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RESULTS AND CORRELATIONS FROM ANALYSES OF THE ENSA ENUN 32P CASK TRANSPORT TESTS

机译:ENSA ENUN 32P木桶运输测试分析的结果和相关性

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An ENUN 32P cask supplied by Equipos Nucleares S.A. (ENSA) was transported 9,600 miles by road, sea, and rail in 2017 in order to collect shock and vibration data on the cask system and surrogate spent fuel assemblies within the cask. The task of examining 101,857 ASCII data files - 6.002 terabytes of data (this includes binary and ASCII files) - has begun. Some results of preliminary analyses are presented in this paper. A total of seventy-seven accelerometers and strain gauges were attached by Sandia National Laboratories (SNL) to three surrogate spent fuel assemblies, the cask basket, the cask body, the transport cradle, and the transport platforms. The assemblies were provided by SNL, Empresa Nacional de Residuos Radiactivos, S.A. (ENRESA), and a collaboration of Korean institutions. The cask system was first subjected to cask handling operations at the ENSA facility. The cask was then transported by heavy-haul truck in northern Spain and shipped from Spain to Belgium and subsequently to Baltimore on two roll-on/roll-off ships. From Baltimore, the cask was transported by rail using a 12- axle railcar to the American Association of Railroads' Transportation Technology Center, Inc. (TTCI) near Pueblo, Colorado where a series of special rail tests were performed. Data were continuously collected during this entire sequence of multi-modal transportation events. (We did not collect data on the transfer between modes of transportation.) Of particular interest - indeed the original motivation for these tests - are the strains measured on the zirconium-alloy tubes in the assemblies. The strains for each of the transport modes are compared to the yield strength of irradiated Zircaloy to illustrate the margin against rod failure during normal conditions of transport. The accelerometer data provides essential comparisons of the accelerations on the different components of the cask system exhibiting both amplification and attenuation of the accelerations at the transport platforms through the cradle and cask and up to the interior of the cask. These data are essential for modeling cask systems. This paper concentrates on analyses of the testing of the cask on a 12-axle railcar at TTCI.
机译:2017年,Equipos Nucleares S.A.(ENSA)提供的ENUN 32P桶通过陆路,海运和铁路运输了9,600英里,以收集桶系统的震动和振动数据并替代桶中的乏燃料组件。检查101,857 ASCII数据文件-6.002 TB的数据(包括二进制和ASCII文件)的任务已经开始。本文介绍了一些初步分析的结果。桑迪亚国家实验室(SNL)总共将77个加速度计和应变仪连接到三个替代乏燃料组件,桶筐,桶身,运输底座和运输平台上。大会是由SNL,SNP的Empressa Nacional de Residuos Radiactivos(ENRESA)和韩国机构合作提供的。桶系统首先在ENSA设施中进行桶处理操作。然后,用重型卡车在西班牙北部运输该木桶,再从西班牙运至比利时,再由两艘滚装船将其运至巴尔的摩。从巴尔的摩开始,用12轴铁路车将木桶通过铁路运输到美国科罗拉多州普韦布洛附近的美国铁路协会运输技术中心公司(TTCI),并进行了一系列特殊的铁路测试。在多式联运事件的整个过程中不断收集数据。 (我们没有收集有关运输方式之间转移的数据。)特别令人感兴趣的-实际上是这些测试的最初动机-是在组件中的锆合金管上测得的应变。将每种运输方式的应变与辐照Zircaloy的屈服强度进行比较,以说明在正常运输条件下抵抗杆失效的余量。加速度计数据提供了桶系统不同组件上加速度的基本比较,显示了通过支架和桶直至桶内部的运输平台上加速度的放大和衰减。这些数据对于桶系统建模至关重要。本文着重于对TTCI的12轴有轨电车上的桶进行测试的分析。

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