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Optimisation de la configuration des chantiers souterrains×Algorithme de Lerchs-Grossmann×
DomaineGénie minierGénie minier
FamilleProcess / pipelineProcess / pipeline
Année d'origine19601965
Auteur d'origineMining Engineering PracticeHelmut Lerchs and Israel Grossmann
TypeOptimization framework for underground mine excavation designGraph-theoretic algorithm for pit limit optimization
Source fondatriceBrady, B. H. G., & Brown, E. T. (2004). Rock mechanics for underground mining. Springer Science+Business Media. link ↗Lerchs, H., & Grossmann, I. F. (1965). Optimum design of open-pit mines. Canadian Mining and Metallurgical Bulletin, 58(633), 47-54. link ↗
AliasStope Design, Underground Mine Layout, Panel DesignLerchs-Grossmann Method, LG Algorithm
Apparentées34
RésuméStope layout optimization is the process of designing the size, shape, and spatial arrangement of underground mine excavations (stopes) to maximize ore recovery while maintaining safety and economic viability. It balances the desire for large extraction volumes against rock mechanics constraints and support costs. The layout determines mining productivity, capital investment in support systems, and long-term mine life.The Lerchs-Grossmann Algorithm is a graph-theoretic method for determining the ultimate pit limit in open-pit mining operations. Introduced by Helmut Lerchs and Israel Grossmann in 1965, it maximizes the net present value of extracted ore while respecting slope stability constraints. This algorithm forms the theoretical foundation for most modern pit optimization software.
ScholarGateJeu de données
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  3. PUBLISHED

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ScholarGateComparer des méthodes: Stope Layout · Lerchs-Grossmann Algorithm. Consulté le 2026-06-15 sur https://scholargate.app/fr/compare