Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns

The safe disposal of high-level radioactive waste (HLW) is a major issue to ensure environmental protection and the sustainable development of the nuclear energy industry; it is also an equally important issue regarding nuclear safety. Deep-buried geological disposal is recognized worldwide as the s...

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Main Authors: Chuancheng Liu, Qiangyong Zhang, Kang Duan, Wen Xiang, Yuyong Jiao
Format: Article
Language:English
Published: MDPI AG 2020-01-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/2/358
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spelling doaj-c1a96bf483324c429ff6ee09665ff5b02020-11-25T01:33:22ZengMDPI AGEnergies1996-10732020-01-0113235810.3390/en13020358en13020358Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock CavernsChuancheng Liu0Qiangyong Zhang1Kang Duan2Wen Xiang3Yuyong Jiao4Geotechnical and Structural Engineering Research Center, Shandong University, Jinan 250061, ChinaGeotechnical and Structural Engineering Research Center, Shandong University, Jinan 250061, ChinaSchool of Civil Engineering, Shandong University, Jinan 250061, ChinaSchool of Civil Engineering, Shandong University, Jinan 250061, ChinaFaculty of Engineering, China University of Geosciences, Wuhan 430071, ChinaThe safe disposal of high-level radioactive waste (HLW) is a major issue to ensure environmental protection and the sustainable development of the nuclear energy industry; it is also an equally important issue regarding nuclear safety. Deep-buried geological disposal is recognized worldwide as the safest and most feasible way to protect human beings and the environment. To satisfy the research functions, most underground research laboratories (URLs) for geological repositories are buried deeply, and their layout is quite complex. To research nonlinear deformation characteristics and failure mechanism of deep underground caverns in the process of construction, we developed an intelligent true triaxial non-uniform loading/unloading model test system. The system has the advantages of a large rated output, starting from zero pressure, cyclic loading and unloading, high loading accuracy and displacement test accuracy, and arbitrary adjustment of device size. We carried out a true three-dimensional physical model test, taking the URL for the deep-buried geological disposal of HLW in Beishan area, Gansu Province as the prototype. The nonlinear deformation characteristics and the law of displacement change of the underground laboratory caverns are reproduced. We observed the whole process, from the appearance of micro cracks to the expansion of the cracks and the collapse of the cavern group. This provides an important experimental basis for optimizing the design and construction of URL for the deep-buried geological disposal of HLW. The value and slope of displacement calculated by the numerical simulation are mainly the same as the experimental results of the geological model test, which validates the accuracy and reliability of the model test system in this study.https://www.mdpi.com/1996-1073/13/2/358intelligent hydraulic controlnon-uniform loading/unloadingautomatic displacement monitoringdeep buried geological disposalhigh-level radioactive wastegeomechanical model test
collection DOAJ
language English
format Article
sources DOAJ
author Chuancheng Liu
Qiangyong Zhang
Kang Duan
Wen Xiang
Yuyong Jiao
spellingShingle Chuancheng Liu
Qiangyong Zhang
Kang Duan
Wen Xiang
Yuyong Jiao
Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
Energies
intelligent hydraulic control
non-uniform loading/unloading
automatic displacement monitoring
deep buried geological disposal
high-level radioactive waste
geomechanical model test
author_facet Chuancheng Liu
Qiangyong Zhang
Kang Duan
Wen Xiang
Yuyong Jiao
author_sort Chuancheng Liu
title Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
title_short Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
title_full Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
title_fullStr Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
title_full_unstemmed Development and Application of an Intelligent Test System for the Model Test on Deep Underground Rock Caverns
title_sort development and application of an intelligent test system for the model test on deep underground rock caverns
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-01-01
description The safe disposal of high-level radioactive waste (HLW) is a major issue to ensure environmental protection and the sustainable development of the nuclear energy industry; it is also an equally important issue regarding nuclear safety. Deep-buried geological disposal is recognized worldwide as the safest and most feasible way to protect human beings and the environment. To satisfy the research functions, most underground research laboratories (URLs) for geological repositories are buried deeply, and their layout is quite complex. To research nonlinear deformation characteristics and failure mechanism of deep underground caverns in the process of construction, we developed an intelligent true triaxial non-uniform loading/unloading model test system. The system has the advantages of a large rated output, starting from zero pressure, cyclic loading and unloading, high loading accuracy and displacement test accuracy, and arbitrary adjustment of device size. We carried out a true three-dimensional physical model test, taking the URL for the deep-buried geological disposal of HLW in Beishan area, Gansu Province as the prototype. The nonlinear deformation characteristics and the law of displacement change of the underground laboratory caverns are reproduced. We observed the whole process, from the appearance of micro cracks to the expansion of the cracks and the collapse of the cavern group. This provides an important experimental basis for optimizing the design and construction of URL for the deep-buried geological disposal of HLW. The value and slope of displacement calculated by the numerical simulation are mainly the same as the experimental results of the geological model test, which validates the accuracy and reliability of the model test system in this study.
topic intelligent hydraulic control
non-uniform loading/unloading
automatic displacement monitoring
deep buried geological disposal
high-level radioactive waste
geomechanical model test
url https://www.mdpi.com/1996-1073/13/2/358
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