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DEVELOPMENT OF A METHOD FOR EVALUATION OF PIN-WISE POWER DISTRIBUTION IN FUEL ASSEMBLIES OF FAST REACTORS

机译:快速反应器燃料组件细微功率分配评估方法的开发

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In the design of fast reactor core with higher burnup and higher linear power, prediction accuracy of burnup history of fuel pin should be upgraded so as to assure fuel integrity without extra design margin under increased neutron fluence and burnup. A method is studied to predict fuel pin-wise power and its burnup history in fast reactors accurately based on an analytic solution of diffusion theory equation on hexagonal geometry with boundary condition from core calculation by finite-differenced diffusion calculation code. The present method is applied to a fast reactor core model, and its accuracy in predicting fuel pin power is tested. The result is compared with the reference solution by the finite difference calculation with very fine mesh. It is found that the present method predicts tile power peaking factors in fuel assemblies accurately The fuel pin-wise nuclide depletion calculation is also done using neutron fluxes for each fuel pin. The result shows that the fuel pin-wise depletion calculation is very important in predicting the burnup history of the fuel assembly in detail. [References: 7]
机译:在具有更高燃耗和更高线性功率的快速反应堆堆芯设计中,应提高燃料销燃耗历史的预测精度,以确保在中子通量和燃耗增加的情况下,燃料完整性不会有额外的设计余量。基于有限差分扩散计算代码的堆芯计算,基于边界条件六角形几何扩散理论方程的解析解,研究了一种快速预测快速反应堆燃料逐级功率及其燃尽历史的方法。本方法应用于快速反应堆堆芯模型,并测试了其预测燃料销功率的准确性。通过非常精细的网格的有限差分计算,将结果与参考解进行比较。发现本方法准确地预测了燃料组件中的瓦斯功率峰值因子。还使用每个燃料针的中子通量来进行燃料针式核素消耗的计算。结果表明,燃料逐针消耗计算对于详细预测燃料组件的燃耗历史非常重要。 [参考:7]

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