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Vibration assessing model: comparison between methods

机译:振动评估模型:方法比较

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The aim of blasting operations is rock fragmentation. It provides an appropriate rock material granulation or size that is suitable for loading and transportation. However, the blasting process and usage of explosives remain a potential source of numerous human and environmental hazards. The aim of this paper is, first of all, to provide models (and models comparison) concerning one of the major environmental issues related to blasting operations in mining and civil engineering projects: ground vibration propagation. The study displays an assessment of ground vibrations caused by blasting experiments at a whinstone quarry. The vibration source is the blasting of a fixed quantity of explosive burden (200 Kg of an Ammonium Nitrate Slurry Watergel - Tutagex 110, fragmented in 8 different parallel blast holes with a fixed 2 meter spacing). The primary goal of this study was to estimate the peak particle velocity (PPV) of the vibration, in order to protect the dwelling area adjacent to the quarry. Based on the data obtained from field measurements, a new equation was proposed: to achieve this objective we use geostatistical modelling, the branch of statistics that studies the phenomena that are developed on space-based, starting from the information derived from the sampling. The decision to describe the phenomenon with geostatistical modelling stems from having a limited number of samples and a vibration source difficult to repeat, which makes the geostatistics suitable for this purpose. In fact, it is often used to study phenomena characterized by a limited availability of samples. The final goal is the comparative analysis between the results obtained by the geostatistical equation and common empirical predictors currently used in blasting practice. The analysis of the comparison between these two approaches shows that the geostatistical tool seems to be suitable to the purposed scope.
机译:爆破作业的目的是岩石碎片。它提供适合装载和运输的合适岩石材料造粒或尺寸。然而,爆炸过程和爆炸物的用法仍然是众多人类和环境危害的潜在来源。本文的目的首先是提供有关挖掘和土木工程项目中爆破业务相关的主要环境问题之一的模型(和模型比较):地面振动传播。该研究表明,在Whinstone采石场爆破实验引起的地面振动评估。振动源是爆破固定数量的爆炸性负担(200kg硝酸铵浆料水胶 - Tutagex 110,在8个不同的平行鼓胀孔中,具有固定的2米间距)。本研究的主要目标是估计振动的峰粒速(PPV),以保护与采石场相邻的居住区。基于从现场测量获得的数据,提出了一种新的等式:实现这一目标我们使用地质统计学建模,从而从采样的信息开始,研究了基于空间的现象的统计数据。决定描述具有地质统计学建模的现象源于有限数量的样品和难以重复的振动源,这使得具有这种目的的地质数据。事实上,它通常用于研究以有限的样品可用性为特征的现象。最终目标是由地统计学方程获得的结果与目前用于爆破实践的常见经验预测因子之间的比较分析。对这两种方法之间的比较分析表明,地质统计工具似乎适合于所用的范围。

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