Experimental Study on Heat Conduction and Water Migration of Composite Bentonite Samples

Author:

Yang Gaosheng12,Bai Bing2ORCID,Chen Wenxuan1,Mao Haitao1,Liu Zhonghua1ORCID,Lan Xiaoling1

Affiliation:

1. College of Urban and Rural Construction, Shanxi Agricultural University, Jinzhong 030801, China

2. School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China

Abstract

The joints of buffer material composite blocks as potential weak parts in the engineering barrier system of a high-level radioactive waste (HLW) repository must be studied in depth. Therefore, a laboratory experiment device suitable for unsaturated composite bentonite samples was developed. The evolution of temperature and volumetric water content at different locations of Gaomiaozi (GMZ) composite bentonite samples with time before and after simulated water inflow was measured by the experiment device. According to the experimental results, the thermal conductivity and hydraulic conductivity of the joint location after healing of the composite bentonite samples were obtained. The experimental results show that the change in the internal temperature of the composite bentonite samples is mainly affected by the temperature boundary and that the change in the internal water has little effect on it. In a short period of time, the loading of hydraulic boundary conditions only makes the volumetric water content of the soil near the hydraulic boundary increase significantly but has little effect on other locations. And, affected by the temperature boundary, the volumetric water content of the soil near the temperature boundary gradually decreases with time. The process of hydration swelling of the composite bentonite sample is accompanied by the adjustment of stress. The composite bentonite samples are continuously squeezed to the joint area after hydration swelling, the whole composite samples are generally homogenized, and the joints between the composite bentonite samples tend to heal. The thermal conductivity and permeability of the joint location after healing can meet the requirements of the engineering barrier of the HLW repository.

Funder

Natural Science Foundation of Shanxi Province

Doctor to Shanxi Province Work Reward Funds Scientific Research Project

National Natural Science Foundation of China

Publisher

MDPI AG

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