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Nuclear Design of Helical Cruciform Fuel Rods

机译:螺旋十字形燃料棒的核设计

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摘要

In order to increase the power density of current and new light water reactor designs, the Helical Cruciform Fuel (HCF) rods are proposed. The HCF rods are equivalent to a cylindrical rod, with the fuel in a cruciform shaped, twisted axially. The HCF rods increase the surface area to volume ratio and inter-subchannel mixing behavior due to their cruciform and helical shapes, respectively. In a previous study, the HCF rods have shown the potential to uprate existing PWRs by 50% and BWRs by 25%. However, HCF rods do display different neutronics modeling and performance. The cruciform cross section of HCF rods creates radially asymmetric heat generation and temperature distribution. The nominal HCF rod's beginning of life reactivity is reduced, compared to a cylindrical rod with the same fuel volume, by 500 pcm, due to increase in absorption in cladding. The rotation of these rods accounts for reactivity changes, which depends on the H/HM ratio of the pincell. The HCF geometry shows large sensitivities to U235 or gadolinium enrichments compared to a cylindrical geometry. In addition, the gadolinium-containing HCF rods show a stronger effect on neighboring HCF rods than in case of cylindrical rods, depending on the orientation of the HCF rods. The helical geometry of the rods introduces axial shadowing of about 600 pcm, not seen in typical cylindrical rods.
机译:为了增加当前和新的轻水反应堆设计的功率密度,提出了螺旋十字形燃料(HCF)棒。 HCF棒等效于圆柱形棒,燃料为十字形,轴向扭曲。 HCF棒分别由于其十字形和螺旋形形状而增加了表面积与体积之比和子通道间的混合行为。在先前的研究中,HCF棒显示了将现有PWR和BWR分别提高50%和25%的潜力。但是,HCF棒确实显示出不同的中子学模型和性能。 HCF棒的十字形横截面产生径向不对称的热量生成和温度分布。与具有相同燃料量的圆柱形杆相比,由于覆层吸收的增加,标称HCF杆的使用寿命开始时反应降低了500 pcm。这些棒的旋转说明了反应性的变化,这取决于针状细胞的H / HM比。与圆柱几何相比,HCF几何显示出对U235或g富集的高度敏感性。另外,取决于HCF棒的取向,含ofHCF棒比圆柱形棒的情况对相邻的HCF棒表现出更强的作用。杆的螺旋几何形状引起大约600 pcm的轴向阴影,这在典型的圆柱杆中是看不到的。

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