Numerical investigation on the dryout point of annular flow in the upward narrow annuli with bilateral heating

Frontiers of Energy and Power Engineering in China - Tập 1 Số 3 - Trang 264-272 - 2007
G.H. Su1, Fuyuan Duan2, Suizheng Qiu1, Zhenggang Xiao2, Yanping Huang2
1State Key Laboratory of Multiphase Flow in Power Engineering, Xi’an Jiaotong University, Xi’an, China
2National Key Laboratory of Bubble and Natural Circulation, Nuclear Power Institute of China, Chengdu, China

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Tài liệu tham khảo

Su Guanghui, Gou Junli, Fukuda K. A theoretical model of annular upward flow in a vertical annulus gap. J Nucl Sci Technol, 2003, 40(1): 1–11

Su Guanghui, Gou Junli, Qiu Suizheng, et al. Theoretical calculation of annular upward flow in a narrow annuli with bilateral heating. Nuclear Engineering and Design, 2003, 225(2–3): 219–247

Wongwises S, Kongkiatwanitch W. Interfacial friction factor in vertical upward gas-liquid annular two-phase flow. Int Comm Heat Mass Transfer, 2001, 28(3): 323–336

Fu F, Klausner J F. A separated flow model for predicting two-phase pressure drop and evaporative heat transfer for vertical annular flow. Int J Heat and Fluid Flow, 1997, 18: 541–549

Okawa T, Kataoka I. Correlations for the mass transfer rate of droplets in vertical upward annular flow. Int J Heat Mass Transfer, 2005, 48: 4766–4778

Milashenko V I, Nigmatulin B I. Burnout and distribution of liquid in evaporative channels of various lengths. Int J Multiphase Flow, 1989, 15: 393–402

Xu Jijun, Jia Dounan. Boiling Heat Transfer and Vapor/Liquid Two Phase. Beijing: Atomic Energy Press, 2001