煤炭损伤演变的声发射和应变的时空联合响应特性

IF 4.8 2区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY
Hui Xie, Xiaofei Liu, Siqing Zhang, Zhongmin Xiao, Xin Zhou, Peixin Gu, Zinan Du
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引用次数: 0

摘要

岩爆灾害的发生与岩体的带状变形和破坏密切相关。为了有效监测和了解围岩破坏的关键区域,必须建立广泛的应变测量站网。本研究采用了一种综合方法,整合了声发射(AE)、数字图像相关和光纤布拉格光栅解调技术。根据样品的不同变形阶段,分析了声发射次数和内部应变的变化,并分析了声发射事件位置、内部高应变场和表面高应变场的位置变化,发现它们之间存在良好的空间相关性。根据 AE 事件的次数和定位以及内部应变,提出了两个新的损伤变量,并利用它们的数值和位置分析了煤样损伤的演变路径,发现它们与试样的实际断裂区域相吻合。因此,提出了一种结合 AE 事件定位和内部应变场的新型综合监测方法,以确定高损伤区域的位置。这些研究成果对于准确预测导致煤岩体整体失稳的关键区域具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Time–Space Joint Response Characteristics of Acoustic Emission and Strain of Coal Damage Evolution

Time–Space Joint Response Characteristics of Acoustic Emission and Strain of Coal Damage Evolution

The occurrence of rockburst disasters is closely related to the zonal deformation and failure of rock masses. To effectively monitor and understand the critical zones of surrounding rock damage, it is imperative to establish an extensive network of strain measurement stations. In this study, a comprehensive approach was adopted, integrating acoustic emission (AE), digital image correlation, and fiber Bragg grating demodulation techniques. According to the different deformation stages of the sample, the changes in AE counts and internal strains were analyzed, and the position changes of the AE event location, internal high-strain field, and surface-high-strain field were analyzed, and it was found that there was good spatial correlations among them. Based on the AE events’ counts and localization and internal strain, two new damage variables were proposed, and their numerical values and positions were used to analyze the evolution path of coal sample damage, which was found to match the actual fracture area of the specimen. Therefore, a novel comprehensive monitoring method combining the localization of AE events and internal strain fields is proposed to determine the position of high-damage areas. These research findings are of significant importance for accurately predicting the key areas leading to overall instability in coal–rock masses.

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来源期刊
Natural Resources Research
Natural Resources Research Environmental Science-General Environmental Science
CiteScore
11.90
自引率
11.10%
发文量
151
期刊介绍: This journal publishes quantitative studies of natural (mainly but not limited to mineral) resources exploration, evaluation and exploitation, including environmental and risk-related aspects. Typical articles use geoscientific data or analyses to assess, test, or compare resource-related aspects. NRR covers a wide variety of resources including minerals, coal, hydrocarbon, geothermal, water, and vegetation. Case studies are welcome.
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