lfr冷却剂按偏好程度排序

V. Okunev
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引用次数: 0

摘要

提出并实现了一种按优先度对液态金属快堆冷却剂进行排序的新方法。该方法包括比较不同冷却剂和兼容结构材料的最佳LMFR布局。通过求解具有约束条件的数学规划问题,得到了平面布局。这个问题分三个阶段解决。在第一阶段,在对理化性质和成本进行初步分析的基础上,排除了成本高、工作温度范围小、沸点低、诱导活性高的不可接受金属(稀有金属)。第二阶段是获得不同冷却剂下LMFR的最佳布局。然后,利用词典法求解多准则问题,在比较最优LMFR布局的基础上,对冷却剂进行排序。第三阶段涉及对首选方案的分析。根据反应堆的功率和用途,最优选的冷却剂是不同的。对于中大功率反应堆,从钍矿石中提取铅是首选。对于低功率反应堆,首选来自多金属和铅矿的铅。在这种反应堆中,可以使用铀矿石中的铅。对于高温和极高温低功率反应堆,镓及其合金,包括镓铅合金,是首选。对于太空反应堆,基于共晶Na-K-Cs合金的冷却剂是更优选的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ranking of LMFR Coolants by Degree of Preference
A new approach to ranking the coolants of a liquid metal fast reactor (LMFR) by degree of preference is proposed and implemented. The approach involves comparing the optimal LMFR layouts with different coolants and compatible structural materials. The layouts were obtained in solving mathematical programming problems with restrictions in the same formulation. The problem is solved in three stages. At the first stage, on the basis of an elementary analysis of the physicochemical properties and cost, unacceptable metals with a high cost (rare metals), a small wide range of operating temperatures, a low boiling point, and high induced activity were excluded. The second stage involves obtaining the optimal layout of LMFR with different coolants. Then, using lexicographic methods for solving multicriteria problems, a coolant ranking procedure is carried out based on a comparison of the optimal LMFR layouts. The third stage involves the analysis of preferred options. Depending on the power and purpose of the reactor, the most preferred coolants are different. For medium and high power reactors, lead extracted from thorium ores is most preferred. For low power reactors, lead from polymetallic and lead ores is preferred. In such reactors, the use of lead of uranium ores is possible. For high- and very-high-temperature low power reactors, gallium and its alloys, including gallium-lead alloys, are preferred. For space reactors, a coolant based on the eutectic Na-K-Cs alloy is more preferred.
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