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Source efficiency as function of fuel and coolant in accelerator-driven systems

机译:源效率与加速器驱动系统中燃料和冷却剂的关系

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We have studied the efficiency of spallation neutron sources for different combinations of coolant and fuel in 80 MW_(th), sub-critical, cores. It has been found that the proton source efficiency, ψ~*, is reduced by 10% when switching coolant from helium to lead-bismuth eutectic. Substituting MOX fuel with an americium based fuel, results in another 10% reduction of ψ~*. The relatively high source efficiencies found for prototype accelerator-driven systems, using standard MOX fuel and helium coolant, may thus be difficult to achieve in future systems dedicated to the transmutation of higher actinides. Our results are in agreement with previous investigations of the dependence of the source efficiency on the selection of coolant.
机译:我们研究了散裂中子源对80 MW_(th)次临界核心中冷却剂和燃料的不同组合的效率。已经发现,当将冷却剂从氦气切换到铅铋共晶时,质子源效率ψ〜*降低了10%。用基于based的燃料代替MOX燃料会导致ψ〜*降低10%。因此,在未来的专用于高级act系元素systems变的系统中,使用标准MOX燃料和氦冷却剂的原型加速器驱动系统所发现的相对较高的源效率可能很难实现。我们的结果与以前关于源效率对冷却剂选择的依赖性的研究一致。

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