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首页> 外文期刊>Annals of nuclear energy >In vessel neutron instrumentation for sodium-cooled fast reactors: Type, lifetime and location
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In vessel neutron instrumentation for sodium-cooled fast reactors: Type, lifetime and location

机译:用于钠冷快堆的容器中子仪器:类型,寿命和位置

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The in vessel instrumentation of sodium-cooled fast reactors must deliver measurements that are reliable and easy to interpret over several reactor cycles in order to fulfill the safety requirements. This paper compares, with respect to this requirement, three types of detectors that are widely used in neutron measurements: fission chambers, boron-lined proportional counters, self-powered neutron detectors. We use neutron spectra that are computed for preliminary design of sodium-cooled fast reactor in different representative locations: in diluting tubes within nuclear fuel assemblies, or in the lateral neutron protections. With an evolution code, we compute the expected signal for each type of detector, to assess whether its level is sufficient, and also its evolution over three operating cycles, to examine whether it is compatible with long term measurements. The conclusion is that fission chambers are the only type able to deliver an interpretable signal for a wide dynamic of reactor power and for three or more operating cycles. The two other types are shown to be inadequate.
机译:钠冷快堆的船上仪器必须提供可靠的测量值,并且在几个反应器周期内易于解释,以满足安全性要求。相对于此要求,本文比较了中子测量中广泛使用的三种探测器:裂变室,衬有硼的比例计数器,自供电中子探测器。我们使用计算得出的中子光谱在不同的代表性位置进行钠冷快堆的初步设计:在核燃料组件中的稀释管中或在横向中子保护装置中。使用演化码,我们可以计算每种检测器的预期信号,以评估其电平是否足够,还可以评估其在三个操作周期内的演化,以检查其是否与长期测量兼容。结论是,裂变室是唯一能够为反应堆动力的广泛动态以及三个或更多运行周期提供可解释信号的类型。其他两种类型显示不足。

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