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Selected aspects related to the calculations and design of a cryogenic transfer line

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper presents the results of calculations of a planned helium transfer line operating at cryogenic temperatures as low as 4.5 K. A strength analysis was conducted for the cryogenic transfer line designed to transport supercritical and gaseous helium. The strength analysis of a transfer line operating at extremely low temperatures was conducted using the Finite Element Method (FEM) for complex boundary conditions. The results of numerical calculations served as the basis for the design documentation of the XATL1 cryogenic line to be installed at DESY site.
Rocznik
Strony
231--241
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr.
Twórcy
autor
  • Wrocław University of Technology, Faculty of Mechanical Engineering, Łukasiewicza 7/9, 50-371 Wrocław, Poland
autor
  • Wrocław University of Technology, Faculty of Mechanical and Power Engineering, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
autor
  • Wrocław University of Technology, Faculty of Mechanical Engineering, Łukasiewicza 7/9, 50-371 Wrocław, Poland
autor
  • Wrocław University of Technology, Faculty of Mechanical and Power Engineering, Wybrzeże Wyspiańskiego 27, 50-370 Wrocław, Poland
autor
  • Wrocław University of Technology, Faculty of Mechanical Engineering, Łukasiewicza 7/9, 50-371 Wrocław, Poland
Bibliografia
  • [1] K.D. Timmerhaus, R.P. Reed, Cryogenic Engineering: Fifty Years of Progress, Springer, New York, 2007 .
  • [2] A. Nishimura, H. Takamura, S. Imagawa, Temperature and strain behaviour of large helical device during coil excitation, Advances in Cryogenic Engineering, vol. 45, Springer New York, 2000.
  • [3] B. Bellin, P. Tixador, M. Deleglise, J.C. Vallier, Cryogenic design of a 800 kJ HTS SMES, Journal of Physics: Conference Series 43 (2006) 817–820.
  • [4] J. Brennan, et al., Cooldown of cryogenic transfer lines – an experimental. Report, NBS (now NIST) Report 9264, November 7, 1966.
  • [5] J.L. Claboche, A review of some plasticity and viscoplasticity constitutive theories, International Journal of Plasticity 24 (2008) 1642–1693.
  • [6] H. Egner, B. Skoczen, Ductile damage development in two-phase metallic materials applied at cryogenic temperatures, International Journal of Plasticity 26 (4) (2010) 488–506.
  • [7] E. Rusińskiski, Finite Element Method – System COSMOS/M, WKŁ, Warsaw, 1994 .
  • [8] E. Rusiński, J. Czmochowski, T. Smolnicki, Advanced Finite Element Method for Load-carrying Structures of Machines, Oficyna Wydawnicza PWr., Wroclaw, 2000 (in Polish).
  • [9] E. Rusiński, Design Principles for Supporting Structures of Self-Propelled Vehicles, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław, 2002 (in Polish).
  • [10] J. Fydrych, M. Chorowski, J. Polinski, J. Skrzypacz, Design methodology of long complex helium cryogenic transfer lines, Transactions of the Cryogenic Engineering Conference-CEC: Advances in Cryogenic Engineering. AIP Conference Proceedings, vol. 1218, 1103–1110.
  • [11] J. Fydrych, J. Skrzypacz, M. Chorowski, Thermo-mechanical static analysis of the process lines and external vacuum envelope of the XFEL/AMTF cryogenic transfer line XATL1, Raporty Inst. Inz. Lot. Proces. Masz. Energ. PWroc. 2009, Ser. SPR nr 14, 2009.
  • [12] J.Skrzypacz,J.Fydrych,M.Chorowski,Conceptualdesignof cryogenic transfer line XATL1 for XFEL/AMTF, Raporty Inst. Inz. Lot. Proces. Masz. Energ. PWroc., Ser. SPR nr 25, 2009 (in Polish).
  • [13] A. Iluk, E. Rusiński, Strength analysis of the kinematic pairs of a mobile collapsible bridge, Archives of Civil and Mechanical Engineering 11 (4) (2011) 875–884.
  • [14] S. Van Sciver, Helium Cryogenics, Low-Temperature Materials Properties, Springer, New York, 2012.
  • [15] H.M. Ledbetter, Stainless-steel elastic constants at low temperature, Journal of Applied Physics 52 (3) (1981) 1587–1589.
  • [16] W.L. Ko, Thermocryogenic Buckling and Stress Analyses of a Partially Filled Cryogenic Tank Subjected to Cylindrical Strip Heating, NASA Technical Memorandum 4579, 1994.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c8c9e115-3ac2-4215-b254-5383250299ac
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