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Large scale dynamic testing of rock support at Kiirunavaara - Improved test design

机译:Kiirunavaara的岩石支护的大规模动态测试-改进的测试设计

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Based on the test results and preliminary numerical analysis of four large scale dynamic testing of rock support (Tests 1, 2, 4, and 5), a modified test (Test 6) was designed at LKAB Kiirunavaara underground mine. The aim of the modified design was to avoid the unexpected damage of burden as was observed in earlier tests, and to modify the dynamic loading leading to increase the depth of fractured zone and if possible pushing the support system beyond its limit. In this test, ground motion measurements were conducted using accelerometers, fracture investigations were made using an inspection borehole camera, and ground motion imaging and laser scanning were performed before and after blast. In Test 6, the columns of explosive were located in the middle of a pillar between two cross-cuts one supported by a rock support for seismic conditions, and the other supported by only plain shotcrete. Results indicated that a larger fractured zone compare to earlier tests was developed behind the support system while the installed support system was still functional. In cross-cut without support system, the ejection of blocks of rock from the test wall was observed. Evidence from two cross-cuts indicated a reduction of radial cracks that provide access for the gas expansion. Furthermore, the performance of the rock support was investigated by comparing with the results from the unsupported cross-cut. The results indicated that the installed support system, designed for dynamic conditions, performed well under the loading conditions which can cause ejection. (C) 2016 Elsevier Ltd. All rights reserved.
机译:根据测试结果和对岩石支架的四个大型动态测试(测试1、2、4和5)的初步数值分析,在LKAB Kiirunavaara地下矿山中设计了改进的测试(测试6)。修改设计的目的是避免如先前测试中所观察到的那样,意外地减轻重物的损坏,并修改动态载荷,从而增加裂缝区域的深度,并在可能的情况下将支撑系统推向极限。在该测试中,使用加速度计进行地面运动测量,使用检查井眼照相机进行断裂调查,并在爆炸前后进行地面运动成像和激光扫描。在测试6中,炸药柱位于两个横切之间的柱子中间,一个横切面由岩石支撑以抗地震,而另一个仅由普通喷射混凝土支撑。结果表明,在已安装的支撑系统仍能正常运行的同时,在支撑系统后面开发了比早期测试更大的裂缝区域。在没有支撑系统的横切中,观察到岩石块从测试壁中弹出。来自两个横切面的证据表明,径向裂缝的减少为气体膨胀提供了通道。此外,通过与无支撑横切的结果进行比较,研究了岩石支撑的性能。结果表明,为动力条件而设计的已安装支撑系统在可能导致弹射的载荷条件下表现良好。 (C)2016 Elsevier Ltd.保留所有权利。

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