The practicality of using rock mass classification in a narrow tabular orebody at depth extracting the Ventersdorp Contact Reef

The Southern African Institute of Mining and Metallurgy
R. van Heerden T. R. Stacey
Organization:
The Southern African Institute of Mining and Metallurgy
Pages:
11
File Size:
761 KB
Publication Date:
Oct 24, 2025

Abstract

In the challenging environments of deep-level, narrow tabular orebody gold mines in South Africa, rock mass classification offers a potential method for predicting hazardous areas and optimising rock support systems. This study evaluates the applicability of various rock mass classification systems, with a focus on the Modified or Mining Rock Mass Rating system tailored for high-stress, deep-level mining conditions. Extensive data collection was conducted at Kusasalethu Mine, involving underground mapping and analysis of the 2020/2021 fall of ground database. The Mining Rock Mass Rating system was adapted to the unique geological and operational conditions, providing a simplified, user-friendly approach for rock engineering and geology personnel. Results indicate that this adapted Mining Rock Mass Rating system effectively quantifies rock mass conditions and influences proactive mining adjustments. The study’s findings highlight the system's capability to enhance understanding of rock mass behaviour and substantially mitigate the occurrence of rockfalls and ground collapses. Further application and refinement of the system are recommended to continuously improve mining safety and efficiency.
Citation

APA: R. van Heerden T. R. Stacey  (2025)  The practicality of using rock mass classification in a narrow tabular orebody at depth extracting the Ventersdorp Contact Reef

MLA: R. van Heerden T. R. Stacey The practicality of using rock mass classification in a narrow tabular orebody at depth extracting the Ventersdorp Contact Reef. The Southern African Institute of Mining and Metallurgy, 2025.

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