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Source Term Study on Tritium in HTR-PM: Theoretical Calculations and Experimental Design

机译:HTR-PM氚的来源术语研究:理论计算和实验设计

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摘要

The high temperature gas-cooled reactor pebble-bed module (HTR-PM) in China received much attention for its inherent safety performance and high thermal efficiency. The generation mechanism, distribution, reduction route, and release type of tritium (H-3) in HTR-PM are presented with a complete theoretical model. The calculation results indicate the majority of H-3 in the core is generated by the activation reaction of B-10. The activity concentration of H-3 in the primary loop and the specific activity of H-3 in the secondary loop at the operating equilibrium are computed as 3.69 × 106 Bq/m3STP of helium and 4.22 × 104 Bq/kg of water, respectively. The H-3 sampling measurement in HTR-PM has been designed to collect data from the primary coolant, from the liquid waste storage tank, from the secondary coolant, and from the liquid and gaseous effluents, separately. In this paper, the design of H-3 sampling positions in the helium purification system is discussed. The H-3 sampling measurement from the primary helium in HTR-PM has been improved, which can provide reliable activity concentration data of H-3 in the primary loop and supply accurate evaluation for the efficiency of the helium purification system.
机译:中国高温气体冷却反应堆卵石床模块(HTR-PM)因其固有的安全性能和高热效率而受到巨大的关注。 HTR-PM中的发电机制,分布,减少路线和释放类型的氚(H-3)具有完整的理论模型。计算结果表明核心的大部分H-3由B-10的活化反应产生。初级环中H-3的活性浓度和在操作平衡的次级回路中的H-3的比活性分别计算为氦气和4.22×104bq / kg水的3.69×106bq / m3stp。 HTR-PM中的H-3采样测量被设计为分别地从液体废料储罐从液体废物储罐和液态流出物中收集来自液体废物储罐的数据。本文讨论了氦净化系统中H-3采样位置的设计。 HTR-PM中初级氦的H-3采样测量得到了改善,其可以在初级环路中提供H-3的可靠活动浓度数据,并为氦净化系统的效率提供准确评估。

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