Landslide Susceptibility Evaluation Integrating Machine Learning and SBAS-InSAR-Derived Deformation Characteristics: A Case Study of Yining County, Xinjiang. [PDF]
Ma T, Yi X, Ci H, Wang R, Yang H, Yan Z.
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Sensitivity Study of the FDEM Model of Brazilian Splitting for Weiyuan Shale Considering Mineral Components. [PDF]
Li Y +8 more
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Influence of initial stresses and stress paths on the deformation and failure mechanism of sandy slate. [PDF]
Huang T, Xu X, Wang L, Li J, Xu J.
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Study on variation law of rock mass dilatancy and stress threshold during loading and unloading. [PDF]
Du Y, Wang L, Chen F, Wang K.
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Deep Sandstone Reservoir Characteristics and Pore Structure Classification Based on Fractal Theory: A Case Study of the Bayingobi Formation in Guaizihu Sag, Yin'e Basin. [PDF]
Yang B, Wu H, Peng M.
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The redox behavior of uranium on Beishan granite: Effect of Fe2+ and Fe3+ content
Journal of Environmental Radioactivity, 2020The Beishan granitic area in Gansu Province is a site with the greatest potential for a repository of high-level radioactive waste (HLW) in China. In this study, the redox behavior of uranium on Beishan granite was investigated at pH values from ~4.4 to ~9.2.
Yang Song, Mingliang Kang
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The Diffusion of Tc-99 in Beishan Granite-Temperature Effect
In the safety assessment of a potential site for high-level radioactive wastes (HLW) disposal, the investigation on the geochemical behaviors of key radionuclides with the possibility for releasing from the potential repository is an important aspect. Due to the high mobility of technetium under most repository conditions, lots of research works were ...
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Adsorption of Se(IV) onto Beishan Granite [PDF]
GUO Zhi-Jun +6 more
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Influence of Thermal Treatment on the Thermal Conductivity of Beishan Granite
Rock Mechanics and Rock Engineering, 2018Granitic rocks are potential rock types for hosting high-level radioactive waste (HLW) repositories at depth. A better understanding of rock thermal conductivity is essential to develop HLW repositories successfully. In this work, experimental investigations on the thermal conductivity of thermally treated Beishan granite were conducted. Disk specimens
Xingguang Zhao, Ming Cai, Cai M
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Auxetic behavior of Beishan granite after thermal treatment: A microcracking perspective
Engineering Fracture Mechanics, 2020Abstract Majority of minerals or rocks commonly display a positive Poisson’s ratio between 0.05 and 0.45. However, granites that experience high temperature treatment can exhibit negative Poisson’s ratio under low compressive stresses. The underlying mechanism responsible for the auxetic behavior of thermally-treated granites is poorly understood ...
Ming Cai, Zhihong Zhao
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