首页> 外文期刊>Nuclear Engineering and Design >MYRRHA primary heat exchanger experimental simulations on CIRCE- HERO
【24h】

MYRRHA primary heat exchanger experimental simulations on CIRCE- HERO

机译:MYRRHA在CIRCE-HERO上的一次换热器实验模拟

获取原文
获取原文并翻译 | 示例
       

摘要

In the frame of the MYRRHA ADS technological development, an intense research effort has been undertaken by European Commission, in particular for the Heavy Liquid Metal technology assessment. In this scenario, EURATOM HORIZON2020 funded the SESAME & MYRTE projects, coordinating a series of thermal hydraulics experiments and simulations for the safety assessment of liquid metal fast reactors. In particular, in the MYRTE project, a dedicated activity has been defined, consisting of a low pressure experimental campaign realized at the ENEA Brasimone Research Centre and concerning a double wall Steam Generator Bayonet Tube (SGBT), aiming at supporting the development of the Primary Heat Exchanger (PHX) of MYRRHA.The CIRCE (CIRColazione Eutettico) pool facility hosts a devoted Test Section (TS) named HERO (Heavy liquid mEtal pRessurized water cOoled tubes). HERO consists of seven double wall bayonet tubes, with an active length of 6 m, arranged in a hexagonal geometry. This solution aims at improving the plant safety reducing the possibility of water-lead/leadalloy interaction thanks to a double physical separation between them and allowing an easier control of potential leakages of the coolant by pressurizing the separation region with inert gas.The experimental campaign in CIRCE-HERO has been supported by a pre-test analysis using system thermal-hydraulic codes (i.e. RELAP5). A sensitivity analysis has been performed considering the mass flow rate and HERO inlet temperature for both the water and LBE, fixing the operating pressure at 16 bar.A test matrix, as produced as output of the sensitivity analysis and aimed at reproducing as faithfully as possible the thermal-hydraulic behaviour of the MYRRHA PHX under different operating conditions, is here presented. The experimental results collected from the low pressure tests on HERO test section are reported and discussed.
机译:在MYRRHA ADS技术发展的框架内,欧盟委员会进行了深入的研究,特别是在重金属液体技术评估方面。在这种情况下,EURATOM HORIZON2020资助了SESAME&MYRTE项目,协调了一系列热液学实验和模拟,以评估液态金属快堆的安全性。特别是,在MYRTE项目中,已定义了一项专门的活动,包括在ENEA Brasimone研究中心实现的低压实验活动,该活动涉及双壁蒸汽发生器刺刀管(SGBT),旨在支持主蒸汽发生器的开发。 MYRRHA的热交换器(PHX).CIRCE(CIRColazione Eutettico)泳池设施设有一个专用的测试部分(TS),名为HERO(重金属液体加压水冷却管)。 HERO由七个以六角形几何形状排列的活动卡口长度为6 m的双层卡口管组成。该解决方案旨在提高工厂的安全性,由于它们之间的双重物理分离,从而减少了水-铅/铅合金相互作用的可能性,并通过用惰性气体对分离区域加压来简化冷却剂潜在泄漏的控制。使用系统热工代码(即RELAP5)进行的预测试分析为CIRCE-HERO提供了支持。考虑到水和LBE的质量流量和HERO入口温度进行了灵敏度分析,将工作压力固定在16 bar。作为灵敏度分析输出生成的测试矩阵,旨在尽可能忠实地再现本文介绍了MYRRHA PHX在不同运行条件下的热工液压行为。报告并讨论了从HERO测试段的低压测试收集的实验结果。

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