首页> 外文会议>Instrumentation, Communications, Information Technology, and Biomedical Engineering (ICICI-BME), 2009 >Corrosion simulation of high density Al cladded fuel of G. A. Siwabessy Research Reactor
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Corrosion simulation of high density Al cladded fuel of G. A. Siwabessy Research Reactor

机译:G. A. Siwabessy研究堆的高密度掺铝燃料的腐蚀模拟

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Corrosion Simulation of High Density Fuel of G. A. Siwabessy Research Reactor. Prototypes of high density plate type fuel element have been fabricated. The uranium density 2 prototypes are 4.8 and 5.2 g/cm3, while the current loaded density in GAS reactor core is 2.96 g/cm3. Higher density fuel may prolong irradiation time, augment coolant velocity and cladding temperature. Corrosion layer decreases heat transfer across the aluminum cladding. The prediction had been conducted for an average and a realistic condition by using Y-S. Kim corrosion model that take into account the irradiation time, temperature, heat flux, pH, and cooling water velocity. Corrosion thickness had been evaluated for different core parameter: temperature, heat flux, and corrosion resistance. All simulation had been performed in ~100 days operations in 4 cycles, each divided by steps of 100 hours. The prediction found that the layer thickness increases as operation time, although temperature and flux decrease with time. A fluctuation of about 10 K and 10% of flux from the averages show less effect on corrosion layer, while increasing constantly 25 K augments significantly the layer thickness.
机译:G. A. Siwabessy研究堆高密度燃料的腐蚀模拟。已经制造出高密度板式燃料元件的原型。铀密度2个原型分别为4.8和5.2 g / cm 3 ,而GAS反应堆堆芯中当前的负载密度为2.96 g / cm 3 。较高密度的燃料可能会延长辐照时间,增加冷却剂速度和熔覆温度。腐蚀层减少了铝覆层之间的热传递。通过使用Y-S对平均值和实际条件进行了预测。考虑腐蚀时间,温度,热通量,pH和冷却水速度的Kim腐蚀模型。已针对不同的核心参数(温度,热通量和耐腐蚀性)评估了腐蚀厚度。所有模拟都在大约100天的操作中以4个周期执行,每个周期除以100小时。该预测发现,尽管温度和通量随时间降低,但层厚度随操作时间而增加。大约10 K的波动和平均流量的10%波动对腐蚀层的影响较小,而不断增加25 K会显着增加腐蚀层的厚度。

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