首页> 外文会议>International Conference on Nuclear Engineering >Discussion of the Effects of AP1000 First Core Loading Pattern Design on Nuclear Power Plant Operation
【24h】

Discussion of the Effects of AP1000 First Core Loading Pattern Design on Nuclear Power Plant Operation

机译:探讨AP1000第一核装载模式设计对核电厂运行的影响

获取原文

摘要

Core loading pattern design has great influence on nuclear power plant operation. An excellent core loading pattern can not only enhance operation factor, reduce operation cost, but also increase operation safety. Under the premise of nuclear safety, AP1000 first core loading pattern achieves the goal of low leakage loading by simulating the reactivity distribution of the 18-month Equilibrium Cycle design. The fuel management presented in this paper illustrates the economic performance and technical feasibility of the advanced 18-month cycle first core fuel. The advanced feature of this first core design include: the development of loading pattern that simulates the reactivity distribution of a typical low leakage reload core in order to reduced leakage, the use of radial enrichment zoning in higher enriched assemblies to lower peaking factors, and the use of axial burnable absorber zoning to improve axial power shape control and reduce axial peaking. The discussion provided in this paper demonstrates the ability of the advanced first core design operate safety and efficiently, and the core is designed with adequate peaking factor margin in both base-load and load-follow operation. Finally, this paper analyses the impact brought about by multi-enrichment on the nuclear power plant operation capacity and operation cost, and arrive at a conclusion that precise fuel cycle evaluation such that the enrich uranium and operation costs can be accurately quantified and control in a detailed economic evaluation.
机译:核心装载模式设计对核电厂运行产生了很大的影响。优异的核心装载模式不仅可以增强操作因素,降低运营成本,还可以提高运行安全性。在核安全的前提下,AP1000首个核心装载模式通过模拟18个月平衡循环设计的反应性分布来实现低泄漏负荷的目标。本文提出的燃料管理说明了先进的18个月周期第一核燃芯燃料的经济性能和技术可行性。该第一核心设计的先进特征包括:在更低泄漏的情况下,模拟典型低泄漏重载核心的反应性分布的加载模式的开发,以更高富集的组件中的径向浓缩分区到较低的峰值因子,以及轴向燃烧吸收器分区采用轴向动力形状控制,减少轴向峰值。本文提供的讨论表明,先进的第一核心设计操作安全性和有效的能力,并且核心在碱基负载和负载跟随操作中具有足够的峰值系数余量。最后,本文分析了多重富集对核电站运营能力和运营成本所带来的影响,并得出结论,即精确的燃料循环评估,使得丰富的铀和运营成本可以准确地量化和控制详细的经济评价。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号