Aspects of Two-Phase Flow Boiling Heat Transfer inside Tube of Water Tube Boiler-A Numerical Study

被引:1
作者
Howlader, S. [1 ]
Moharana, S. [1 ]
Das, M. K. [1 ]
机构
[1] IIT Bhubaneswar, Sch Mech Sci, Jatni, Odisha, India
关键词
PRESSURE-DROP; SIMULATION; SMOOTH; MODEL; R134A; DYNAMICS; CO2; REFRIGERANTS; PATTERN; R-134A;
D O I
10.1134/S1810232823020108
中图分类号
O414.1 [热力学];
学科分类号
摘要
The study of flow boiling heat transfer inside larger diameter tubes, which are used in water tube boilers, is sparse in the literature. Accordingly, the present study explore numerically saturated flow boiling phenomenon of water in a horizontal plain stainless steel tube at atmospheric condition. The effect of mass flux (254.67 kg/m(2)s-600.00 kg/m(2)s), heat flux (16.97- 135.00 kW/m(2)), surface roughness (0.15 mm-0.5 mm), inclination angle (0 degrees -60 degrees) and the tube diameter (5 mm-50 mm) on the flow boiling heat transfer coefficient (HTC) and overall vapor volume fraction (VVF) is investigated. A 2D k-e turbulence model of ANSYS-FLUENT platform is used along with the Volume of Fluid (VOF) model to track the interface between the water and vapor. The numerical findings indicate that HTC rises with a rise in mass flux and declines with a rise in heat flux. Furthermore, it is revealed that when heat flux rises, the VVF in the domain increases, corroborating the observation of a drop in HTC. The observed phenomenon is quite true for conventional tubes used in industries. An improvement in flow boiling HTC is also observed for tubes with higher surface roughness. The influence of inclination angle has substantial effect on the HTC, and the HTC rises with rise in inclination angle except for larger mass flux. The HTC of smaller tube diameter is larger compared to larger tube diameter tube, and after certain range of tube diameter (20 mm) the change in HTC is insignificant.
引用
收藏
页码:340 / 359
页数:20
相关论文
共 51 条
  • [1] 3D Numerical Simulation of Hydrodynamics and Heat Transfer in the Taylor Flow
    Alekseev, M., V
    Vozhakov, I. S.
    [J]. JOURNAL OF ENGINEERING THERMOPHYSICS, 2022, 31 (02) : 299 - 308
  • [2] Flow Boiling of R134a in Circular Microtubes-Part I: Study of Heat Transfer Characteristics
    Basu, Saptarshi
    Ndao, Sidy
    Michna, Gregory J.
    Peles, Yoav
    Jensen, Michael K.
    [J]. JOURNAL OF HEAT TRANSFER-TRANSACTIONS OF THE ASME, 2011, 133 (05):
  • [3] Bikmukhametov T., 2016, THESIS NORWEGIAN U S
  • [4] A CONTINUUM METHOD FOR MODELING SURFACE-TENSION
    BRACKBILL, JU
    KOTHE, DB
    ZEMACH, C
    [J]. JOURNAL OF COMPUTATIONAL PHYSICS, 1992, 100 (02) : 335 - 354
  • [5] Numerical simulation of the modulated flow pattern for vertical upflows by the phase separation concept
    Chen, Qicheng
    Xu, Jinliang
    Sun, Dongliang
    Cao, Zhen
    Xie, Jian
    Xing, Feng
    [J]. INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2013, 56 : 105 - 118
  • [6] Experimental studies on the evaporative heat transfer and pressure drop of CO2 in smooth and micro-fin tubes of the diameters of 5 and 9.52 mm
    Cho, Jin Min
    Kim, Min Soo
    [J]. INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2007, 30 (06): : 986 - 994
  • [7] Boiling heat transfer of R-22, R-134a, and CO2 in horizontal smooth minichannels
    Choi, Kwang-Il
    Pamitran, A. S.
    Oh, Chun-Young
    Oh, Jong-Taek
    [J]. INTERNATIONAL JOURNAL OF REFRIGERATION-REVUE INTERNATIONALE DU FROID, 2007, 30 (08): : 1336 - 1346
  • [8] Analyze of laminar flow and boiling heat transfer characteristics of R134a in the horizontal micro-channel under low temperature condition
    Cuan, Zhangyu
    Chen, Youming
    [J]. 10TH INTERNATIONAL SYMPOSIUM ON HEATING, VENTILATION AND AIR CONDITIONING, ISHVAC2017, 2017, 205 : 2933 - 2939
  • [9] da Silva P.K., 2017, P C 4 JOURN MULT FLO, V27, P1