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Modeling transient heat transfer in nuclear waste repositories

机译:模拟核废料库中的瞬态传热

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The heat of high-level nuclear waste may be generated and released from a canister at final disposal sites. The waste heat may affect the engineering properties of waste canisters, buffers, and backfill material in the emplacement tunnel and the host rock. This study addresses the problem of the heat generated from the waste canister and analyzes the heat distribution between the buffer and the host rock, which is considered as a radial two-layer heat flux problem. A conceptual model is first constructed for the heat conduction in a nuclear waste repository and then mathematical equations are formulated for modeling heat flow distribution at repository sites. The Laplace transforms are employed to develop a solution for the temperature distributions in the buffer and the host rock in the Laplace domain, which is numerically inverted to the time-domain solution using the modified Crump method. The transient temperature distributions for both the single- and multi-borehole cases are simulated in the hypothetical geological repositories of nuclear waste. The results show that the temperature distributions in the thermal field are significantly affected by the decay heat of the waste canister, the thermal properties of the buffer and the host rock, the disposal spacing, and the thickness of the host rock at a nuclear waste repository.
机译:高级别核废料的热量可能在最终处置场所产生并从罐中释放出来。废热可能会影响埋入隧道和母岩中的废料罐,缓冲液和回填材料的工程性能。这项研究解决了废物筒产生的热量的问题,并分析了缓冲区和主体岩石之间的热分布,这被认为是径向两层热通量问题。首先为核废料储存库中的热传导建立概念模型,然后建立数学方程式,以对储存库场所的热流分布进行建模。拉普拉斯变换用于为拉普拉斯域中的缓冲区和主体岩石中的温度分布开发解决方案,并使用改进的Crump方法将其数字化为时域解。在假设的核废料地质处置库中模拟了单孔和多孔情况的瞬态温度分布。结果表明,热场中的温度分布受废料罐的衰减热,缓冲液和母岩的热性质,处置间距以及核废料库中主岩厚度的影响很大。 。

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