BLASTING, Volume. 41, Issue 4, 181(2024)

Linear Regression Analysis on Sadovsky Formula for Open-pit Bench Blasting

DU Jun... HUA Liang-kui, LI Mei-jie, WANG Hong-qiang and WANG Ming-wei |Show fewer author(s)
Author Affiliations
  • North Blasting Technology Co, LTD, Beijing 100089, China
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    With the continuous development of blasting equipment, the popularization of high-precision detonator detonators and electronic detonators have been widely used in open-pit bench blasting. However, the definition is vague in the selection of the maximum amount of initiating charge and the distance from the detonation source to the vibration measurement point for the linear regression analysis of the Sadovsky formula when the vibration measurement point is close to the blasting area, and the dispersion position of the blast hole cannot be ignored. A proportional distance was used to measure close-range blasting vibrations by hole blasting. The total charge with a delay interval smaller than 8 ms or the charge quantity nearest to the vibration measurement point was selected as the maximum blasting charge in a section. The distance between the detonation source and the vibration measurement point was selected as the three-dimensional distance between the center of the hole range of the maximum blasting charge and the vibration measurement point or the three-dimensional distance between the hole and the nearest vibration measurement point. The one with a smaller proportional distance was selected for linear regression by comparing the group proportional and single proportional distances. The results show that it has relatively accurate linear regression using this method for the same direction or near the direction of the vibration point value after the noise reduction process.

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    DU Jun, HUA Liang-kui, LI Mei-jie, WANG Hong-qiang, WANG Ming-wei. Linear Regression Analysis on Sadovsky Formula for Open-pit Bench Blasting[J]. BLASTING, 2024, 41(4): 181

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    Paper Information

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    Received: Apr. 16, 2024

    Accepted: Jan. 3, 2025

    Published Online: Jan. 3, 2025

    The Author Email:

    DOI:10.3963/j.issn.1001-487x.2024.04.023

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