首页> 外文会议>Asian Physics Symposium >Effect of Fuel Fraction on Small Modified CANDLE Burn-up Based Gas Cooled Fast Reactors
【24h】

Effect of Fuel Fraction on Small Modified CANDLE Burn-up Based Gas Cooled Fast Reactors

机译:燃料分数对小型改性蜡烛燃烧的气体冷却快电反应器的影响

获取原文

摘要

A conceptual design study of Gas Cooled Fast Reactors with Modified CANDLE Burn-up has been performed. The objective of this research is to get optimal design parameters of such type reactors. The parameters of nuclear design including the critical condition, conversion ratio, and burn-up level were compared. These parameters are calculated by variation in the fuel fraction 47.5% up to 70%. Two dimensional full core multi groups diffusion calculations was performed by CITATION code. Group constant preparations are performed by using SRAC code system with JENDL-3.2 nuclear data library. In this design the reactor cores with cylindrical cell two dimensional R-Z core models are subdivided into several parts with the same volume in the axial directions. The placement of fuel in core arranged so that the result of plutonium from natural uranium can be utilized optimally for 10 years reactor operation. Modified CANDLE burn-up was established successfully in a core radial width 1.4 m. Total thermal power output for reference core is 550 MW. Study on the effect of fuel to coolant ratio shows that effective multiplication factor (k_(eff))is in almost linear relations with the change of the fuel volume to coolant ratio.
机译:已经进行了具有改性蜡烛烧伤的气体冷却快速反应器的概念设计研究。本研究的目的是获得这种反应堆的最佳设计参数。核设计的参数,包括临界病症,转化率和烧伤水平。这些参数通过燃料分数47.5%的变化计算,高达70%。通过引文代码执行二维全核多组扩散计算。通过使用JENDL-3.2核数据库使用SRAC代码系统进行组常量准备。在该设计中,具有圆柱形电池二维R-Z芯模型的反应器芯被细分为轴向上具有相同体积的若干部件。在芯中放置燃料布置成使得来自天然铀的钚的结果可以最佳地用于10年的反应器操作。改进的蜡烛刻录成功成功地在核心径向宽度1.4米处建立。用于参考核的总热功率输出为550 MW。研究燃料对冷却剂比的影响表明,与燃料量与冷却剂比的变化几乎是线性关系的有效倍增因子(K_(EFF))。

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