Thermal-Hydraulic Investigations of a Horizontal Dry Cask Simulator

S. Durbin, E. Lindgren, Ramon Pulido, A. Salazar
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Abstract

Recent advances in horizontal cask designs for commercial spent nuclear fuel have significantly increased maximum thermal loading. This is due in part to greater efficiency in internal conduction pathways. Carefully measured data sets generated from testing of full-sized casks or smaller cask analogs are widely recognized as vital for validating thermal-hydraulic models of these storage cask designs. While several testing programs have been previously conducted, these earlier validation studies did not integrate all the physics or components important in a modern, horizontal dry cask system. The purpose of this investigation is to produce data sets that can be used to benchmark the codes and best practices presently used to calculate cladding temperatures and induced cooling air flows in modern, horizontal dry storage systems. The horizontal dry cask simulator (HDCS) has been designed to generate this benchmark data and complement the existing knowledge base. Transverse and axial temperature profiles along with induced-cooling air flow are measured using various backfills of gases for a wide range of decay powers and canister pressures. The data from the HDCS tests will be used to host a blind model validation effort.
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卧式干桶模拟器的热液特性研究
商业用乏核燃料水平桶设计的最新进展显著提高了最大热负荷。这部分是由于内部传导途径的效率更高。从全尺寸木桶或小型木桶类似物的测试中产生的仔细测量数据集被广泛认为是验证这些储存木桶设计的热水力模型的关键。虽然之前已经进行了几个测试项目,但这些早期的验证研究并没有整合现代水平干桶系统中所有重要的物理或组件。本调查的目的是产生数据集,可用于基准代码和最佳做法,目前用于计算包层温度和诱导冷却气流在现代,水平干存储系统。水平干桶模拟器(HDCS)已被设计用于生成基准数据并补充现有知识库。横向和轴向温度分布以及诱导冷却气流使用各种气体回填进行测量,用于广泛的衰减功率和罐压。来自HDCS测试的数据将用于主持盲模型验证工作。
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