首页> 外文会议>American Nuclear Society;Conference on Nuclear Plant Instrumentation, Control and Human-Machine Interface Technologies >Wireless Reactor Power Distribution Measurement System Utilizing an In- Core Radiation and Temperature Tolerant Wireless Transmitter and a Radiation-Harvesting Power Supply
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Wireless Reactor Power Distribution Measurement System Utilizing an In- Core Radiation and Temperature Tolerant Wireless Transmitter and a Radiation-Harvesting Power Supply

机译:利用核内耐高温无线发射器和辐射收集电源的无线反应堆功率分配测量系统

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This paper describes the development of radiation and temperature tolerant electronicscapable of functioning inside an operating nuclear reactor vessel. The technology will enableevery fuel assembly in a commercial reactor to be instrumented with self-powered neutrondetectors (SPND) at different axial locations. Thermocouples for measuring the reactor coolanttemperature may also be installed in every fuel assembly, as will an associated vacuum microelectronic(VME) wireless transmitter to continuously broadcast the signals from the SPND and/orthermocouples to a single receiving antenna inside the reactor vessel that will route the signal outof the reactor vessel.The successful development of this technology would enable key operating parameters ofevery fuel assembly in a commercial reactor core to be continuously monitored. The increase inreactor power distribution measurement density relative to existing densities, where roughly onethirdof the fuel assemblies are instrumented, will significantly reduce the uncertainty in themeasured core peaking factors. Reducing the uncertainty in the measured core peaking factors willallow the core operating power levels to be increased. This result will, in turn, allow the reactor togenerate more electrical power from the same amount of fuel, operate at the same electrical outputpower level for longer periods before refueling with the same amount of fuel, or generate the sameamount of electricity from less fuel.
机译:本文介绍了耐辐射和耐高温电子产品的发展 能够在运行中的核反应堆中运行该技术将使 商用反应堆中的每个燃料组件均需配备自供电中子 探测器(SPND)在不同的轴向位置。用于测量反应堆冷却剂的热电偶 每个相关的真空微电子设备也可能会在每个燃料组件中安装最高温度 (VME)无线发射器,以连续广播来自SPND和/或 热电偶连接到反应堆容器内的单个接收天线,该天线将信号引出 反应堆容器 该技术的成功开发将使关键的运行参数成为可能。 商业反应堆堆芯中的每个燃料组件都将受到持续监控。增加 相对于现有密度的反应堆功率分布测量密度,约三分之一 的燃料组件已经过检测,将大大减少 测量的核心峰值因子。减少测得的核心峰值因子的不确定性将 允许增加核心工作功率水平。反过来,这一结果将使反应堆能够 从相同量的燃料产生更多的电力,以相同的电力输出运行 功率水平较长,然后再添加相同量的燃料或产生相同的燃料 减少燃料产生的电量。

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