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Potential Use of Geologic Rock Salt for Fuel Cycle Sustainability - a Computational Modeling Perspective

机译:地质岩盐潜在利用燃料循环可持续性 - 一种计算建模视角

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Because of relatively recent decisions by the current administration and its renewed assessment of the nuclear life-cycle, the various deep geologic disposal medium options are once again open for consideration. This paper focuses on addressing the favorable creep properties and behavior of rock salt, from the computational modeling perspective, as it relates to its potential use as a disposal medium for a deep geologic repository. The various components that make up a computational modeling capability to address the thermo-mechanical behavior of rock salt over a wide range of time and space are presented here. Several example rock salt calculations are also presented to demonstrate the applicability and validity of the modeling capability described herein to address repository-scale problems. The evidence shown points to a mature computational capability that can generate results relevant to the design and assessment of a potential rock salt HLW repository. The computational capability described here can be used to help enable fuel cycle sustainability by appropriately vetting the use of geologic rock salt for use as a deep geologic disposal medium.
机译:由于目前行政当前的最近决定及其对核生命周期的重新评估,各种深层地质处置媒体选择再次开放供考虑。本文侧重于从计算建模角度解决岩盐的有利蠕变性质和行为,因为它与其潜在用途作为深层地质储存库的处理介质。在此提出了构成计算建模能力,以解决各种时间和空间在很多时间和空间上解决岩盐的热机械行为的各种组成部分。还提出了几个示例岩盐计算以证明本文描述的建模能力的适用性和有效性来解决存储库规模问题。证据显示了成熟的计算能力,可以生成与潜在岩盐HLW储存库的设计和评估相关的结果。这里描述的计算能力可用于通过适当地审查使用地质岩盐用作深层地质处置介质来帮助实现燃料循环可持续性。

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