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首页> 外文期刊>Annals of nuclear energy >Radionuclide migration through an unsaturated clay buffer under thermal and hydraulic gradients for a nuclear waste repository
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Radionuclide migration through an unsaturated clay buffer under thermal and hydraulic gradients for a nuclear waste repository

机译:放射性核素在热和水力梯度下通过不饱和粘土缓冲液的迁移,用于核废料处置库

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摘要

This study presents a numerical model simulating the radionuclide migration behavior in an engineered barrier system of a nuclear waste repository. The migration of iodide and cesium through a compacted bentonite buffer with variable saturation and temperature gradient was analyzed. The modeling was performed using a computer program, TOUGH2, which analyzes the multi-dimensional fluid and heat flows of a multiphase, multicomponent fluid mixture in an unsaturated medium. The radionuclide transport in both aqueous and gas phases and the radioactive decay were considered. The diffusional transport of radionuclide was assumed, and the adsorption of radionudides on the bentonite was modeled as reversible instantaneous linear sorption. An engineering scale experiment simulating the thermal, hydrological and chemical processes occurring in the engineered barrier system of a nuclear waste repository was carried out. The presented model can reasonably simulate the experimental results.
机译:这项研究提出了一个数值模型,用于模拟核废料处置库工程屏障系统中放射性核素的迁移行为。分析了碘化物和铯在具有饱和度和温度梯度可变的膨润土缓冲液中的迁移情况。使用计算机程序TOUGH2进行建模,该程序分析了不饱和介质中多相,多组分流体混合物的多维流体和热流。考虑了在水相和气相中的放射性核素迁移以及放射性衰变。假设放射性核素的扩散传输,并且将放射性核素在膨润土上的吸附建模为可逆的瞬时线性吸附。进行了工程规模的实验,以模拟发生在核废料库工程屏障系统中的热,水文和化学过程。该模型可以合理地模拟实验结果。

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