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논문 상세정보

동심축 이중관 구조에서 유동기인진동 특성 고찰

Investigation of FIV Characteristics on a Coaxial Double-tube Structure

Abstract

A Very High Temperature Gas Cooled Reactor (VHTR) has been selected as a high energy heat source of the order of $950^{\circ}C$ for nuclear hydrogen generation, which can produce hydrogen from water or natural gas. A primary hot gas duct (HGD) as a coaxial double-tube type cross vessel is a key component connecting a reactor pressure vessel and an intermediate heat exchanger in the VHTR. In this study, a structural sizing methodology for the primary HGD of the VHTR is suggested in order to modulate a flow-induced vibration (FIV). And as an example, a structural sizing of the horizontal HGD with a coaxial double-tube structure was carried out using the suggested method. These activities include a decision of the geometric dimensions, a selection of the material, and an evaluation of the strength of the coaxial double-tube type cross vessel components. Also in order to compare the FIV characteristics of the proposed design cases, a fluid-structure interaction (FSI) analysis was carried out using the ADINA code.

참고문헌 (23)

  1. Chang, J. H. et al., 2007, 'A Study of a Nuclear Hydrogen Production Demonstration Plant,' Nuclear Engineering and Technology, Vol. 39, No .4, pp. 111-112 
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  3. Huang, Z. Y. et al., 2002, 'Design and Experiment of Hot Gas Duct for the HTR-10,' Nuclear Engineering and Design, Vol. 218, p. 137 
  4. Nakase, T., Midoriyama, S., Roko, K. and Yoshizaki, A., 1984, 'Two Layers Thermal Insulations Tests for Designing of Hot Gas Ducts,' Specialist's Meeting on Heat Exchanging Components of Gas-cooled Reactors, Duesseldorf, Germany, April 16-19 
  5. Chen, Y. N., 1970, 'Flow-induced Vibration in Tube Bundle Heat Exchangers with Cross and Parallel Flow, Part I: Parallel Flow,' in Flowinduced Vibration in Heat Exchangers, ASME, New York, pp. 57-66 
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  8. Kang, H. S. et al., 2003, 'Axial-flow-induced Vibration for a Rod Supported by translation Springs at Both Ends,' Nuclear Engineering and Design, Vol. 220, pp. 83-90 
  9. Blevins, R. D., 1990, Flow-Induced Vibration, 2nd ed., Van Nostrand Reinhold, New York, pp. 268-271 
  10. McEligot, D. M., Ormand, L. W. and Perkins, H. C., 1966, 'Internal Low Reynolds Number Turbulent and Transitional Gas Flow with Heat Transfer' , Journal of Heat Transfer, Vol. 88, pp. 239–245 
  11. ASME Boiler and Pressure Vessel Code, Section III, Division 1, Subsection ND-Class 3 Components, 1993 
  12. ASME Boiler and Pressure Vessel Code, Section III, Division 1, Subsection NF-Component Support, 1993 
  13. Kim, Y. W. et al., 2009, Development of Essential Technology for VHTR, KAERI/RR-2992/2008 
  14. H2-MHR Pre-conceptual Design Report, GA-A25401, 2006, General Atomics 
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  16. Kim, W. G., 2006, 'Heat Property Data of Alloy 617,' Internal Memorandum of KAERI NHDD Project, NHDD-KA-06-MA-BT-002 
  17. Kim, S. H., 2006, 'Properties of Pressure Vessel Candidates(SA508-Gr.3 and Modified 9Cr-1Mo),' Internal Memorandum of KAERI NHDD Project, NHDD-KA-06-MA- BT-003 
  18. Kim, D. W., 2006, 'Properties of Core Barrel Candidate(Alloy 800),' Internal Memorandum of KAERI NHDD Project, NHDD-KA-06-MA-BT-001 
  19. NIST, Thermo-physical Properties of Fluid System, http://webbook.nist.gov/chemistry/fluid/ 
  20. ADINA R&D Inc., ADINA Theory and Modelling Duide Vol. III: ADINA CFD & FSI, Report ARD 08-9, Feb. 2008 
  21. Wambsganss, M. W. and Chen, S. S., 1971, 'Tentative Design Guide for Calculating the Vibration Response of Flexible Cylindrical Elements in Axial Flow,' Argonne National laboratory Report ANL-ETD-71-07 
  22. US NRC Standard Review Plan, Chapter 3.7.2., 1985 
  23. GT-MHR Conceptual Design Description Report, 1996, GA-910720, Rev. 1, General Atomics 

이 논문을 인용한 문헌 (5)

  1. Song, Kee-Nam ; Lee, Heong-Yeon ; Kim, Chan-Soo ; Hong, Seong-Duk ; Park, Hong-Yoon 2011. "High-temperature Structural Analysis of Small-scale Prototype of Process Heat Exchanger (III)" 大韓機械學會論文集. Transactions of the Korean Society of Mechanical Engineers. A. A, 35(2): 191~200 
  2. Song, Kee-Nam ; Lee, Heong-Yeon ; Hong, Sung-Deok ; Park, Hong-Yoon 2011. "Macroscopic High-Temperature Structural Analysis Model of Small-Scale PCHE Prototype (II)" 大韓機械學會論文集. Transactions of the Korean Society of Mechanical Engineers. A. A, 35(9): 1137~1143 
  3. Song, Kee-Nam ; Hong, Sung-Deok ; Park, Hong-Yoon 2011. "High-Temperature Structural Analysis of a Small-Scale Prototype of a Process Heat Exchanger (IV) - Macroscopic High-Temperature Elastic-Plastic Analysis -" 大韓機械學會論文集. Transactions of the Korean Society of Mechanical Engineers. A. A, 35(10): 1249~1255 
  4. Song, Kee-Nam ; Lee, Heong-Yeon ; Kim, Chan-Soo ; Hong, Sung-Duk ; Park, Hong-Yoon 2011. "Macroscopic High-Temperature Structural Analysis Model for a Small-Scale PCHE Prototype (I)" 大韓機械學會論文集. Transactions of the Korean Society of Mechanical Engineers. A. A, 35(11): 1499~1506 
  5. Kim, Eui Soo ; Kim, Jong Hyuk 2014. "Forensic Engineering Study on Structure Stability Evaluation of Deep Cement Mixing Vessel using ADINA Software" 大韓機械學會論文集. Transactions of the Korean Society of Mechanical Engineers. A. A, 38(11): 1283~1290 

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