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Measurements of the isothermal, power and temperature reactivity coefficients of the IPR-R1 TRIGA reactor

机译:IPR-R1 TRIGA反应器的等温,功率和温度反应系数的测量

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The aim of this paper is to present the experimental results of the isothermal, power and temperature coefficients of reactivity of the 1PR-R1 TRIGA reactor at the Nuclear Technology Development Center -CDTN in Brazil. The measured isothermal reactivity coefficient, in the temperature range measured, was -0.5 c/℃, and the reactivity measurements were performed at 10 W to eliminate nuclear heating. The reactor forced cooling system was turned off during the measurements. When the reactor is at zero power there is no sensible heat being released in the fuel, and the entire reactor core can be characterized by a single temperature. The power coefficient of reactivity obtained was approximately -0.63 c/ kW, and the temperature reactivity coefficient of the reactor was -0.8 c/℃. It was noted that the rise in the coolant temperature has contributed only with a small fraction to the observed negative effect of the reactivity. The power defect, which is the change in reactivity taking place between zero power and full power (250 kW), was 1.6 $. Because of the prompt negative temperature coefficient, a significant amount of reactivity is needed to overcome temperature and allow the reactor to operate at the higher power levels in steady state.
机译:本文的目的是介绍巴西核技术开发中心-CDTN的1PR-R1 TRIGA反应堆的反应性的等温,功率和温度系数的实验结果。在测得的温度范围内测得的等温反应活性系数为-0.5 c /℃,并在10 W下进行反应活性测量以消除核加热。在测量期间关闭反应堆强制冷却系统。当反应堆处于零功率时,燃料中不会释放任何显热,整个反应堆堆芯的特征在于单一温度。得到的反应性的功率系数约为-0.63c / kW,反应器的温度反应性系数为-0.8c /℃。注意到冷却剂温度的升高仅对观察到的反应性的负面影响贡献很小。功率缺陷为1.6 $,即零功率与全功率(250 kW)之间发生的反应性变化。由于迅速的负温度系数,需要大量的反应性来克服温度并使反应器在稳态下以较高的功率运行。

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