Dynamic Response, Damage, and Particle Transport of Cut Blasting Under a Biaxial Initial-Stress State

Cut blasting in deep excavations occurs in rock masses subject to unequal initial stresses. This study compares two SPH–FEM simulations of the same cut-blasting problem: S35–22, a prescribed biaxial initial-stress state derived from mine-provided field stress records, with horizontal and vertical components of 35 and 22 MPa, respectively, and S0, a zero-preload numerical baseline. The analysis considers equivalent-stress histories and sectional RHT damage over 0–20 ms, the cumulative initial mass of rock SPH particles first observed at D = 1 and its interval-average increase over 0–40 ms, and finite-window cumulative first-crossing mass evaluated through 40 ms. The comparison characterizes the response of the prescribed S35–22 state relative to S0 within the stated observation windows.

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Publication Details

Journal
Applied Sciences
Published
2026-10-04
DOI
https://doi.org/10.3390/app16199838
Primary Topic
Rock Mechanics and Modeling
Type
article
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article

Dynamic Response, Damage, and Particle Transport of Cut Blasting Under a Biaxial Initial-Stress State

Qiwen Hu, Xianglong Li, Pinzhe ZHAO, Mili Du
Applied Sciences
Rock Mechanics and Modeling
article

Dynamic Response, Damage, and Particle Transport of Cut Blasting Under a Biaxial Initial-Stress State

Qiwen Hu, Xianglong Li, Pinzhe ZHAO, Mili Du
article en

Abstract

Cut blasting in deep excavations occurs in rock masses subject to unequal initial stresses. This study compares two SPH–FEM simulations of the same cut-blasting problem: S35–22, a prescribed biaxial initial-stress state derived from mine-provided field stress records, with horizontal and vertical components of 35 and 22 MPa, respectively, and S0, a zero-preload numerical baseline. The analysis considers equivalent-stress histories and sectional RHT damage over 0–20 ms, the cumulative initial mass of rock SPH particles first observed at D = 1 and its interval-average increase over 0–40 ms, and finite-window cumulative first-crossing mass evaluated through 40 ms. The comparison characterizes the response of the prescribed S35–22 state relative to S0 within the stated observation windows.

Applied SciencesVol. 16(19)
Kunming University of Science and Technology (CN)
Openalex Percentile: Top 21%
Rock Mechanics and Modeling
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