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Soil-atmosphere interaction in the overburden of a short-lived low and intermediate level nuclear waste (LLW/ILW) disposal facility

机译:土壤 - 大气互动在短期和中间核废料(LLW / ILW)处置设施的覆盖层中

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摘要

The long-term safety of shallow disposal facility for short-lived low and intermediate level nuclear waste (LLW/ILW) relies on the performance of engineered barriers (caps and liners). Soil-atmosphere interaction may affect the capping material at shallow depths, due to changes of its coupled hydro-thermal-mechanical behavior under the effect of atmospheric conditions. This study aims to investigate the soil-atmosphere interaction at different time scales in the overburden of an LLW/ILW disposal facility, located in middle France. Actual meteorological data from Valencia El Saler station in Spain, including solar radiation, air temperature, latent heat, rainfall, and actual evaporation, at four different time scales (30 min, daily, weekly and monthly), were applied as the future climate conditions of the studied area based on climate analogues. A numerical approach combining a coupled hydro-thermal model and a soil-atmosphere interaction model was employed. Results show that the employment of meteorological data at a short time scale (30 min) can increase the simulation accuracy by capturing the rainfall events and accelerating the soil-atmosphere interactions. Furthermore, the effect of future climate conditions in the long-term (7 years) on soil hydro-thermal behavior was examined. This study allows a further detailed inspection of the climate's role in the LLW/ILW storage system.
机译:浅埋处于较低和中级核废料(LLW / ILW)的浅处理设施的长期安全性依赖于工程障碍(盖子和衬垫)的性能。由于其在大气条件的影响下,土壤 - 气氛相互作用可能会影响浅层深度的覆盖材料,这是由于其耦合的水热机械行为的变化。本研究旨在调查位于法国中部的LLW / ILW处置设施的不同时间尺度的土壤 - 大气相互作用。来自西班牙瓦伦西亚EL Saler站的实际气象数据,包括太阳辐射,空气温度,潜热,降雨和实际蒸发,在四种不同的时间尺度(30分钟,每日,每周和每月)作为未来的气候条件基于气候类似物的研究区域。采用了组合耦合水热模型和土壤气氛相互作用模型的数值方法。结果表明,通过捕获降雨事件并加速土壤气氛相互作用,可以在短时间(30分钟)上的气象数据(30分钟)的就业可以提高模拟精度。此外,研究了在长期(7年)对土壤水热行为中未来气候条件的影响。本研究允许进一步详细检查气候在LLW / ILW存储系统中的作用。

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