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Integral LOCA fragmentation test on high-burnup fuel

机译:高燃烧燃料的整体基因座碎片测试

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Increasing the fuel burnup limit in light water reactors is sought to enhance fuel cycle economics and requires establishing a technical basis. Experimental observations of severe fuel fragmentation under loss-of-coolantaccident conditions at Halden and Studsvik had raised the need for additional considerations during the development of this technical basis. These test data suggested that the burnup threshold for high burnup fuel fragmentation may be influenced by pre-transient power. Additional loss-of-coolant-accident test data is therefore valuable to complement these tests and enhance the current state of understating. Oak Ridge National Lab has developed the Severe Accident Test Station capable of examining the oxidation kinetics and accident response of irradiated fuel and cladding materials for design basis accident and beyond design basis accident scenarios. Severe Accident Test Station provides various temperature profiles, steam, and the thermal shock conditions necessary for integral loss of coolant accident testing, defueled oxidation quench testing, and hightemperature beyond design basis accident testing. Severe Accident Test Station has been successfully installed and demonstrated in the Irradiated Fuels Examination Laboratory at Oak Ridge National Lab. Furthermore, descriptions of the in-cell re-fabrication capabilities and assembly of the loss-of-coolant-accident test train are provided. Installation of the Severe Accident Test Station system and in-cell re-fabrication restores United States capability to examine postulated and extended loss-of-coolant-accident conditions on spent fuel and cladding and provides a platform for evaluating advanced fuel and accident-tolerant fuel cladding concepts. Lastly, three in-cell integral loss-of-coolant-accident test were performed in the Severe Accident Test Station and compared to the Nuclear Regulatory Commission sponsored loss-of-coolant-accident test as well as the original loss-ofcoolant-accident test performed at Argonne National Lab. The results of these tests as well as all publicly available integral loss-of-coolant-accident test were used to validate a threshold for high burnup fuel fragmentation.
机译:寻求增加轻型水反应堆中的燃料燃烧极限,以提高燃料循环经济学,并要求建立技术基础。在Halden和Studsvik在Haldentactacty病症中失去损失的严重燃料片段的实验观察提出了在开发技术基础上进行了其他考虑因素的需求。这些测试数据表明,高燃烧燃料碎片的燃烧阈值可能受到前瞬态功率的影响。因此,额外的冷却损失 - 事故测试数据是有价值的,可以补充这些测试并增强低估的当前状态。橡树岭国家实验室开发了严重事故试验站,能够检查辐照燃料和包层材料的氧化动力学和事故响应,以实现设计基础事故,超越设计基础事故情景。严重的事故测试站提供各种温度型材,蒸汽和冷却剂事故检测的整体损失所需的热冲击条件,防御氧化淬火测试和超出设计基事事故检测的高度。在橡树岭国家实验室的辐照燃料检测实验室中成功安装了严重的事故测试站。此外,提供了对电池内部重新制造能力和冷却损失事故试验列车的组装的描述。安装严重事故测试站系统和细胞内的重组恢复了美国能力,以检查花费燃料和包层的假设和扩展的冷却液事故条件,并为评估先进的燃料和事故耐燃料提供平台包层概念。最后,在严重的事故测试站进行了三种细胞内整体丧失的冷却剂 - 事故试验,与核监管委员会赞助的冷却剂事故测试以及原始丧失事故试验相比在阿尔冈国家实验室进行。这些测试的结果以及所有公开可用的整体损失事故测试用于验证高燃烧燃料碎片的阈值。

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