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- W235596319 abstract "Over the past thirty years, substantial progress has been made in the understanding of coupled thermo-hydromechanical (THM) behavior of clay barriers from laboratory and field experiments as well as through numerical modeling. In context of geologic nuclear waste disposal, coupled THM processes are relatively short-lived from safety assessment perspective, but could potentially give rise to permanent changes, such as the formation of a damaged zone around excavations that could provide a path for transport of radionuclides if released from a waste package. For a repository hosted in clay-rock, the mechanical evolution and swelling of the protective buffer are imperative to its functions, such as to provide long-term mechanical support to seal the excavation damage zone. At the same time, the mechanical evolution of the buffer is governed by complex-coupled interactions with temperature and hydraulics, between micro- and macroclay structures, as well as with the host rock. Currently, more advanced constitutive mechanical models are being applied, but those require a large number of input parameters for describing processes at the different structural levels. Finally, the effect of chemistry on the long-term mechanical evolution is an area of research deserving further attention, especially when considering higher temperature conditions." @default.
- W235596319 created "2016-06-24" @default.
- W235596319 creator A5034481707 @default.
- W235596319 date "2015-01-01" @default.
- W235596319 modified "2023-10-10" @default.
- W235596319 title "Coupled Thermo-Hydro-Mechanical Behavior of Natural and Engineered Clay Barriers" @default.
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- W235596319 doi "https://doi.org/10.1016/b978-0-08-100027-4.00009-7" @default.
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