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UNPROTECTED LOSS OF FLOW ANALYSIS OF A MILLION KILOWATT TRAVELING WAVE REACTOR CORE

机译:百万千瓦级行波反应堆堆芯流动分析的未受保护的损失

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Traveling wave reactor (TWR) is an innovation concept nuclear reactor, through the once-through deep burning, the proliferation of fuel can be achieved and the utilization rate of Uranium can be increased. TWR has the characteristics of long lifetime, deep burn up and nuclear nonproliferation, because of its physical character, which makes it to be an attractive innovation concept fast reactor. The China institute of atomic energy (CIAE) has designed a million kilowatt TWR core based on a breeding and burn principle, which has considered the current technological level of sodium cooled fast reactor. In this paper, based on the TWR core design scheme, considered the design of fuel assembly, neutronics and thermal-hydraulic, analyzed the Unprotected loss of flow (ULOF) accident in the TWR core with the SAS4A code, through which research about the transient safety characteristics of a million kilowatt travelling wave reactor core has been done. Analysis shows that the peak temperature of fuel, cladding and coolant in the TWR core have a certain margin from the safety limits through the negative feedback of itself in the ULOF accident, the core of the million kilowatt TWR demonstrates a good safety performance.
机译:行波反应堆(TWR)是一种创新概念的核反应堆,通过一次深度燃烧,可以实现燃料的扩散,并可以提高铀的利用率。 TWR由于其物理特性而具有寿命长,深度燃烧和核不扩散的特点,使其成为快速反应堆的一个有吸引力的创新概念。中国原子能研究院(CIAE)根据繁殖和燃烧原理设计了一个百万千瓦的TWR堆芯,该堆芯考虑了钠冷却快堆的当前技术水平。本文在TWR堆芯设计方案的基础上,考虑了燃料组件,中子学和热工液压的设计,用SAS4A代码分析了TWR堆芯的非保护流失(ULOF)事故,从而对瞬变现象进行了研究。已经完成了百万千瓦行波反应堆堆芯的安全特性。分析表明,在发生ULOF事故时,TWR堆芯燃料,包壳和冷却液的峰值温度与安全极限之间存在一定的裕度,其自身的负反馈表明,百万千瓦TWR堆芯具有良好的安全性能。

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