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Transient fuel performance analysis of UO_(2)–BeO fuel with composite SiC coated with Cr cladding based on multiphysics method 被引量:1
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作者 Chun‑Yu Yin Shi‑Xin Gao +3 位作者 Sheng‑Yu Liu Rong Liu Guang‑Hui Su Li‑Bo Qian 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2023年第12期93-108,共16页
The transient multiphysics models were updated in CAMPUS to evaluate the accident-tolerant fuel performance under accident conditions.CAMPUS is a fuel performance code developed based on COMSOL.The simulated results o... The transient multiphysics models were updated in CAMPUS to evaluate the accident-tolerant fuel performance under accident conditions.CAMPUS is a fuel performance code developed based on COMSOL.The simulated results of the UO_(2)–Zircaloy fuel performance under accident conditions were compared with those of the FRAPTRAN code and the experimental data to verify the correctness of the updated CAMPUS.Subsequently,multiphysics models of the UO_(2)–BeO fuel and composite SiC coated with Cr(SiC_(f)/SiC-Cr)cladding were implemented in CAMPUS.Finally,the fuel performance of the three types of fuel cladding systems under Loss of Coolant Accident(LOCA)and Reactivity Insertion Accident(RIA)conditions was evaluated and compared,including the temperature distribution,stress distribution,pressure evolution,and cladding failure time.The results showed that the fuel temperature of the UO_(2) fuel under accident conditions without pre-irradiation was lower after being combined with SiC_(f)/SiC-Cr cladding.Moreover,the centerline and outer surface temperatures of the UO_(2)–BeO fuel combined with SiC_(f)/SiC-Cr cladding reduced further under accident conditions.The cladding temperature increased after the combination with the SiC_(f)/SiC-Cr cladding under accident conditions with pre-irradiation.In addition,the use of SiC_(f)/SiC-Cr cladding significantly reduced the cladding hoop strain and plenum pressure. 展开更多
关键词 Accident condition Fuel performance uo2–beo fuel SiCf/SiC-Cr cladding
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电感耦合等离子体质谱法测定二氧化铀-氧化铍芯块中28种杂质元素 被引量:4
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作者 陈艳宏 杨永明 +1 位作者 张洪伟 柳永恒 《化学分析计量》 CAS 2020年第4期50-53,共4页
建立了电感耦合等离子体质谱法测定二氧化铀-氧化铍芯块中28种杂质元素的方法。样品用硝酸-盐酸-过氧化氢溶解,考察了样品基体对检测的影响,建立了铀基体分离方法。以铑元素为内标补偿基体效应和仪器信号的漂移,方法精密度均优于10%(n=... 建立了电感耦合等离子体质谱法测定二氧化铀-氧化铍芯块中28种杂质元素的方法。样品用硝酸-盐酸-过氧化氢溶解,考察了样品基体对检测的影响,建立了铀基体分离方法。以铑元素为内标补偿基体效应和仪器信号的漂移,方法精密度均优于10%(n=6),回收率为92%~107%。该方法具有检出限低,精密度高,操作简单,多元素同时测定的优点,满足化学检测要求,可应用于二氧化铀-氧化铍芯块中杂质元素的检测。 展开更多
关键词 二氧化铀-氧化铍芯块 电感耦合等离子体质谱法 杂质元素
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