详细信息
A depth-dependent framework for grouting parameter selection in anisotropic strata: From diffusion mechanism to pareto-optimal decision-making ( EI收录)
文献类型:期刊文献
英文题名:A depth-dependent framework for grouting parameter selection in anisotropic strata: From diffusion mechanism to pareto-optimal decision-making
作者:Wang, Zongyong Zhe, Yalei Hou, Kepeng Cheng, Qunzhi Liang, Wei
第一作者:Wang, Zongyong
通信作者:Zhe, Y[1]
机构:[1]Yunnan Phosphate Chem Grp Co Ltd, Kunming 650600, Peoples R China;[2]Kunming Univ Sci & Technol, Fac Land Resources Engn, Kunming 650093, Peoples R China;[3]Guizhou Inst Technol, Inst Min Engn, Guiyang 550003, Peoples R China
第一机构:Yunnan Phosphate Chem Grp Co Ltd, Kunming 650600, Peoples R China
通信机构:corresponding author), Kunming Univ Sci & Technol, Fac Land Resources Engn, Kunming 650093, Peoples R China.
年份:2026
卷号:31
外文期刊名:RESULTS IN ENGINEERING
收录:EI(收录号:20262520970873);WOS:【ESCI(收录号:WOS:001805999700001)】;
语种:英文
外文关键词:Anisotropic diffusion; Bingham fluid; Reliability analysis; Multi-objective optimization
摘要:Grouting is a critical technique for ground reinforcement and seepage control in underground engineering. However, traditional empirical designs often neglect the anisotropic diffusion mechanism in layered fractured rock and the increasing failure risk in deep, high-pressure environments. This study elucidated the "horizontal-then-vertical" diffusion pathway of the Bingham fluid in layered jointed rock masses. A three-dimensional (3D) spatial diffusion model was established to derive the attenuation law of upward grout climb height. A reliability-based framework was developed using Monte Carlo Simulation (MCS) to account for the spatial variability of fracture apertures. The framework defines grouting failure is quantitatively using a filling rate threshold of eta >= 80%). Furthermore, a multi-objective optimization model was developed to address the conflict between sealing reliability and comprehensive cost, including drilling footage and operational time. The results demonstrated that hydrostatic pressure in deep zones significantly restricted the effective injection pressure, which caused nonlinear increase in failure probability (Pf). Pareto Front analysis revealed a distinct "Pareto shift" with increasing depth. This shift indicates a necessary transition from a "long-stage, loose-spacing" strategy to a "short-stage, dense-spacing" strategy. A region-wide optimal borehole spacing of Rd = 6.0 m was identified as the most robust baseline. Accordingly, the recommended stage length (L) decreased from 15.1 m in shallow zones (0-50 m) to 5.1 m in deep zones (150-200 m). This study provides a quantitative decision-making tool for dynamic grouting design and supports high construction efficiency without compromising sealing integrity.
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