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Mathematical Modeling to Minimize Tritium Inventory of the Fuel Cycle of ITER

机译:数学建模以最小化磨机燃料循环的氚清单

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摘要

This paper proposes a mathematical model for the optimal operation of the fuel cycle of ITER. The developed model aims to minimize the tritium inventory in the fuel cycle by adopting a two-phased scheduling approach. To consider multiple equipment in the fuel cycle, the proposed solving algorithm is designed as sequential scheduling models: (Phase I) to minimize tritium inventory in the vacuum roughing system and (Phase II) to minimize tritium working inventory in the isotope separation system. The scheduling models are developed based on a state-task-network method. Given a required amount of tritium for fueling scenarios considering ramp-up, flat-top, and ramp-down, the proposed model provides the optimal operation plan for deuterium-tritium plasma operation including information on fueling rate, duration, and timing between each unit. Among six case studies, the noninductive tokamak operation mode with high tritium demands showed the highest tritium working inventory during one burn-and-dwell cycle.
机译:本文提出了一种用于磨损燃料循环的最佳运行的数学模型。开发的模型旨在通过采用双相位调度方法来最小化燃料循环中的氚库存。为了考虑燃料循环中的多个设备,所提出的求解算法被设计为顺序调度模型:(A相I),以最大限度地减少真空粗加工系统中的氚库存,并最小化同位素分离系统中的氚工作库存。 Scheduling模型是基于状态任务网络方法开发的。考虑到促进速度,平顶和斜坡的加油方案所需的氚,所提出的模型为氘代氚的等离子体操作提供了最佳运行计划,包括有关各个单位之间的加油率,持续时间和时序的信息。在六种案例研究中,具有高氚要求的非Intincuctive Tokamak操作模式在一个燃烧和停留周期内显示了最高的氚工作库存。

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