首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >SCOPING SYSTEM ANALYSIS OF KALIMER-600 DESIGN CONCEPT
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SCOPING SYSTEM ANALYSIS OF KALIMER-600 DESIGN CONCEPT

机译:KALIMER-600设计概念的覆盖系统分析

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The Korea Atomic Energy Research Institute (KAERI) is developing KALIMER (Korea Advanced Liquid Metal Reactor), which is a sodium-cooled, metallic-fueled, pool-type reactor. The KALIMER-600 design concept (600 MWt) was selected as one of the reference GEN-IV sodium-cooled fast reactors (SFRs). The safety design philosophy of KALIMER-600 places maximum reliance on passive responses to abnormal and emergency conditions, and minimizes the need for active and engineered safety systems.rnKALIMER-600 utilizes the intrinsic negative reactivity feedback effect under design extended conditions where reactor scram failures are postulated. In order to assess the effectiveness of the inherent safety features, a scoping system analysis during unprotected overpower, loss of flow and under cooling events has been performed using the system-wide transient analysis code SSC-K.rnThe present scoping analysis focuses on identification of enhanced safety design features that provide passive and self-regulating response to transient conditions and evaluation of safety margins. The results of the scoping analysis indicate an understanding of various inherent reactivity feedback mechanisms is very important in establishing design features. The analysis results show that the KALIMER-600 design concepts provide larger safety margins with respect to sodium boiling, fuel rod integrity, and structural integrity. The inherent safety can be enhanced by accounting for reactivity feedback mechanisms in the design process.
机译:韩国原子能研究所(KAERI)正在开发KALIMER(韩国先进的液态金属反应堆),这是一种钠冷却,金属燃料的池型反应堆。选择了KALIMER-600设计理念(600 MWt)作为参考GEN-IV钠冷快堆(SFR)之一。 KALIMER-600的安全设计理念最大程度地依赖于对异常和紧急情况的被动响应,并最大程度地减少了对主动和工程安全系统的需求。rnKALIMER-600利用了在设计扩展条件下固有的负反应性反馈效应,在这种情况下,反应堆急停故障是假定。为了评估固有安全功能的有效性,已使用系统范围的瞬态分析代码SSC-K对无保护的过功率,流量损失和冷却事件下的范围系统进行了分析。增强的安全设计功能,可提供对瞬态条件的被动和自我调节响应并评估安全裕度。范围分析的结果表明,了解各种固有的反应性反馈机制对于建立设计功能非常重要。分析结果表明,KALIMER-600的设计理念在钠沸腾,燃料棒完整性和结构完整性方面提供了更大的安全裕度。通过在设计过程中考虑反应性反馈机制,可以提高固有安全性。

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