低渗岩体渗流与溶质迁移超重力试验及数值模拟研究进展
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詹良通(1972—),男,教授,博士,主要从事环境岩土工程研究。E-mail:zhanlt@zju.edu.cn

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国家重点研发计划项目(2024YFA1612400);中国电力建设股份有限公司科技项目(P52422);中央高校基本科研业务费专项资金项目(226-2024-00083)


Research progress on hypergravity experiments and numerical simulation of seepage and solute migration in low-permeability rock mass
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    摘要:

    高放废物地质处置的长期安全性高度依赖于地质屏障对核素迁移的有效阻隔,针对核素迁移过程的大时空尺度特征,超重力试验与多尺度数值模拟已成为研究裂隙介质中长历时渗流与溶质迁移行为的重要手段。本文综述了裂隙岩体渗流与溶质迁移超重力试验技术、裂隙岩体超重力试验相似性及地质屏障长期安全性评价等方面的研究进展,针对当前面临的微米级基质-裂隙一体化制备、复杂粗糙裂隙相似性理论以及热-水-力-化多场耦合等挑战,未来应在微细裂隙-孔隙结构的一体化打印、天然粗糙裂隙结构的超重力试验相似性理论、多过程响应机制及万年历时全过程模拟等方向开展进一步研究。

    Abstract:

    The long-term safety of geological disposal for high-level radioactive waste relies critically on the effective retardation of radionuclide migration by geological barriers. Given the characteristics of radionuclide migration processes at large spatiotemporal scales, hypergravity experiments and multi-scale numerical simulations have become essential tools for investigating long-term seepage and solute transport behaviors in fractured media. Research progress in hypergravity testing techniques for seepage and solute migration in fractured rock masses, similarity theories for hypergravity tests of fractured rock masses, and long-term safety evaluations of geological barriers was reviewed. To address current challenges such as the integrated preparation of micron-scale matrix and fracture systems, similarity theories for complex rough fractures, and coupled thermal-hydrological-mechanical-chemical (THMC) processes, future research should focus on the integrated printing of micro-fracture and pore structures, similarity theories for natural rough fracture structures in hypergravity experiments, multi-process response mechanisms, and full-process simulations spanning ten-thousand-year timescales.

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詹良通,王浩,胡英涛,等.低渗岩体渗流与溶质迁移超重力试验及数值模拟研究进展[J].河海大学学报(自然科学版),2026,54(1):70-78.(Zhan Liangtong, Wang Hao, Hu Yingtao, et al. Research progress on hypergravity experiments and numerical simulation of seepage and solute migration in low-permeability rock mass[J]. Journal of Hohai University (Natural Sciences),2026,54(1):70-78.(in Chinese))

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  • 收稿日期:2025-07-29
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  • 在线发布日期: 2026-01-29
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