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Enhanced in-pile instrumentation at the Advanced Test Reactor

机译:Advanced Test Reactor上增强的桩内仪表

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摘要

Many of the sensors deployed at materials and test reactors cannot withstand the high flux/high temperature test conditions often requested by users at U.S. test reactors, such as the Advanced Test Reactor (ATR) at the Idaho National Laboratory. To address this issue, an instrumentation development effort was initiated as part of the ATR National Scientific User Facility in 2007 to support the development and deployment of enhanced in-pile sensors. This paper reports results from this effort. Specifically, this paper identifies the types of sensors currently available to support in-pile irradiations and those sensors currently available to ATR users. Accomplishments from new sensor technology deployment efforts are highlighted by describing new temperature and thermal conductivity sensors now available to ATR users. Efforts to deploy enhanced in-pile sensors for detecting elongation and realtime flux detectors are also reported, and recently-initiated research to evaluate the viability of advanced technologies to provide enhanced accuracy for measuring key parameters during irradiation testing are noted.
机译:材料和测试反应堆上部署的许多传感器无法承受美国测试反应堆用户经常要求的高通量/高温测试条件,例如爱达荷州国家实验室的高级测试反应堆(ATR)。为了解决此问题,作为ATR国家科学用户设施的一部分,在2007年启动了仪器开发工作,以支持增强型桩内传感器的开发和部署。本文报告了这项工作的结果。具体来说,本文确定了当前可用于支持桩内辐射的传感器类型以及ATR用户当前可使用的那些传感器。通过介绍现在可供ATR用户使用的新型温度和热导率传感器,突出了新传感器技术部署工作取得的成就。还报告了部署增强型桩内传感器以检测伸长率和实时通量检测器的工作,并且注意到最近启动的评估先进技术可行性的研究,以提高辐照测试过程中关键参数的测量精度。

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