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Performance Analysis of Instruments Used to Measure Stress Change Resulting from Mining

机译:用于测量采矿引起的应力变化的仪器的性能分析

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Researchers at the National Institute for Occupational Safety and Health (NIOSH) have advocated the use of instrumentation in underground mine ground control studies to aid in understanding failure mechanisms and to calibrate numerical models. The purpose of these efforts is to reduce accidents and fatalities in underground mines resulting from inadequate design of mining layout or supports. A recent examination of some results of stress change measurement raised some questions about the validity of elastic solutions in ground, such as coal. Particularly under deep cover as is prevalent in the western United States, the coal around a borehole would likely have yielded so that post-yield behavior would govern the response of the instrument. A numerical experiment was conducted by NIOSH researchers using the FLAG software (Itasca Consulting Group. 2016) to investigate the response of the borehole pressure cell (BPC) and the biaxial stressmeter to varying degrees of plastic behavior. The pre-encapsulated BPC cell pressure exhibits increasing departure from the elastic case with decreasing post-peak-strength slope of the stress-strain curve. On the other hand, because the BSM usually provides much more confinement to the surrounding rock than does the BPC. the measurements obtained from the BSM do not depart significantly from the changes in secondary principal stresses and directions as calculated by the elastic solution.
机译:美国国家职业安全与健康研究所(NIOSH)的研究人员提倡在地下矿井地面控制研究中使用仪器,以帮助理解故障机理并校准数值模型。这些努力的目的是减少因采矿布局或支架设计不足而导致的地下矿井事故和死亡。最近对应力变化测量结果的研究提出了一些关于地面弹性解(例如煤)有效性的问题。特别是在美国西部普遍存在的深层覆盖下,井眼周围的煤很可能已经屈服,因此屈服后的行为将决定仪器的响应。 NIOSH研究人员使用FLAG软件(Itasca Consulting Group。2016)进行了数值实验,以研究井眼压力传感器(BPC)和双轴应力计对不同程度塑性行为的响应。随应力-应变曲线的峰后强度斜率减小,预封装的BPC单元压力与弹性情况的偏离越来越大。另一方面,由于与BPC相比,BSM通常对围岩提供更多的限制。从BSM获得的测量结果与弹性解计算得出的次要主应力和方向的变化没有显着偏离。

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