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Lessons Learned from Blasting in Highly Weathered Sandstone

机译:在高度风化的砂岩中爆炸的经验教训

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This paper is an engineering case study of a blast performed on a highly weathered sandstone isthmus in an area sensitive to vibration and airblast, the challenges associated with such a blast, the methods used to understand rock characteristics, the blast design considerations and a discussion of the blast results.The purpose of the blast was to remove approximately 12 feet (3.7 m) of surface material in order to install a pumping station. The isthmus provided several challenges due to the weathering of the rock and multiple open faces with surrounding water. The highly fractured and weathered rock was subject to about ten years of freeze thaw cycles, influx of water and seasonal submersion. As such, all actual rock conditions were indefinite, including fracturing, rock properties, degradation and competency.The isthmus also had immediate neighbors who were unused to the environmental effects of blasting. To help continue to keep the social license to operate in the area, it was important to reduce the ground vibration, blast duration, dust and airblast. These factors required a better understanding of how the rock would respond to blasting. In order to do this, test blasts were performed on the same geologic formation in a different location of the quarry that was less sensitive to vibration and airblast effects, allowing the blast parameters and design to be verified and refined. The test blasts were performed while monitoring vibration, air blast, material movement and overall shot performance, and the blasting parameters were adjusted accordingly.The isthmus blast was performed based on the final design from these test blasts. The drilling and loading of the shot all met acceptable criteria and were comparable to the test blasts. The blast performance, however, was not as expected; the depth impacted by the blast was substantially more than expected.Since the test blasts were performed in the same formation, but in material that was significantly less weathered than the isthmus, the actual effect of this weathering was the only difference between test blasting and the isthmus blast. Thus, these results can be used for future reference to highlight the effects of blasting such highly weathered rock and help instruct the blast design in similarly complex conditions.
机译:本文是一种工程案例研究,对振动和空洞敏感的高度风化的砂岩峡部进行的爆炸案例研究,与这种爆炸相关的挑战,用于了解岩石特征,爆炸设计考虑和讨论的方法爆炸结果。爆炸的目的是除去大约12英尺(3.7米)的表面材料,以安装泵站。由于岩石的风化和带有周围水的多个开放面的风化,峡部提供了几个挑战。高度骨折和风化的岩石受到约十年的冻融循环,水和季节性淹没的约十年。因此,所有实际岩石条件都是无限期的,包括压裂,岩石性质,降解和能力。峡部门还有直接邻居,他们未被利用爆破的环境影响。为了帮助继续保持社会许可证在该地区运营,重要的是降低地面振动,喷射持续时间,灰尘和空发电。这些因素需要更好地理解岩石如何应对爆破。为此,在采石场的不同地质形成上进行测试爆炸,该采石场的不同位置对振动和空发电效应不太敏感,允许爆炸参数和设计进行验证和精制。在监测振动,空气爆破,材料运动和整体射击性能的同时进行测试爆炸,并相应地调整爆破参数。基于这些试验爆炸的最终设计进行了斯坦姆斯爆炸。射击的钻孔和装载都符合可接受的标准,并且与试验爆炸相当。然而,爆炸性能并非预期;爆炸的深度显着大于预期。由于测试爆炸以相同的形成进行,但是在显着较低的物质上比峡部显着不那么风化,因此这种风化的实际效果是试验爆破和斯坦姆斯爆炸之间的唯一差异。因此,这些结果可用于将来参考,突出爆破这种高度风化的岩石的影响,并帮助指示爆炸设计在类似的复杂条件下。

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