Design and Thermal-Hydraulic Evaluation of Integrated Steam Generator with Serpentine-Tube Configuration for Prevention of Sodium-Water Reaction

Author:

Kim Namhyeong1ORCID,Yoon Jung2ORCID,Eoh Jaehyuk2ORCID,Kim Moo Hwan13ORCID,Jo HangJin13ORCID,Kim Hyungmo4ORCID

Affiliation:

1. Division of Advanced Nuclear Engineering, POSTECH, 77, Cheogam-ro, Nam-gu, Pohang 37673, Republic of Korea

2. Korea Atomic Energy Research Institute (KAERI), 111, Daedeok-daero 989, Yuseong-gu, Daejeon 34057, Republic of Korea

3. Department of Mechanical Engineering, POSTECH, 77, Cheogam-ro, Nam-gu, Pohang 37673, Republic of Korea

4. School of Mechanical Engineering, Gyeongsang National University, 501, Jinju-daero, Jinju 52828, Republic of Korea

Abstract

Although sodium-cooled fast reactors (SFRs) can have inherently enhanced safety features, there is a concern regarding unexpected events arising from a sodium-water reaction (SWR) in a Rankine cycle steam generator. Innovative concepts of integrated steam generators (ISGs), including an intermediate heat exchanger, have been suggested for eliminating an SWR by employing an intermediate fluid between liquid sodium and steam/water system. In this study, we propose an ISG designed with a novel tube configuration: a serpentine tube-type integrated steam generator (S-ISG). Furthermore, we developed a dedicated one-dimensional thermal-hydraulic analysis code for the specific design evaluation of the S-ISGs. The evaluation results are reported with reasonable explanations and compared with the results obtained using a conventional CFD tool to analyze local thermal-hydraulic characteristics that cannot be shown in the one-dimensional analyses. The proposed S-ISG has an inherent advantage for modularization as well as prevention of SWR; therefore, it is characterized by its ability to improve operational efficiency even in the case of repair, despite the low space efficiency. The results demonstrate that the component developed in this study can serve as an option to maintain cost efficiency while enhancing the public acceptability of an SFR.

Funder

Ministry of Science, ICT and Future Planning

Publisher

Hindawi Limited

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

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4. A new LMR SG with a double tube bundle free from SWR;Y. S. Sim;Journal of the Korean Nuclear Society,2003

5. Development of an advanced LMR steam generator free from SWR with a double tube bundle configuration;Y. S. Sim

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