Conception system of deep and evaluation index for deep engineering
Концептуальная система глубокого инженерного строительства и показатели его оценки
2026-02-04
SCID: 54.1/mngcj2ps
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deep engineering rock massdeep mining engineeringdifficulty coefficienthazard indexnonlinear mechanical system
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Abstract (AI)
With the increase of mining depth, the non-linear dynamic mechanical disasters, such as rock blasting, methane outburst, rheology, water outburst, etc., occur more and more. The rock mechanics problems caused by the deep mining engineering are focal problems of the field of the mining and rock mechanics field both in China and other countries. Focusing on special geological mechanical environment of deep engineering, the conception system is put forward by deepening research into non-linear mechanical characters of deep engineering rock mass, which points out that the mechanical system of engineering rock mass in depth is non-linear mechanical system but not the linear mechanical system of that in shallow. Conventional theory, design method and technology are partially or entirely invalid. Using difficulty coefficient and hazard index as the evaluation indexes to evaluate the controlling condition of surrounding rock can synthetically reflect the mechanical characters and engineering characters of rock mass in deep engineering.
Key Findings
1
A conceptual framework for deep engineering is developed by emphasizing the nonlinear mechanical behavior of rock masses in specialized deep geological environments.
2
Conventional theories, design methods, and technologies may be partially or completely invalid under deep-engineering conditions.
3
Deep mining increasingly induces nonlinear dynamic disasters, including rock blasting, methane outbursts, rheology, and water outbursts.
4
Deep-engineering rock masses are characterized as nonlinear mechanical systems, contrasting with the approximately linear systems assumed for shallow engineering.
5
Difficulty coefficient and hazard index are proposed as evaluation indicators that synthetically characterize surrounding-rock control conditions and the mechanical and engineering behavior of deep rock masses.
Research Object
deep mining engineering rock masses and their surrounding-rock environment
Research Subject
the nonlinear mechanical behavior, engineering characteristics, and control-condition evaluation of deep rock masses using difficulty and hazard indices
Publication Details
Publication Date
2026-02-04
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