西安交通大学能源与动力工程学院,西安,710049
网络首发:2010-11-10,
纸质出版:2010
移动端阅览
杨震 1, 赵振兴 1, 郭琴琴 2, 等. 高压气体在膜式螺旋管环形通道中的对流换热特性[J]. 西安交通大学学报, 2010,44(11):17-22.
Convective Heat Transfer Characteristics of High-Pressure Gas in Annular Channel Heat Exchanger with Membrane Spiral Tubes[J]. 2010, 44(11): 17-22.
在加压的条件下试验研究了膜式螺旋管环形通道内的对流换热特性
试验气体有单质气体He和N
2
也有混合气体如He+N
2
试验压力为0.5~3.5 MPa
给出了不同螺旋管结构、不同气体和压力下的对流换热系数
以及典型冲刷形式的对流换热关联式及其适用条件.试验研究表明
气体压力、气体组分、冲刷形式对换热系数均有影响
特别是气体压力的影响最为突出.由数据分析得出了膜式螺旋管环形通道的对流换热关联式
该关联式可以适用于各种气体成分.
Heat transfer in coal pressurized gasifier convection cooling section with the membrane spiral tubes under high pressure is experimentally investigated. High pressure single gas(He or N
2
)and mixture gas(He+N
2
)serve as the test media
and the test pressure for each gas varies from 0.5 MPa to 3.5 MPa. The results show that the gas composition
flow forms
especially the working pressure affect the high pressure gas convective heat transfer coefficient. The average convective heat transfer coefficients for different kinds of high pressure gas in annular channel heat exchanger
and the correlations of the typical flow forms and its applicable condition are systematically obtained.
曾和义,秋穗正,贾斗南,等.双侧加热环形窄缝通道内单相水的流动传热特性研究 [J]. 核动力工程, 2006, 27(1):57-60.
ZENG Heyi, QIU Suizheng, JIA Dounan, et al. An investigation on heat transfer characteristics of fully developed flow in bilaterally heated narrow annuli [J]. Nuclear Power Engineering, 2006,27(1):57-60.
李斌,赵建福,周芳德,等.环形窄缝通道内流动沸腾换热及两相流研究 [J]. 应用基础与工程科学学报, 2003,11(1):6-7.
LI Bin, ZHAO Jianfu, ZHOU Fangde, et al. Study of flow boiling and two-phase flow patterns in narrow-gap annular tubes [J]. Journal of Basic Science and Engineering, 2003,11(1):6-7.
姚寿广,屠传经.环形通道内强化传热综合热力性能分析及评价 [J]. 动力工程, 2002,22(6):2111-2114.
YAO Shouguang, TU Chuanjing. Analysis and evaluation method for the comprehensive thermodynamic performance heat transfer enhancement in pin-fin casing tube [J]. Power Engineering, 2002,22(6):2111-2114.
任德鹏,夏新林,谈和平.环形通道内空气湍流正在发展流与壁面辐射的耦合换热研究 [J]. 太阳能学报, 2006,27(6):571-577.
REN Depeng, XIA Xinlin, TAN Heping. Coupled heat transfer of turbulent developing airflow with wall radiation in annular channels [J]. Acta Energiae Solaris Sinica, 2006,27(6):571-577.
顾维藻.带不同粗糙元的环形通道中的换热与阻力计算 [J]. 工程热物理学报, 1980,1(3):280-290.
GU Weizao. Calculation of heat transfer and friction in concentric annuli with various forms of roughness [J]. Journal of Engineering Thermophysics,1980,1(3):280-290.
ZARATE J A, ROY R P, LAPORTA A. Isothermal and heated turbulent upflow in a vertical channel-part numerical simulations [J]. Int J Heat Mass Transfer, 2001,44(6):1185-1199.
SADATOMI M, SATO Y. Two-phase flow in vertical noncircular channels [J]. International Journal of Multiphase Flow, 1982,8(6):641-655.
KAYS W M, LEUNG E Y. Heat transfer in passages hydrodynamically developed turbulent flow with arbitrarily prescribed heat flux [J]. Int J Heat Mass Transfer, 1963,6(7):537-557.
MOAWED M. Experimental investigation of natural convection from vertical and horizontal helicoidal pipes in HVAC applications [J]. Energy Conversion and Management, 2005,46(18/19):2996-3013.
CIONCOLINI A, SANTINI L. An experimental investigation regarding the laminar to turbulent flow transition in helically coiled pipes [J]. Experimental Thermal and Fluid Science, 2006,30(4):367-380.
CONTÉ I, PENG X F. Numerical and experimental investigations of heat transfer performance of rectangular coil heat exchangers [J]. Applied Thermal Engineering, 2009, 29(8/9)1799-1808.
WANG C C, LO J, LIN Y T, et al. Flow visualization of annular and delta winlet vortex generators in fin-and-tube heat exchanger application [J]. International Journal of Heat and Mass Transfer, 2002,45(18):3803-3815.
NUNTAPHAN A, KIATSIRIROAT T, WANG C C. Heat transfer and friction characteristics of crimped spiral finned heat exchangers with dehumidification [J]. Applied Thermal Engineering, 2005,25(2/3):327-340.
HÜTTL T J, FRIEDRICH R. Influence of curvature and torsion on turbulent flow in helically coiled pipes [J]. International Journal of Heat and Fluid Flow, 2000,21(3):345-353.
0
浏览量
4
下载量
2
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621