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Method and the system for measurements of relative changes in concentration of stresses in front of the mining longwall face

机译:开采长壁工作面前应力集中相对变化的测量方法和系统

摘要

A method for measuring relative changes in stress in front of a longwall is characterized in that the capture-control server (6) records the vibration measurement signals from the 3-axis geophones (19) installed in the longwall galleries (A), spatially oriented synchronously in all channels and in synchronized time interval, and in close correlation with the signals informing about the operation and position of the shearer (15) in the working (B) and on this basis, in cooperation with the processing server (10) it localizes the seismic phenomena. After ending of each cut by the shearer (15) it analyzes relative changes in stress in the body of coal (C) in front of the longwall with attenuation-damping tomography involving analysis of seismic waves (FK). After ending of the cut during the shearer (15) standstill, it makes the active velocity or attenuation tomography by seismic imaging of the rock mass between the longwall galleries (A) using seismic waves (FS), and then analyzes the stress with passive velocity and / or attenuation tomography using seismic waves (FP). Then periodically, preferably several times during one mining shift the averaged cumulated tomographic maps of relative changes in stress, and / or the maps of particular tomographies are drawn. The system comprises at least six universal initiation and vibration measurement modules (1) arranged in each of the longwall galleries (A), which are connected via intrinsically safe digital transmission lines (2) to a local measurement data concentrator (3), which is connected to an intrinsically safe power buffer supply (4) and via the optical Ethernet network (5) to the capture-control server (6) connected to the mine dispatching system (7), the global satellite positioning module (8), the internal time module (9) and the processing server (10). The processing server (10) is connected to the cumulated tomography visualization panel (14) and preferably to the active attenuation-damping tomography visualization panel (11), the active velocity or attenuation tomography visualization panel (12), and the passive velocity or attenuation tomography visualization panel (13).
机译:一种用于测量长壁前方应力的相对变化的方法,其特征在于,捕获控制服务器(6)记录来自安装在长壁画廊(A)中的3轴地震检波器(19)的振动测量信号,该3轴地震检波器在空间上定向在所有通道中同步,并在同步的时间间隔内,并与通知采煤机(15)在工作台(B)中的操作和位置的信号紧密相关,并在此基础上与处理服务器(10)合作定位地震现象。采煤机(15)每次切割结束后,它通过涉及地震波(FK)分析的衰减阻尼层析成像技术分析长壁前煤体(C)中应力的相对变化。在采煤机(15)静止期间的切割结束后,通过地震波(FS)对长壁画廊(A)之间的岩体进行地震成像,从而进行了主动速度或衰减层析成像,然后用被动速度分析了应力和/或使用地震波(FP)的衰减层析成像。然后周期性地,优选地在一次采矿偏移期间几次,绘制应力的相对变化的平均累积断层摄影图和/或绘制特定断层摄影的图。该系统包括至少六个布置在每个长壁画廊(A)中的通用启动和振动测量模块(1),这些模块通过本质安全的数字传输线(2)连接到本地测量数据集中器(3),连接到本质安全的电源缓冲器电源(4),并通过光以太网网络(5)连接到与矿山调度系统(7),全球卫星定位模块(8)和内部时间模块(9)和处理服务器(10)。处理服务器(10)连接到累积断层摄影可视化面板(14),并且优选地连接到主动衰减-阻尼断层摄影可视化面板(11),主动速度或衰减断层摄影可视化面板(12)以及被动速度或衰减断层扫描可视化面板(13)。

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