← Volver a resultados
Ficha bibliográfica · Consulta y acceso
Artículo

Advanced method for integrating weak shear layer disruption into slope stability assessment

Yiran Zhu et al · SpringerOpen · 2026

Acceso abierto disponible
Lectura rápida. Revisá los datos básicos del recurso y luego accedé al contenido desde el botón principal. En esta ficha solo se muestra la información necesaria para identificar la obra, citarla y abrirla.

Acceso al recurso

Entrá al contenido desde la opción principal o elegí otra fuente disponible.

Acceso principal

Acceso abierto disponible

DOAJ DOAJ - Open Access Journals
Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Abrir recurso

Resumen

Descripción general del contenido del recurso.

Abstract In Australian open cut coal mines, floor disruption blasting is emerging as a promising technique for mitigating low wall failures by disturbing the continuity of shear planes within weak geological layers. However, the mechanisms governing its effectiveness remain poorly understood, and methodologies for optimising its design are not yet established. In this study, we present a mechanistic framework for integrating disruption effects into slope stability assessment. First, a blast modelling tool is calibrated using full-scale, mine-specific data. Then, the tool is applied to simulate a range of geological configurations and charging conditions, enabling quantification of blasting-induced disruption. To characterise the disruption, the concept of shear layer roughness is introduced, and dimensional analysis is conducted to establish a predictive model for roughness development. Finally, slope stability analyses are performed by incorporating post-blasting shear layers with varying roughness to evaluate their influence on the Factor of Safety (FoS). Results indicate that surface heave alone is not a reliable indicator of subsurface disruption. Disruption intensity increases when explosive charges are placed below the weak layer, but the effect diminishes as the distance between the layer and the charge increases. Quantitatively, FoS improves systematically with increasing shear layer roughness, weak layers with predicted roughness of 0.75 m achieved up to 13.2% greater FoS compared to undisrupted weak layers. This work provides a novel methodology that integrates blast-induced shear layer disruption with slope stability assessment, offering a scientific basis for the evaluation and optimisation of floor disruption blasting in coal mining operations.

Cómo citar

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, Y. Z. E. (2026). Advanced method for integrating weak shear layer disruption into slope stability assessment. https://doi.org/10.1007/s40789-026-00888-4

MLA

al, Yiran Zhu et. "Advanced method for integrating weak shear layer disruption into slope stability assessment." 2026. https://doi.org/10.1007/s40789-026-00888-4.

Chicago

al, Yiran Zhu et. 2026. "Advanced method for integrating weak shear layer disruption into slope stability assessment.". https://doi.org/10.1007/s40789-026-00888-4.

Harvard

al, Y. Z. E. 2026, Advanced method for integrating weak shear layer disruption into slope stability assessment, SpringerOpen, available at: https://doi.org/10.1007/s40789-026-00888-4 [Accessed 28 Jun. 2026].

Compartir e imprimir

Guardá la ficha, copiá su enlace permanente o imprimila como PDF.

Exportar referencia

Si usás un gestor bibliográfico, podés exportar el registro en los formatos más comunes.

Detalles del recurso

Información bibliográfica útil para confirmar que se trata del material correcto.

Título
Advanced method for integrating weak shear layer disruption into slope stability assessment
Autor / colaboradores
Yiran Zhu et al
Editorial
SpringerOpen
Año de publicación
2026
ISSN
2095-8293
ISSN
2095-8293
Idioma
eng

Materias

Explorá otros recursos relacionados a partir de estas materias.

Copiado