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Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps

CHEN Yong-gui 1, JIA Ling-yan 1, YE Wei-min 1, CUI Yu-jun 1, 2, CHEN Bao 1, WANG Ju 3 · Editorial Office of Chinese Journal of Geotechnical Engineering · 2017

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3D cross-hole resistivity inversion imaging of surrounding rock based on distance weighting constraint algorithm

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The self-sealing and self-healing behaviors of technological gaps in a high-level radioactive waste repository are analyzed. The systematical findings are summarized based on the previous studies on the effects of technological gaps on the swelling pressure, permeability, fracturing pressure and self-sealing properties. The results indicate that the presence of technological gaps strongly weakens the swelling potential and water tightness of buffer materials. At the early stage of a real repository development, hydraulic fracturing is likely to be induced along these interfaces under high water pressure. Generally available achievements in this area are quite limited. In the tests, the total average methods are employed to study the mean swelling pressure and permeability of buffer materials. However, the hydro-mechanical behaviors of bentonite within gaps cannot be characterized. Several testing devices are specially designed to monitor the total pressure along the interface, except that the effective swelling pressure and pore water pressure cannot be distinguished. These disadvantages result in great difficulties in mechanism analysis of sealing and healing behaviors of technological gaps. Finally, some suggestions are proposed for further researches.

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APA 7

CHEN Yong-gui 1, J. L. Y. 1. Y. W. M. 1. C. Y. J. 1. 2. C. B. 1. W. J. 3. (2017). Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps. https://doi.org/10.11779/CJGE201701012

MLA

CHEN Yong-gui 1, JIA Ling-yan 1, YE Wei-min 1, CUI Yu-jun 1, 2, CHEN Bao 1, WANG Ju 3. "Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps." 2017. https://doi.org/10.11779/CJGE201701012.

Chicago

CHEN Yong-gui 1, JIA Ling-yan 1, YE Wei-min 1, CUI Yu-jun 1, 2, CHEN Bao 1, WANG Ju 3. 2017. "Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps.". https://doi.org/10.11779/CJGE201701012.

Harvard

CHEN Yong-gui 1, J. L. Y. 1. Y. W. M. 1. C. Y. J. 1. 2. C. B. 1. W. J. 3. 2017, Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps, Editorial Office of Chinese Journal of Geotechnical Engineering, available at: https://doi.org/10.11779/CJGE201701012 [Accessed 24 Jun. 2026].

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Título
Advances in hydro-mechanical behaviors of buffer materials under effect of technological gaps
Autor / colaboradores
CHEN Yong-gui 1, JIA Ling-yan 1, YE Wei-min 1, CUI Yu-jun 1, 2, CHEN Bao 1, WANG Ju 3
Editorial
Editorial Office of Chinese Journal of Geotechnical Engineering
Año de publicación
2017
ISSN
1000-4548
ISSN
1000-4548
Idioma
eng

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