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IN-CORE NEUTRON DETECTORS FOR CHARACTERIZING HIGH TEMPORAL-RESOLUTION REACTOR TRANSIENTS

机译:用于表征高时 - 分辨率电抗器瞬变的核心中子探测器

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The technology required to measure fast transient needs to be small enough to quantify near point-like measurements and needs to acquire sufficient amounts of data over the typical span of a fast transient, which can be as small as 20ms. For this purpose, a detector system has been developed that can measure neutron flux levels between fuel elements at various heights. The structural system designed for this system is a versatile system that minimally impacts the reactor operation but allows the movement of a detector within the structure essentially without restriction. Detailed thermal-hydraulic simulations were performed to ascertain the impact of this structure on the safety of the reactor especially with regards to me Minimum Departure from Nucleate Boiling Ratio (MDNBR). The geometry of the detector featured a detector diameter of 0.4 cm and a height of 1.9 cm, with the high voltage and coaxial signal cable fitted within an aluminum tube with an internal diameter of 0.95 cm. This detector tube would then fit into the detector structure that allowed detector tubes with a maximum outer diameter of 1.067 cm. Data acquisition is achieved at a rate of 250 MHz which allows very detailed characterization of fast transients.
机译:测量快速瞬态所需的技术需要足够小,以量化近点测量,并且需要在快速瞬态的典型跨度上获取足够量的数据,这可以是20ms。为此目的,已经开发了一种检测器系统,其可以在各种高度处测量燃料元件之间的中子磁通水平。为该系统设计的结构系统是一种多功能系统,其微小地影响反应器操作,而是允许基本上没有限制地在结构内移动。进行详细的热液压模拟,以确定该结构对反应器的安全影响,特别是对我来说最小偏离核心沸腾比(MDNBR)。检测器的几何形状以0.4cm的探测器直径和1.9cm的高度,高压和同轴信号电缆装配在铝管内,内径为0.95厘米。然后,该检测管将配合进入探测器结构,使探测器管的最大外径为1.067厘米。数据采集​​以250 MHz的速率实现,允许非常详细地表征快速瞬变。

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