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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Thermal Analysis of Irradiated Fuel Subassemblies and Fuel Pins During Storage in Concrete Pits of Head-End Facility
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Thermal Analysis of Irradiated Fuel Subassemblies and Fuel Pins During Storage in Concrete Pits of Head-End Facility

机译:头端设施混凝土窖中储存的辐照燃料组件和燃料销的热分析

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摘要

Irradiated fuel subassembly (SA)/fuel pins, with significant decay heat are transported from reactor and stored in hot cells (HCs) before reprocessing. During transportation they are heavily shielded and no forced cooling is provided. The HCs are made of concrete structures, the outer surfaces of which are force cooled. During these processes, the fuel pin clad temperature and concrete temperatures are to be limited within specific safety limits. These temperatures are function of the decay power and geometric details of surrounding structures. To predict these temperatures, three-dimensional conjugate conduction-convection-radiation heat transfer analysis has been carried out. For this purpose, the computational fluid dynamics (CFD) code STAR-CD has been utilized, wherein individual fuel pins, steel cans, hexagonal wrapper, lead shielding blocks, and concrete structures have been considered in detail. Based on parametric studies pertaining to fuel pin transportation, it is established that for a decay power of 150 W, natural convection is adequate with maximum clad temperature of 686K. From the studies related to storage in HCs, it is seen that nine fast breeder test reactor (FBTR) SA can stored in hot cell-1 (HC-1), with a decay power of 31.3 W per SA, to respect the temperature limits. For 3 prototype fast breeder reactor (PFBR) cans and 2 FBTR cans stored in hot cell-3 (HC-3), a decay power of 12.5 W per FBTR can and 44 W per PFBR can, can be handled without exceeding temperature limits.
机译:辐射后的燃料子组件(SA)/燃料销具有明显的衰减热量,从反应堆中运出并存储在热室(HCs)中,然后再进行处理。在运输过程中,它们被严格屏蔽,没有提供强制冷却。 HC由混凝土结构制成,其外表面被强制冷却。在这些过程中,燃料针的包层温度和混凝土温度应限制在特定的安全范围内。这些温度是衰减功率和周围结构的几何细节的函数。为了预测这些温度,已经进行了三维共轭传导-对流-辐射传热分析。为此,已经使用了计算流体动力学(CFD)代码STAR-CD,其中已详细考虑了各个燃料销,钢罐,六角形包装纸,铅屏蔽块和混凝土结构。根据与燃料销运输相关的参数研究,可以确定对于150 W的衰减功率,自然对流是足够的,最大包层温度为686K。从与在HC中存储相关的研究中可以看出,可以在热电池1(HC-1)中存储九个快速增殖试验反应堆(FBTR)SA,每个SA的衰减功率为31.3 W,以遵守温度限制。对于在热室3(HC-3)中存储的3个原型快速增殖反应堆(PFBR)罐和2个FBTR罐,可以在不超过温度限制的情况下处理每个FBTR罐12.5 W和每个PFBR罐44 W的衰减功率。

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