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A model for heat flow in deep borehole disposals of high-level nuclear waste

机译:高核废料深井处置中的热流模型

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Deep borehole disposal (DBD) is emerging as a viable alternative to mined repositories for many forms of highly radioactive waste. It is geologically safer, more secure, less environmentally disruptive and potentially more cost-effective. All high-level wastes generate heat leading to elevated temperatures in and around the disposal. In some versions of DBD this heat is an essential part of the disposal while in others it affects the performances of materials and waste forms and can threaten the success of the disposal. Different versions of DBD are outlined, for all of which it is essential to predict the distribution of temperature with time. A generic physical model is established and a mathematical model set up involving the transient conductive heat flow differential equation for a cylindrical source term with realistic decay. This equation is solved using the method of Finite Differences. A Fortran computer code (GRANITE) has been developed for the model in the context of DBD and validated against theoretical and other benchmarks. The limitations of the model, code, input parameters and data used are discussed and it is concluded that the model provides a satisfactory basis for predicting temperatures in DBD. Examples of applications to some DBD scenarios are given and it is shown that the results are essential to the design strategy of the DBD versions, geometric details and choice of materials used. Without such modeling it would be impossible to progress DBD of nuclear wastes; something that is now being given serious consideration in several countries.
机译:对于许多形式的高放射性废物,深孔处置(DBD)正在成为矿藏的可行替代方案。它在地质上更安全,更安全,对环境的破坏更小并且可能更具成本效益。所有高放废物都会产生热量,导致处置过程中和处置过程周围的温度升高。在某些DBD版本中,这种热量是处置的重要组成部分,而在其他版本中,它会影响物料和废物形式的性能,并可能威胁处置的成功。概述了不同版本的DBD,对于所有这些版本,预测温度随时间的分布至关重要。建立了一个通用物理模型,并建立了一个数学模型,该模型涉及具有实际衰减的圆柱源项的瞬态传导热流微分方程。该方程使用有限差分法求解。已在DBD上下文中为该模型开发了Fortran计算机代码(GRANITE),并已根据理论和其他基准进行了验证。讨论了模型,代码,输入参数和所用数据的局限性,并得出结论,该模型为预测DBD中的温度提供了令人满意的基础。给出了在某些DBD场景中的应用示例,结果表明结果对于DBD版本的设计策略,几何细节和所用材料的选择至关重要。没有这种模型,就不可能进行核废料的DBD处理。一些国家正在认真考虑这一问题。

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