首页> 外文会议>International Workshop NUCPERF >Modeling Carbonation of High-Level Waste Tank Integrity and Closure
【24h】

Modeling Carbonation of High-Level Waste Tank Integrity and Closure

机译:高级别废箱完整性和封闭算法的碳化

获取原文

摘要

The Cementitious Barriers Partnership (CBP) is focused on reducing uncertainties in current methodologies for assessing cementitious barrier performance and increasing the consistency and transparency in the assessment process. One important set of US Department of Energy challenges is assessing the integrity and closure of the high-level waste (HLW) tanks that currently store millions of gallons of highly radioactive wastes. Many of these tanks are decades past their design lives,have leaked or been overfilled,and must be emptied and closed to satisfy regulatory agreements. Carbonation-induced corrosion has been identified as a primary degradation and possible failure mechanism for the HLW tanks prior to closure. After closure the impact of carbonation (and concurrent oxidation) may be to increase the release and short-range transport of contaminants of concern. HLW tanks may be significantly empty for many years (and possibly decades) prior to closure; the performance of the closed tank over centuries,if not millennia,must be assessed to evaluate the potential release of residual radionuclides to the environment.CBP is developing models to evaluate a representative HLW tank closure scenario including the potential impacts of carbonation on waste tanks prior to and post closure. CBP modeling tools,including LeachXS~(TM)/ORCHESTRA,are being used to simulate waste tank carbonation,major constituent leaching,and contaminant releases to evaluate the source term and near-field conditions. Simulations presented here include sensitivity analysis for uncracked concrete to varying input parameters including composition,effective diffusivities,and thermodynamic parameters.
机译:水泥障碍伙伴关系(CBP)专注于减少目前方法中的不确定性,以评估水泥屏障性能,并提高评估过程中的一致性和透明度。美国能源挑战部的一套重要套装正在评估目前储存数百万加仑的高放射性废物的高级废物(HLW)坦克的完整性和关闭。这些坦克的许多坦克数十年过去,已经过他们的设计生活,已经泄露或过量填充,并且必须清空和关闭以满足监管协议。已经鉴定了碳化诱导的腐蚀作为关闭前HLW罐的初级降解和可能的失效机制。闭合后碳酸化(和同时氧化)的影响可能是增加涉及污染物的释放和短距离。在关闭之前,HLW坦克可能会明显空虚,多年(并且可能是几十年);必须评估闭合罐的性能,如果不是千年,必须评估潜在的释放残留放射性核素的潜在释放.CBP正在开发模型,以评估代表性HLW坦克封闭情况,包括碳酸化之前的碳酸化对废坦克的潜在影响到和关闭。 CBP建模工具包括Leachxs〜(TM)/管弦乐队,用于模拟废坦克碳化,主要组成浸出和污染物释放,以评估源期和近场条件。这里呈现的模拟包括对未加工的混凝土的灵敏度分析,以改变输入参数,包括组成,有效扩散性和热力学参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号