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压实膨润土水化过程中孔隙比与吸力关系的洞察

Insight on the Void Ratio-Suction Relationship of Compacted Bentonite during Hydration.

作者信息

Wang Yang, Teng Jun, Huang Qi, Wang Wei, Ren Zhenyang

机构信息

School of Civil and Environmental Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.

Engineering Management Center, Bureau of Public Works of Shenzhen Municipality, Shenzhen 518031, China.

出版信息

Materials (Basel). 2022 Jul 26;15(15):5173. doi: 10.3390/ma15155173.

Abstract

Investigation on swelling characteristics of buffer/backfill materials during hydration is an important issue in the design of artificial barriers in high-level radioactive waste (HLW) disposal repositories. In this work, for clarifying the characteristic of void ratio-suction relationship for compacted bentonite on hydration path, suction-controlled swelling deformation tests under constant vertical stresses 0.001~40 MPa were carried out on compacted bentonite specimens. Four different types of void ratio-suction curves indicated that swelling-collapse behavior under hydration depends on suction and over-consolidation ratio (OCR), based on which the swelling index was defined. Then, equations were proposed for describing the swelling-collapse characteristic of void ratio-suction curves. Simulation results of suction-controlled swelling deformation tests show that the different types of the hydration deformation curves could be well described by the proposed equations. Obviously, the proposed equations could be used for description and prediction of swelling characteristics of compacted bentonite during hydration, which is also of great importance for the safety assessment of the HLW repositories.

摘要

研究缓冲/回填材料在水化过程中的膨胀特性是高放废物处置库人工屏障设计中的一个重要问题。在这项工作中,为了阐明压实膨润土在水化路径上孔隙比与吸力关系的特性,对压实膨润土试样进行了垂直应力为0.001~40MPa的吸力控制膨胀变形试验。四种不同类型的孔隙比-吸力曲线表明,水化作用下的膨胀-收缩行为取决于吸力和超固结比(OCR),并据此定义了膨胀指数。然后,提出了描述孔隙比-吸力曲线膨胀-收缩特性的方程。吸力控制膨胀变形试验的模拟结果表明,所提出的方程可以很好地描述不同类型的水化变形曲线。显然,所提出的方程可用于描述和预测压实膨润土在水化过程中的膨胀特性,这对高放废物处置库的安全评估也具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91fe/9332360/b17f9cd6f42f/materials-15-05173-g001.jpg

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