中国安全科学学报 ›› 2022, Vol. 32 ›› Issue (5): 97-103.doi: 10.16265/j.cnki.issn1003-3033.2022.05.1048

• 安全工程技术 • 上一篇    下一篇

钠冷堆非能动余热排出系统热力特性分析

王严冬(), 陈永东, 邓靜   

  1. 合肥通用机械研究院有限公司,安徽 合肥 230031
  • 收稿日期:2021-12-11 修回日期:2022-03-15 出版日期:2022-08-17 发布日期:2022-11-28
  • 作者简介:

    王严冬 (1986—),男,安徽淮南人,博士,助理研究员,主要从事传热传质机理、复杂系统热力行为研究。E-mail:

    陈永东, 教授

  • 基金资助:
    国家重点研发计划项目(2017YFF0209802); 安徽省科技重大专项项目(202003a05020025)

Analysis on thermal characteristics of PRHRS of sodium-cooled reactors

WANG Yandong(), CHEN Yongdong, DENG Jing   

  1. Hefei General Machinery Research Institute Co., Ltd., Hefei Anhui 230031, China
  • Received:2021-12-11 Revised:2022-03-15 Online:2022-08-17 Published:2022-11-28

摘要:

为掌握系统自然循环热力行为特性和相关设备安全性,基于能量平衡和流动平衡耦合建立钠冷堆非能动余热排出系统(PRHRS)热力模型,探究位差、密度差等非能动特性对系统的影响机制,并利用印度原型增殖快堆(PFBR)PRHRS试验结果验证模型的正确性,明确管程数、翅片厚度、烟囱直径、风门开度对热力循环的影响特征。结果表明:随管程数增加,空气热交换器(AHX)传热系数减小13.6%,同时压降增加66.4%,在低管程数时系统综合传热性能较优;随拔风烟囱内径增加或翅片厚度增加,AHX传热系数及压降增加而单位压降传热系数降低,设计中存在最优解;在极端低温工况时减小风门面积可有效提升设备运行温度以及系统传热效果,有助于保障系统安全运行。

关键词: 钠冷堆, 非能动余热排出系统(PRHRS), 印度原型增殖快堆(PFBR), 自然循环, 流动平衡

Abstract:

In order to study thermal behavior characteristics of natural circulation of the system and related equipment's safety, a PRHRS thermal model of sodium-cooled reactor was established based on coupling of energy balance and flow balance. Then, influence mechanism of passive characteristics on system was explored, including potential difference and density difference. Finally, the model was verified with experimental results of PFBR, and influence laws of the number of tube passes, fin thickness, chimney diameter, and air door opening degree on thermodynamic cycle were clarified. The results show that along with increase of tube passes, heat transfer coefficient of air heat exchanger (AHX) decreases by 13.6% while pressure drop increases by 66.4%, and the system's heat transfer performance is better when the number of tube passes smaller. When inner diameter of exhaust chimney or fin thickness increases, the coefficient and pressure drop increase while heat transfer coefficient per unit pressure drop decreases, and there is an optimal solution in the design. Reducing area of inlet air door can effectively increase operating temperature of equipment and heat transfer effect of system in extreme low temperature conditions, which ensures safe operation of the system.

Key words: sodium-cooled reactor, passive residual heat removal system (PRHRS), prototype fast breeder reactor (PFBR), natural circulation, flow balance