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Impact of power density profile on passive decay heat removal in prismatic HTGR

机译:功率密度分布对棱柱形HTGR被动衰减除热的影响

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Reactor designs with passive safety features have been actively developed ever since the Fukushima Daiichi Nuclear Power Plant accident in 2011. In our previous works, we investigated the design of a small, prismatic HTGR for passive decay heat removal and the relations of parameters for successful decay heat removal. For the power density distribution of the HTGR, the Bessel function was used in the radial direction and the cosine function in the vertical direction, assuming a barrel-type cylindrical core. In practice, the power density distribution is usually flattened by introducing burnable poisons or control rods during operation to prevent non-uniform power production throughout the core. The power density profile might have an effect on the passive safety features of the HTGR. Therefore, the influence of a flat power distribution on the passive safety features of a prismatic HTGR was investigated in the present study. Results showed that flattening the power density profile allowed greater thermal power with the same safety performance without changing the reactor dimensions or calculation conditions. On the other hand, a same-power reactor could be designed with a smaller size without worsening its passive safety features, which is highly advantageous from an economical point of view. Hence, it was confirmed that reactor safety characteristics could be improved by implementing uniform power density in the design. (C) 2015 Elsevier Ltd. All rights reserved.
机译:自2011年福岛第一核电站事故以来,具有被动安全功能的反应堆设计一直得到积极开发。在我们以前的工作中,我们研究了用于被动衰减排热的小型棱柱形HTGR的设计以及成功衰减的参数关系散热。对于HTGR的功率密度分布,假设桶形圆柱芯,则沿径向使用贝塞尔函数,而沿垂直方向使用余弦函数。实际上,通常通过在操作过程中引入可燃的毒药或控制棒来使功率密度分布平坦化,以防止整个堆芯产生不均匀的功率。功率密度曲线可能会影响HTGR的被动安全功能。因此,在本研究中研究了扁平功率分布对棱柱形HTGR被动安全特性的影响。结果表明,将功率密度分布图展平可以在不改变反应堆尺寸或计算条件的情况下以相同的安全性能获得更大的火力。另一方面,可以将同功率电抗器设计成较小的尺寸,而不会恶化其被动安全性,从经济角度来看,这是非常有利的。因此,证实了通过在设计中实现均匀的功率密度可以改善反应堆的安全特性。 (C)2015 Elsevier Ltd.保留所有权利。

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