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ESBWR- Robust Design for Natural Circulation and Stability Performance Effectiveness

机译:ESBWR-用于自然循环和稳定性效果的鲁棒设计

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ESBWR is a 4500 MWt Generation Ⅲ+ natural circulation reactor with an array of robust design features and passive safety systems to deliver highly effective plant performance during normal operation and to keep the reactor safe during postulated transients and accidents. With the submittal of the latest revision of the Design Control Document (DCD) to US Nuclear Regulatory Commission, ESBWR is nearing the completion of the US design certification process. This paper focuses on the natural circulation-driven plant performance aspects during normal operation, and stability evaluation of the robust ESBWR design. The TRACG computer code is used for the analysis of ESBWR plant performance, safety analysis, and stability margins. The paper describes the evaluation of ESBWR stability performance during normal power operation including operation in the Core Power-Feed Water Temperature Operating Domain. For ESBWR the normal power operation condition has the highest power/flow ratio and is limiting from the perspective of stability. The paper includes results from detailed evaluation of the most limiting decay ratio for out-of-phase regional oscillations calculated by perturbing the core inlet flow rate in this out-of-phase mode about the line of symmetry for the azimuthal harmonic mode. The paper also summarizes the ESBWR regional mode stability evaluations during a limiting transient (Loss of Feedwater Heating), and during ATWS (Anticipated Transient without Scram). Nominal decay ratios of limiting Channel oscillation, Core wide oscillation and Regional oscillation are within the maximum acceptance criterion of 0.8, at 95% content and 95% confidence. These stability evaluation results indicate decay ratio is within design limits. The paper also describes the evaluation of ESBWR stability performance during plant startup, and summarizes the defense-in-depth stability solution for ESBWR.
机译:ESBWR是4500 MWT生成Ⅲ+天然循环反应器,具有稳健的设计特征和被动安全系统,在正常运行期间提供高效的工厂性能,并在假定的瞬变和事故期间保持反应器安全。凭借“设计控制文件(DCD)的最新修订向美国核监管委员会提交,ESBWR即将完成美国设计认证过程的完成。本文重点介绍了正常运行期间自然循环驱动的植物性能方面,稳定性评估稳健的ESBWR设计。 TRACG计算机代码用于分析ESBWR工厂性能,安全性分析和稳定性边缘。本文介绍了在正常功率操作期间ESBWR稳定性性能的评估,包括核心电力供水温度操作域的操作。对于ESBWR,正常功率操作条件具有最高的功率/流量,并且从稳定性的角度来限制。本文包括通过对通过对其四方谐波模式的对称线扰动核心入口流速来计算核心入口流速来计算的最限制性区域振荡的最限制性区域振荡的结果。本文还总结了在限制瞬态(注液加热损失)和ATW期间(未经扰流的预期瞬态)期间的ESBWR区域模式稳定性评估。限制信道振荡,核心宽振荡和区域振荡的标称衰减比率在0.8的最大验收标准范围内,95%含量为95%和95%的信心。这些稳定性评估结果表明衰减比率在设计限制范围内。本文还描述了在工厂启动期间对ESBWR稳定性性能进行评估,并总结了ESBWR的防御深度稳定性解决方案。

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