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Evaluating Blast-Induced Vibration: A Comprehensive Literature Review for Predictive Modeling in Transition from Open-Pit to Underground Mines

Research output: Contribution to conferencePaperpeer-review

Abstract

The transition from open-pit to underground mining is a practical strategy to meet the growing demand for minerals while extending mine life and optimizing resource utilization. However, this transition introduces a series of challenges, particularly in managing blast-induced ground vibrations, which are an integral part of drilling operations. The stress waves associated with these vibrations, known as Peak Particle Velocity (PPV), can significantly impact both operational safety and environmental sustainability. This paper provides a comprehensive review of various predictive methods for PPV, evaluating their strengths and weaknesses within the context of the transition from open-pit to underground mining. It highlights gaps in existing models and proposes potential research directions to enhance vibration management in both mining environments. The review aims to offer valuable insights to support the development of a hybrid predictive modeling approach that integrates empirical models, machine learning algorithms, and numerical simulations. Such an approach facilitates data-driven transition strategies, reducing vibration impacts on both surface and underground operations while contributing to the broader goal of safer and more sustainable mining practices.

Original languageEnglish
DOIs
StatePublished - 2025
Event59th US Rock Mechanics/Geomechanics Symposium - Santa Fe, United States
Duration: Jun 8 2025Jun 11 2025

Conference

Conference59th US Rock Mechanics/Geomechanics Symposium
Country/TerritoryUnited States
CitySanta Fe
Period6/8/256/11/25

Bibliographical note

Publisher Copyright:
Copyright © 2025 ARMA, American Rock Mechanics Association.

Funding

The authors thank NIOSH for partially funding this research through contract number 75D30124C20213.

FundersFunder number
National Institute for Occupational Safety and Health75D30124C20213

    Keywords

    • Empirical Models
    • Ground Vibrations
    • Machine Learning (ML)
    • Numerical Simulation
    • Open-Pit
    • Peak Particle Velocity (PPV)
    • Prediction
    • Transition
    • Underground Mining

    ASJC Scopus subject areas

    • Geochemistry and Petrology
    • Geophysics

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