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Changes in Stress and Displacement Caused by Longwall Panel Retreats

机译:长壁板撤退引起的应力和位移变化

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Ground deformation and support response was monitored in a longwall gateroad as part of a research project into gateroad stability under changing loading conditions. In this study, instrumentation was installed in a gateroad located between two active longwall panels. The first panel to pass was the second panel in the district, and the second panel to pass the instrumentation sites was the third panel in the district. All of the panels in the district were right-handed. All of the instrumentation was installed in the number one entry, the tailgate, the second panel to pass the instrumentation sites at a mid-pillar location, and at an outby intersection location under about 600 feet of cover. The instrumentation included roof extensometers, cable bolt load cells, hollow inclusion cells, borehole pressure cells, standing support load cells, and convergence sensors, and a multipoint borehole extensometer. The roof extensometers measured roof convergence and sag. The cable bolt load cells measured the roof load applied to the cable bolts in the secondary support array. Hollow inclusion cells measured the magnitude and direction of the principal and shear stresses. The borehole pressure cells measured the stress on a pillar in the entry nearest to the second panel to pass the instrument site. The instrumented wood cribs in the entry nearest the second panel recorded the closure and load on the cribs, and the multipoint borehole extensometer in a pillar closest to the second panel recorded the location and width of cracks that occurred and total expansion of the pillar. This paper describes the effects of the changing stress caused by the first panel as it approached and passed the locations of the instruments on the opposite side of the gateroad system and the later effect caused by the second panel as it approached and passed the mid-pillar instrument location. The first panel passing caused significant loading at the mid-pillar instrument location, but not at the intersection location, while the second panel had passed the mid-pillar location and just arrived at the intersection location when the dataloggers needed to be removed.
机译:在长壁闸道中对地面变形和支撑响应进行了监测,这是一项针对不断变化的载荷条件下闸道稳定性的研究项目的一部分。在这项研究中,仪器安装在两个活动长壁面板之间的门道中。通过的第一个小组是该地区的第二个小组,通过仪器现场的第二个小组是该地区的第三个小组。该地区的所有小组都是右撇子。所有的仪器都安装在第一入口,后挡板,第二个面板中,以便在中柱位置和下方约600英尺的交叉点处通过仪器。仪器包括屋顶引伸计,电缆螺栓称重传感器,中空夹杂物传感器,井眼压力传感器,立式支撑称重传感器和会聚传感器,以及多点井眼引伸计。屋顶引伸计测量屋顶的收敛性和垂度。电缆螺栓称重传感器测量了施加在辅助支撑阵列中的电缆螺栓上的屋顶载荷。空心夹杂物测量了主应力和切应力的大小和方向。钻孔压力传感器测量了最靠近第二块面板的入口中通过仪器位置的柱子上的应力。最靠近第二个面板的入口处的仪器木婴儿床记录了婴儿床的闭合和载荷,最靠近第二个面板的支柱中的多点钻孔引伸计记录了裂缝的位置和宽度以及支柱的总膨胀。本文描述了第一个面板接近和通过仪器在闸道系统对面的位置时引起的应力变化的影响,以及第二个面板接近并通过中柱时引起的应力变化的影响。仪器位置。第一块面板通过了中柱仪器位置处的显着载荷,但没有在交叉点位置,而第二块面板通过了中柱位置,并在需要移除数据记录器时才到达交叉点位置。

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