HTTR-IS核制氢系统概念设计

Hidenori Sato, N. Sakaba, Naoki Sano, H. Ohashi, Yuu Tachibana, K. Kunitomi
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引用次数: 1

摘要

核制氢的关键安全问题之一是为过程热应用提供热量的中间热交换器(IHX)的传热管破裂。本研究的重点是在HTTR和IS制氢系统(htr -IS系统)中IHX管破裂场景(IHXTR)的检测方法和系统行为评估。结果表明,监测二次氦气供应积分是最有效的检测方法。此外,同时驱动两个隔离阀可以减少氦气从一次冷却系统到二次冷却系统的输送。系统行为的结果表明,评估项目在场景中没有超过可接受标准。最高燃料温度也没有超过初始值,因此反应堆堆芯没有严重损坏,也没有得到充分冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conceptual design of the HTTR-IS nuclear hydrogen production system
One of the key safety issues for nuclear hydrogen production is the heat transfer tube rupture in intermediated heat exchangers (IHX) which provide heat to process heat applications. This study focused on the detection method and system behaviour assessments during the IHX tube rupture scenario (IHXTR) in the HTTR coupled with IS process hydrogen production system (HTTR-IS system). The results indicate that monitoring the integral of secondary helium gas supply would be the most effective detection method. Furthermore, simultaneous actuation of two isolation valves could reduce the helium gas transportation from primary to secondary cooling systems. The results of system behaviour show that evaluation items do not exceed the acceptance criteria during the scenario. Maximum fuel temperature also does not exceed initial value and therefore the reactor core was not seriously damaged and cooled sufficiently.
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