通过创新性矿柱设计提高采矿业的安全性、可持续性和经济性:最新综述

Yulin Zhang , Hongning Qi , Chuanqi Li , Jian Zhou
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引用次数: 0

摘要

地下硬岩支柱的设计对地下采矿作业的安全性和稳定性起着至关重要的作用。在保障矿工福利的同时,确保安全高效地开采资源至关重要。本文概述了地下硬岩支柱设计的背景和意义,全面探讨了评估和设计稳定支柱所采用的各种技术。这些方法包括经验公式、数值模拟、统计分析和人工智能(AI)技术,每种方法都有助于提高采矿作业的安全性和资源开采效率。此外,本文还利用 CiteSpace 和 VOSviewer 软件工具对 2000 年以来的全球趋势进行了系统分析。这种分析方法旨在对矿柱设计领域进行量化评估。值得注意的是,硬岩支柱设计的未来将发生转变,因为它涉及数据驱动和理论驱动方法的整合。通过将人工智能与有限元和离散元模拟相结合,业内预计将实现更精确、适应性更强和更动态的支柱设计。预计这种整合不仅能提高安全性和环境可持续性,还能产生显著的经济效益。总之,在地下硬岩支柱设计中融合数据驱动和理论驱动的方法,是推进该领域发展的一条大有可为的途径,可确保地下采矿实践更安全、更具可持续性和经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing safety, sustainability, and economics in mining through innovative pillar design: A state-of-the-art review

The design of underground hard rock pillars plays a crucial role in the safety and stability of underground mining operations. Ensuring safe and efficient resource extraction while safeguarding the well-being of miners is of paramount importance. This paper provides an overview of the background and significance of underground hard rock pillar design, presenting a comprehensive exploration of various technologies employed in assessing and designing stable pillars. These methodologies include empirical formulas, numerical simulations, statistical analyses, and artificial intelligence (AI) techniques, each contributing to enhancing safety and resource extraction efficiency in mining operations. Furthermore, this paper conducts a systematically analysis of global trends from the year 2000 onwards, utilizing CiteSpace and VOSviewer software tools. This analytical approach aims to provide a quantitative assessment of the domain of pillar design. Notably, the future of hard rock pillar design is poised for a transformative shift, as it involves the integration of data-driven and theory-driven approaches. By combining AI with finite element and discrete element simulations, the industry anticipates achieving more accurate, adaptable, and dynamic pillar designs. This integration is expected to not only improve safety and environmental sustainability but also yield significant economic benefits. In conclusion, the merging of data-driven and theory-driven methodologies in underground hard rock pillar design represents a promising avenue for advancing the field, ensuring safer, more sustainable, and economically viable underground mining practices.

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