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Effect of Ni/Fe Ratio and Ni Concentration on Crud Deposition Behavior on Heated Zircaloy-4 Surface in Simulated PWR Primary Water

机译:Ni / Fe比和Ni浓度对模拟压水堆原水加热的Zircaloy-4表面粗粒沉积行为的影响

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Crud deposition on fuel cladding surface would become significant issue in Japanese PWRs, because the large amounts of crud deposition has led to an increase of the dose rate in the primary coolant system and become a root cause of axial offset anomalies (AOA). In order to clarify the contribution factors of the deposition, the effects of heat flux, Ni/Fe ratio and nickel concentration in the test solution on the crud deposition were investigated in a simulated Japanese PWR fuel cycle chemistry at 325°C under sub-cooled boiling and non-irradiated condition. From the test results, it was revealed that the crud layer composed of NiFe2O4 and NiO was formed on the fuel cladding. The amounts of deposited crud layer increased with increase of heat flux and Ni/Fe ratio in the test solution. Ni contents in the crud layer increased with increase ofNi concentration in the test solution.
机译:在日本的压水堆中,燃料包壳表面的沉淀物沉积将成为重要的问题,因为大量的沉淀物沉积已导致一次冷却剂系统中剂量率的增加,并且成为轴向偏移异常(AOA)的根本原因。为了阐明沉积的影响因素,在模拟过的日本PWR燃料循环化学反应中,在325°C下过冷的情况下,研究了测试溶液中的热通量,Ni / Fe比和镍浓度对粗粒沉积的影响。沸腾和非辐照状态。从测试结果可以看出,在燃料包壳上形成了由NiFe 2 O 4和NiO组成的碎屑层。随着测试溶液中热通量和Ni / Fe比的增加,沉积的沉淀层数量增加。随着测试溶液中Ni浓度的增加,粗料层中的Ni含量增加。

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