참고문헌
- M. Ogawa and T. Nishihara, 'Present Status of Energy in Japan and HTTR Project,' Nuclear Engineering and Design, Vol. 233, Issues 1-3, pp. 5-10 (2004) https://doi.org/10.1016/j.nucengdes.2004.07.018
- IAEA, 'Heat Transport and Afterheat Removal for Gas Cooled Reactors under Accident Conditions,' IAEA- TECDOC-1163, Vienna (2000)
- S. Saito et al., 'Design and Safety Consideration in the High-Temperature Engineering Test Reactor (HTTR),' IAEA-TC-389, Dimitrovgrad (1989)
- Wu et al., 'The Design Features of the HTR-10,' Nuclear Engineering and Design, Vol. 218, pp. 25-32 (2002) https://doi.org/10.1016/S0029-5493(02)00182-6
- IAEA, 'Current Status and Future Development of Modular High Temperature Gas Cooled Reactor Technology,' IAEA-TECDOC-1198 (2001)
- D.A. Dilling et al., 'Passive Decay and Residual Heat Removal in the MHTGR,' IAEA-TECDOC-757, Juelich (1982)
- W. J. Lee et al., 'Development of MARS-GCR for Gas-Cooled Reactor Analysis - Incorporation of Gas Properties,' Proceeding of NURETH-10, Seoul, Korea, October (2003)
- S. W. Lee et al., 'Preliminary Sensitivity Study on Gas-Cooled Reactor for NHDD System Using MARS-GCR,' Proceeding of Korea Nuclear Society Autumn Meeting, Busan, Korea, October (2005)
- PBMR Ltd., 'Reactor Safety Analysis Report of the South-African Pebble-Bed Modular Reactor (PBMR),' Rev. E, Centurion, South-Africa (2000)
- S. Kakac, R.K. Shah and W. Aung, Handbook of Singlephase Convective Heat Transfer, A Wiley-Interscience publication (1987)
- W. B. Hooper, 'The Two-K Method Predicts Head Losses in Pipe Fittings,' Chemical Engineering, pp. 96-100 (1981)
- Frank P. Incropera, David P. DeWitt, Introduction to Heat Transfer, John Wiley & Sons, Third Edition (1996)
- Y. Mori and W. Nakayama, 'Study on Forced Convective Heat Transfer in Curved Pipes,' International Journal of Heat and Mass Transfer, Vol. 10, pp. 37-59 (1967) https://doi.org/10.1016/0017-9310(67)90182-2
-
S. R. Tailby and P.W. Staddon, 'The Influence of
$90^{\circ}$ and$180^{\circ}$ Pipe Bends on Heat Transfer from an Internally Flowing Gas Stream,' Heat Transfer, Vol.2 paper No. FC 4.5 (1970) - M. Moshfeghian and K.J. Bell, 'Local Heat Transfer Measurements in and Downstream from a U-bend,' ASME paper No. 79-HT-82 (1979)
- G. W. Hogg, 'The Effect of Secondary Flow on Point Heat Transfer Coefficients for Turbulent Flow inside Curved Tubes,' Ph.D. Thesis, Univ. of Idaho (1968)
- J. Pruvost, J. Legrand and P. Legentilhomme, 'Numerical Investigation of Bend and Torus Flows, Part I: Effect of Swirl Motion on Flow Structure in U-bend,' Chemical Engineering Science, Vol. 59, pp. 3345 -3357 (2004) https://doi.org/10.1016/j.ces.2004.03.040
- S. W. Churchill and H. H. S. Chu, 'Correlating Equations for Laminar and Turbulent Free Convection from a Vertical Plate,' International Journal of Heat and Mass Transfer, Vol. 18, pp. 1323-1329 (1975) https://doi.org/10.1016/0017-9310(75)90243-4
- Zukauskas. A.A., Heat Transfer from Tubes in Cross Flow, Adv. Heat Transfer Academic, 8, pp.93-106 (1972)