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A negative reactivity feedback driven by induced buoyancy after a temperature transient in lead-cooled fast reactors

机译:在铅冷却快堆中温度转变后由诱导浮力驱动的负反应反馈

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摘要

Consideration is given to the possibility to use changes in buoyancy as a negative reactivity feedback mechanism during temperature transients in heavy liquid metal fast reactors (HLMFRs). It is shown that by the proper use of heavy pellets in the fuel elements, fuel rods could be endowed with a passive self-ejection mechanism and then with a negative feedback. A first estimate of the feasibility of the mechanism is calculated by using a simplified geometry and model. If in addition, a neutron poison pellet is introduced in the bottom of the fuel, then when the fuel element is displaced upward by buoyancy force, the reactivity will be reduced not only by disassembly of the core but also by introducing the neutron poisson from the bottom. The use of induced buoyancy opens up the possibility of introducing greater amounts of actinides into the core, as well as providing a palliative solution to the problem of positive coolant temperature reactivity coefficients that could be featured by the HLMFRs.
机译:考虑了在重金属快堆(HLMFR)的温度瞬变过程中使用浮力变化作为负反应性反馈机制的可能性。结果表明,通过在燃料元件中适当使用重颗粒,燃料棒可以具有被动的自我喷射机制,然后具有负反馈。通过使用简化的几何形状和模型,可以对该机构的可行性进行初步估算。此外,如果在燃料底部引入中子毒丸,那么当燃料元件通过浮力向上移动时,反应性将不仅通过拆解堆芯而降低,而且还通过从中子引入中子泊松来降低。底部。诱导浮力的使用开辟了将更多的act系元素引入岩心的可能性,并为HLMFR可能具有的正冷却剂温度反应性系数问题提供了姑息解决方案。

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