首页> 外文期刊>Nuclear Technology >OPTIMIZING THE MODELING PERFORMANCE FOR SAFETY ASSESSMENTS OF NUCLEAR WASTE REPOSITORIES BY APPROXIMATING TWO-PHASE FLOW AND TRANSPORT BY SINGLE-PHASE TRANSPORT SIMULATIONS
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OPTIMIZING THE MODELING PERFORMANCE FOR SAFETY ASSESSMENTS OF NUCLEAR WASTE REPOSITORIES BY APPROXIMATING TWO-PHASE FLOW AND TRANSPORT BY SINGLE-PHASE TRANSPORT SIMULATIONS

机译:通过两相流模拟逼近两相流和运输来优化核废料库安全性评估的建模性能

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摘要

The long-term safety performance of a potential deep geological repository for high-level and intermediate-level long-lived nuclear waste is studied through a numerical simulation program that requires simulation tools capable of modeling appropriately the phenomenologies of interest in the repository and its environment. Because of the complexity of the modeled layout, the numerous physical processes involved, and the simulated times (up to one million years), the computational needs are very high. TOUGH2-MP is a very suitable tool for modeling the impact that the heat and gas generated in the emplacement areas may have on the evolution of the fluid pressure and on the saturation fields in the repository's drifts and shafts as well as in the host rock itself. The module EOS7R also gives the possibility to compute a coupled radionuclide transfer. Regarding computational efficiency, it is of interest to decouple the transport from the hydraulic calculation for three main reasons. First, this allows the hydraulic calculation to be used once for several transport computations of a performance analysis and safety assessment study, which is expected to lead to a substantial gain in CPU time. Second, it allows optimization of the discretization separately for both hydraulic and transport calculations. Third, it allows combination of the TOUGH2 hydraulic and other codes modeling radionuclide transport, which allows consideration of phenomenologies that are not available in TOUGH2. This work shows how to establish a sequential approach between TOUGH2 and another code. It presents the conditions of use of such an approach, in terms of performance and the impact of the temporal discretization on the results.
机译:通过数值模拟程序研究了潜在的深层地质处置库对高级别和中级长期存在的核废料的长期安全性能,该程序需要能够对处置库及其环境中感兴趣的现象进行适当建模的仿真工具。由于建模布局的复杂性,所涉及的众多物理过程以及模拟时间(长达一百万年),计算需求非常高。 TOUGH2-MP是非常合适的工具,可用于模拟在沉积区中产生的热量和气体可能对流体压力的演化以及对储层巷道和竖井以及母岩本身的饱和场的影响。模块EOS7R还提供了计算耦合的放射性核素转移的可能性。关于计算效率,出于三个主要原因,将运输与水力计算脱钩是令人感兴趣的。首先,这允许将液压计算一次用于性能分析和安全评估研究的多次运输计算,这预计将导致CPU时间的大量增加。其次,它允许分别为水力和运输计算优化离散化。第三,它允许将TOUGH2液压模型和其他模拟放射性核素传输的代码结合起来,从而可以考虑在TOUGH2中不可用的现象学。这项工作展示了如何在TOUGH2和另一个代码之间建立顺序方法。它就性能以及时间离散化对结果的影响而言,提供了使用这种方法的条件。

著录项

  • 来源
    《Nuclear Technology》 |2014年第2期|188-197|共10页
  • 作者单位

    AF-Consult Switzerland Ltd., Groundwater Protection and Waste Disposal, Taefernstrasse 26 5405 Baden, Switzerland;

    AF-Consult Switzerland Ltd., Groundwater Protection and Waste Disposal, Taefernstrasse 26 5405 Baden, Switzerland;

    Universitaet Stuttgart, Institute for Modelling Hydraulic and Environmental Systems Pfaffenwaldring 61, 70569 Stuttgart, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    geological repository; modeling; two-phase flow;

    机译:地质库造型;两相流;
  • 入库时间 2022-08-18 00:43:12

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