西安交通大学动力工程多相流国家重点实验室,西安,710049
网络首发:2011-05-10,
纸质出版:2011
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吴刚, 毕勤成, 王汉, 等. 超临界压力水在倾斜上升管内传热的试验研究[J]. 西安交通大学学报, 2011,45(5):6-11.
Heat Transfer Characteristics of Supercritical Water in Inclined Upward Tube[J]. 2011, 45(5): 6-11.
在压力为23~28 MPa、质量流速为600~1 200 kg/(m
2
·s)、热流密度为200~400 kW/m
2
的试验条件下
对内径为26 mm、倾角为22°的倾斜上升管内高温高压水的传热特性进行了试验研究.倾斜管壁温沿管壁周向非均匀分布
顶部壁温最高
底部壁温最低
两者温差随压力和质量流速的升高而减小
随热流密度升高而增大.浮升力引起的自然对流使低密度的热流体聚集在倾斜管顶部
导致顶部传热条件恶化
壁温高于底部.Petukhov准则给出了浮升力与顶部和底部温差的关系
Jackson准则计算值与试验值符合较好
二者均可判定倾斜管内浮升力效应.根据试验结果拟合得出了超临界水强制对流传热的关联式
由此可预测倾斜上升管的对流换热系数.
Experiments were conducted to investigate the forced convection heat transfer of water with high temperature and pressure in an inclined upward tube with an inclination angle of 22° and an inner diameter of 26 mm at pressure of 23-28 MPa
mass velocity of 600-1 500 kg/(m
2
·s)
and heat flux at inside wall of 200-600 kW/m
2
. The results show that the circumferential wall temperatures of the inclined tube were not uniform
and the wall temperature at the top was the highest while the lowest temperature occurred at the bottom. The top-bottom temperature difference decreased with an increase in pressure and mass velocity but increased with the heat flux. Moreover
the low-density hot water gathered at the top of the inclined tube because of natural convection caused by buoyancy effect
leading to the deterioration of the heat transf
er condition
and thus the temperature at the top was higher than that at the bottom. The relationship between buoyancy and top-bottom wall temperature difference was obtained by Petukhov's criterion
and the predictions with Jackson's criterion agree well with the experimental data
indicating that both of the two criteria can be used to judge the buoyancy effect in an incline tube. The heat transfer correlations of the forced convection heat transfer of supercritical water were achieved from the experimental data
which can be used to predict heat transfer coefficients of inclined upward flow in tubes.
ACKERMAN J W. Pseudo-boiling heat transfer to supercritical pressure water in smooth and ribbed tubes[J]. Journal of Heat Transfer,1970,92(3): 490-498.
胡志宏.超临界和近临界压力区垂直上升及倾斜管传热特性研究[D].西安:西安交通大学,2001.
YAMAGATA K, NISHIKAWA K, HASEGAWA S, et al. Forced convective heat transfer to supercritical water flowing in tubes[J]. International Journal of Heat Mass Transfer, 1972,15(12): 2575-2593.
JACKSON J D, HALL W B. Forced convection heat transfer to fluids at supercritical pressure[C]∥Turbulent Forced Convection in Channels and Bundles. New York, USA: Hemisphere Publishing Corporation, 1979: 563-611.
郑建学,陈听宽,罗毓珊, 等.高压汽水两相流内螺纹管壁温与临界热负荷特性的研究[J].西安交通大学学报,1995,29(5): 63-68.
ZHENG Jianxue, CHEN Tingkuan, LUO Yushan, et al. Investigation on the characteristics of wall temperature and critical heat flux of internally ribbed tube with high pressure steam-water two phase flow[J]. Journal of Xi'an Jiaotong University,1995,29(5): 63-68.
TALER J, ZIMA W. Solution of inverse heat conduction problems using control volume approach[J]. International Journal of Heat Mass Transfer,1999,42(6):1123-1140.
YIN F, CHEN T K, LI H X. An investigation on heat transfer to supercritical water in inclined upward smooth tubes[J]. Heat Transfer Engineering,2006,27(9): 44-53.
PETUKHOV B S, POPOV V N. Theoretical calculation of heat exchange and frictional resistance in turbulent flow in tubes of an incompressible fluid with variable physical properties[J]. High Temperature,1963,1(4): 69-83.
PIORO I L, KHRTABIL H F, DUFFEY R B. Heat transfer to supercritical fluids flowing in channels empirical correlations(survey)[J]. Nuclear Engineering and Design,2004,230(1/3):69-91.
蛇形管平行通道中高压气体的对流换热特性研究. 西安交通大学学报, 2011,45(3):53-57.
煤粉加压气化炉膜式螺旋管和蛇形管对流传热特性研究. 西安交通大学学报, 2011,45(1):10-14.
竖直狭缝通道内水沸腾换热的气泡动力学研究. 西安交通大学学报,2010,44(11):12-16.
高压气体在膜式螺旋管环形通道中的对流换热特性. 西安交通大学学报, 2010,44(11):17-21.
带60°肋和出流孔的矩形通道端壁换热特性研究. 西安交通大学学报, 2010,44(5):116-119.
低质量流速垂直和倾斜并联内螺纹管两相流不稳定性研究. 西安交通大学学报, 2010,44(1):17-21.
低质量流速垂直并联内螺纹管中两相流不稳定性试验研究. 西安交通大学学报, 2009,43(7):36-39.
正方形截面直通道内二次流现象的实验研究. 西安交通大学学报, 2009,43(7):83-87.
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