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Surface mine blast vibration transmission over deep mines.

机译:地雷爆炸振动在深部地雷上的传播。

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Blast induced ground vibrations from surface mining were studied in the Chandler, Indiana area to assess how old underground abandoned mines affected these vibrations. Over 4,700 blasting records collected by the Peabody Coal Company in that area were analyzed. Predictive graphs and equations were developed from the data. Empirical formulas were produced from a series of logarithmic graphs of peak particle velocity versus scaled distance. These graphs and equations were compared to determine if underground mines will affect ground vibrations produced from surface mining. However, the only factor considered was the presence of underground mines and not any other geological features. The presence of underground mines can affect the transmission of vibrations from surface mining. The data derived from vibrations passing through or over underground mines predict a higher peak particle velocity at large scaled distances and lower peak particle velocity at small scaled distances than do all the data from the research. In addition, the design envelope line for data from vibrations that passed over or through underground mines predicts lower peak particle velocity at small scaled distances and higher peak particle velocity at large scaled distances than do the data from all other vibrations.
机译:在印第安纳州钱德勒地区,研究了由露天采矿产生的爆炸引起的地面振动,以评估废弃的地下旧矿山如何影响这些振动。分析了皮博迪煤炭公司在该地区收集的4700多个爆破记录。根据数据开发了预测图和方程式。从一系列峰值粒子速度与标定距离的对数图可以得出经验公式。比较了这些图形和方程式,以确定地下矿井是否会影响地面采矿产生的地面振动。但是,唯一考虑的因素是地下矿山的存在,而不是其他任何地质特征。地下矿山的存在会影响地面采矿的振动传播。与研究中的所有数据相比,通过地下矿井或地下矿井振动产生的数据预测,在较大比例距离下,峰峰值速度较高,在较小比例距离上,峰速度较低。此外,与从所有其他振动获得的数据相比,用于穿越或穿过地下矿山的振动数据的设计包络线预测,在较小比例距离下,峰值颗粒速度较低,而在较大比例距离下,峰值颗粒速度较高。

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