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CURRENT STATUS OF SPINNORs DESIGNS

机译:Spinnors设计的当前状态

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摘要

This study discuss about the SPINNOR (Small Power Reactor, Indonesia, No On-site Refuelling) and the VSPINNOR (Very Small Power Reactor, Indonesia, No On-site Refuelling) which are small lead-bismuth cooled nuclear power reactors with fast neutron spectrum that could be operated for more than 10 or 15 years without on-site refuelling. They are based on the concept of a long4ife core reactor developed in Indonesia since early 1990 in collaboration with the Research Laboratory for Nuclear Reactors of the Tokyo Institute of Technology (RLNR TITech). The reactor cores are designed to have near zero (less then one effective delayed neutron fraction) bum-up reactivity swing during the whole course of their operation to avoid a possibility of prompt criticality accident. The basic concept is that central region of the reactor core is filled with fertile (blanket) material. During the reactor operation fissile material accumulates in this central region, which helps to compensate fissile material loss in the peripheral core region and also contributes to negative coolant loss reactivity effect. A concept of high fuel volume fraction in the core is applied to achieve smaller size of a critical reactor. In this paper we consider to add Np-237 to the fuel to. enhance non proliferation characteristics of the systems. The effect of Np-237 amount variation is discussed.
机译:这项研究讨论了Spinnor(小型电力反应堆,印度尼西亚,无现场加油)和VSPinnor(非常小的电力反应堆,印度尼西亚,没有现场加油),这是具有快节中子谱的小型铅铋冷却核电反应堆如果没有现场加油,这可以在10或15年内运营。自1990年初自1990年初以自1990年初在印度尼西亚开发的Long4ife核心反应器的概念,与东京工业大学(RLNR Titech)的核反应堆进行合作。反应器芯设计成具有接近零(小于一个有效的延迟中子分数)在其操作过程中的凹陷反应性摆动,以避免迅速致力于意外的可能性。基本概念是反应器芯的中心区域填充有肥沃(毯子)材料。在反应堆操作期间,在该中心区域中蓄积的裂变材料有助于补偿周边核心区域中的裂变材料损失,并且还有助于负冷却剂损失反应性效果。施加芯中高燃料体积分数的概念,以实现较小的临界反应器的尺寸。在本文中,我们认为将NP-237添加到燃料中。增强系统的不增殖特性。讨论了NP-237量变异的影响。

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