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AN ADVANCED MATERIALS IRRADIATION FACILITY FOR MATERIALS AND FUELS IRRADIATIONS AT THE HIGH FLUX ISOTOPE REACTOR

机译:高通量同位素反应器中先进的材料和燃料辐照设施

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The Materials Irradiation Facility (MIF) at the High-Flux Isotope Reactor (HFIR) of Oak Ridge National Laboratory (ORNL) is one of the two experimental platforms in the US that can host fully instrumented and monitored experiments in a high-neutron-flux environment. The unique advantage of instrumented capsules is that the researcher can monitor and acquire in situ data and change capsule operating conditions in real time during the irradiation. This also enables measurement of a variety of material properties, such as conductivity, fission product composition, etc, that otherwise would only be available upon post irradiation examination where non-equilibrium conditions brought upon by irradiation do not exist. Recently ORNL funded a Laboratory-Directed Research and Development (LDRD) project to strategically enhance the capabilities of this facility and provide researchers with a more flexible experimental platform. MIF improvements include an updated and more sophisticated experiment monitoring system, a modular design allowing easier addition of simultaneous experiments, and features that allow rapid incorporation of additional instrumentation This paper introduces the MIF and discusses the features that make the MIF attractive for new material irradiation experiments. At the heart of the facility is the gas supply system that is used to control experiment temperature during irradiation. Historically, the gas supply and associated control logic were specific to each experiment, thus requiring a redesign for each experimental program and increasing time and experiment cost. The current system has a gas delivery system that is both modular and re-configurable. The need to redesign the instrumentation and control (I&C) system and build specific hardware for each experiment is avoided by incorporating software-reconfigurable control modules The paper highlights MIF and HFIR irradiation capabilities and provides a synopsis of the facility, emphasizing new MIF scientific capabilities to make challenging irradiation measurements that support national and international fission and fusion energy programs.
机译:橡树岭国家实验室(ORNL)的高通量同位素反应堆(HFIR)的材料辐照设施(MIF)是美国的两个实验平台之一,可以在高中子通量中进行完全仪器化和监测的实验环境。仪器化胶囊的独特优势在于,研究人员可以监控和获取原位数据,并在照射过程中实时更改胶囊的工作条件。这也使得能够测量多种材料特性,例如电导率,裂变产物组成等,否则仅在不存在由辐照引起的非平衡条件的辐照后检查时才可用。最近,ORNL资助了一个实验室导向的研究与开发(LDRD)项目,以从战略上增强该设施的功能,并为研究人员提供更灵活的实验平台。 MIF的改进包括更新和更复杂的实验监控系统,模块化设计(可轻松添加同时进行的实验)以及可快速合并其他仪器的功能。本文介绍了MIF,并讨论了使MIF对新材料辐照实验具有吸引力的功能。 。设施的核心是气体供应系统,该系统用于控制辐照期间的实验温度。从历史上看,气体供应和相关的控制逻辑特定于每个实验,因此需要针对每个实验程序进行重新设计,并增加时间和实验成本。当前系统具有模块化和可重新配置的气体输送系统。通过合并软件可重新配置的控制模块,避免了重新设计仪器和控制(I&C)系统以及为每个实验构建特定硬件的需求。本文着重介绍了MIF和HFIR辐射功能,并概述了该设施,强调了新的MIF科学功能,进行具有挑战性的辐射测量,以支持国家和国际裂变与聚变能计划。

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