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Calculation of γ radiation converted to thermal energy in nuclear reactor shielding facilities

机译:核反应堆屏蔽设施中转化为热能的γ辐射的计算

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摘要

The heat generation within a shield can be a primary consideration in its design, especially when the shield is for high power reactor in which rather large temperature increases can be expected. The heating up of the shield itself can be utilized via a suitable flow of water on the outside of the said shield or, in the case of thermal shields, using the nuclear reactor coolant leading to energy saving in nuclear power plants. The thermal energy generation rate inside the shielding materials is calculated using the build up factor method for multi-energy photons emitted from disc geometry radiation source and a comparison has been made in order to estimate the percentage of energy captured, and therefore saved, inside the shielding layers. In this paper the use of build up factor is suggested for thermal energy estimation in shielding materials such as Al, Fe and Pb and comparison with the results produced from the application of MCNP-4A computer code. This is a continuation of the work done by Bakos [Bakos, G.C., 1995. Benchmark data for g-rays emitted by an Na-24 source penetrating stratified shielding slabs. IEEE Trans. Nucl. Sci. 42 (2), 61-65].
机译:屏蔽罩内的热量生成可能是其设计的主要考虑因素,尤其是在屏蔽罩用于大功率反应堆的情况下,在这种情况下,预计会有相当大的温度升高。护罩本身的加热可以通过在所述护罩外部的适当水流来利用,或者在热护罩的情况下,使用核反应堆冷却剂来节省核电厂的能量。屏蔽材料内部的热能生成率是使用累积因子方法计算的,该方法用于从圆盘几何形状辐射源发射的多能量光子,并进行了比较,以估计捕获并因此节省了能量的能量百分比。屏蔽层。在本文中,建议使用建立因子来估算屏蔽材料(如Al,Fe和Pb)中的热能,并与应用MCNP-4A计算机代码产生的结果进行比较。这是Bakos [Bakos,G.C.,1995年所做的工作的延续。Na-24源穿透分层屏蔽板发射的g射线的基准数据。 IEEE Trans。核仁科学42(2),61-65]。

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  • 来源
    《Annals of nuclear energy》 |2006年第3期|p.236-241|共6页
  • 作者

    George C. Bakos;

  • 作者单位

    Democritus University of Thrace, Department of Electrical and Computer Engineering, Laboratory of Energy Economics, 67 100 Xanthi, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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