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GAS MIGRATION MECHANISM OF SATURATED HIGHLY-COMPACTED BENTONITE AND ITS MODELING

机译:饱和高压实膨润土的气体迁移机制及其建模

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In the current concept of repository for radioactive waste disposal, compacted bentonite will be used as an engineered barrier mainly for inhibiting migration of radioactive nuclides. Hydrogen gas can be generated inside the engineered barrier by anaerobic corrosion of metals used for containers, etc. If the gas generation rate exceeds the diffusion rate of gas molecules inside of the engineered barrier, gas will accumulate in the void space inside of the engineered barrier until its pressure becomes large enough for it to enter the bentonite as a discrete gaseous phase. It is expected to be not easy for gas to entering into the bentonite as a discrete gaseous phase because the pore of compacted bentonite is so minute. Therefore the gas migration tests are conducted in this study to investigate the mechanism of gas migration. On the basis of the experimental facts obtained through the gas migration tests, possible gas migration mechanism is proposed. A simplified method for calculating gas pressure at large breakthrough, which is defined as a sudden and sharp increase in gas flow rate out of the specimen is also proposed.
机译:在当前放射性废物处理储存库的概念中,压实的膨润土将被用作工程障碍,主要用于抑制放射性核素的迁移。通过用于容器的金属的厌氧腐蚀,可以在工程屏障内部产生氢气等。如果气体产生速率超过工程屏障内的气体分子的扩散速率,则气体将在工程屏障内的空隙空间中积聚在空隙空间中直到它的压力足够大以便进入膨润土作为离散气相。预计气体将不容易进入膨润土作为离散的气相,因为压实膨润土的孔是如此微小。因此,在该研究中进行了气体迁移测试,以研究气体迁移的机制。在通过气体迁移试验获得的实验事实的基础上,提出了可能的气体迁移机制。还提出了一种在大突破中计算气体压力的简化方法,其定义为突然和急剧增加样本的气体流速。

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