的特性,从而加强安全措施并降低坍塌风险。该研究的创新方法是使用基于粘弹塑性模型的数值模拟来模拟岩石的随时间变化行为,并将强度劣化纳入模拟。研究结果为伊朗煤矿岩体的随时间变化行为提供了有价值的见解,并有助于制定提高顶板稳定性和降低顶板坍塌可能性的策略。瞬时弹性应变为4.35×10,启动蠕变模拟运行相当于2×10秒的时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1275/11341819/89fbd6a2ce10/41598_2024_69854_Fig1_HTML.jpg

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