首页> 外文会议>International topical meeting on advances in thermal hydraulics;American Nuclear Society meeting >STUDY ON REACTOR VESSEL AIR COOLING FOR WESTINGHOUSE LEAD FAST REACTOR
【24h】

STUDY ON REACTOR VESSEL AIR COOLING FOR WESTINGHOUSE LEAD FAST REACTOR

机译:西屋铅快速反应器反应釜空冷的研究

获取原文

摘要

Westinghouse Electric Company is developing its Next Generation of high-capacity nuclear power plant based on Lead Fast Reactor (LFR) technology: a Generation IV, compact, highly simplified, passively safe, and scalable nuclear power plant. In addition to superior economics for enabling competitiveness even in the most challenging electricity market, exceptional safety performance is actively pursued in the design of the plant, leveraging the inherent favorable properties of lead coolant as well as safety features intrinsic in the design. Being decay heat removal an integral part of any plant's safety philosophy, a systematic process of concept selection has been employed across a wide variety of decay heat removal system designs. Among them, air cooling outside of the reactor vessel is one of the concepts that is being actively evaluated by Westinghouse. In this paper, the use of air cooling in nuclear reactors is discussed together with the identification of benefits and challenges associated with reactor vessel air cooling in LFR technology. The heat removal capability of this system is assessed with three computer codes, differing in complexity and suitability to 'rapid prototyping' design activities carried out by Westinghouse during different phases of plant design. Though the computer codes were developed separately, the results of the three evaluation models tend to support each other, thus increasing the confidence in the information provided to progress the Westinghouse LFR design and establish its safety basis. Additional validation through existing and potentially new test data is foreseen as future work within the Westinghouse LFR program.
机译:西屋电气公司正在开发基于铅快速反应堆(LFR)技术的下一代大容量核电站:第四代,紧凑,高度简化,被动安全和可扩展的核电站。除了卓越的经济效益,即使在最具挑战性的电力市场中也能提供竞争力,工厂的设计还积极地追求卓越的安全性能,从而充分利用铅冷却液固有的有利特性以及设计固有的安全特性。衰减除热是任何工厂安全理念不可或缺的一部分,因此系统的概念选择过程已广泛应用于各种衰减除热系统设计中。其中,反应堆容器外部的空气冷却是西屋公司正在积极评估的概念之一。在本文中,讨论了在核反应堆中使用空气冷却以及确定与LFR技术相关的反应堆容器空气冷却的优点和挑战。该系统的排热能力通过三个计算机代码进行评估,其复杂性和适用性均不适合Westinghouse在工厂设计的不同阶段进行的“快速原型”设计活动。尽管计算机代码是分别开发的,但三个评估模型的结果往往会相互支持,从而增加了对为改进西屋LFR设计并建立其安全基础而提供的信息的信心。预计在西屋LFR计划的未来工作中,将通过现有和潜在的新测试数据进行进一步的验证。

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