Asymptotic Computational Fluid Dynamic (ACFD) Study of Three-Dimensional Turning Diffuser Performance by Varying Angle of Turn

被引:0
|
作者
Xian, Tham Wei [1 ]
Nordin, Normayati [1 ]
Hariri, Azian [1 ]
Nasir, Nurul Fitriah [1 ]
Isa, Norasikin Mat [1 ]
Yahya, Musli Nizam [1 ]
Seri, Suzairin Md. [1 ]
机构
[1] Univ Tun Hussein Onn Malaysia, Fac Mech & Mfg Engn, Ctr Energy & Ind Environm Studies, Parit Raja 86400, Johor, Malaysia
来源
基金
奥地利科学基金会;
关键词
Turning diffuser; pressure recovery; flow uniformity; Asymptotic Computational Fluid Dynamics (ACFD);
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The main problem in achieving high recovery for a tuning diffuser is flow separation which results in non-uniform flow distribution and excessive losses. Angle of turn is found to affect notably the performance of turning diffuser which its relationship is still unclear particularly for a 3-D case. The present work aims to numerically investigate the effect of varying turning angle, empty set = 30 degrees - 180 degrees on the performance of 3-D turning diffuser and to develop the performance correlations via integrating the turning angle using Asymptotic Computational Fluid Dynamics (ACFD) technique. Among all the turbulence models examined, the best validated results were obtained with the Reynold Stress Model with enhanced wall treatment of y(+) = 1.0 was applied for the intensive simulation. As the turning angle increased from 30 degrees to 180 degrees, the pressure recovery was reduced by 89.3% and the flow uniformity index was raised by 27.7%. Minimal flow separation took place at 0.75L(in)/W-1 of 90 degrees turning diffuser whereas maximum flow separation happened at 0.44L(in)/W-1 of 180 degrees turning diffuser. The performance correlations of 3-D turning diffuser as a function of geometrical and operating parameters was successfully developed using ACFD method. The ACFD results were kept within +/- 11.4% of deviation when compared with both CFD and experimental results.
引用
收藏
页码:109 / 118
页数:10
相关论文
共 50 条
  • [31] Alveolar duct expansion greatly enhances aerosol deposition: a three-dimensional computational fluid dynamics study
    Darquenne, C.
    Harrington, L.
    Prisk, G. K.
    [J]. PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2009, 367 (1896): : 2333 - 2346
  • [32] A multi-region and open-source computational fluid dynamic tool for electrochemical systems with three-dimensional electrodes
    Colli, Alejandro N.
    Bisang, Jose M.
    [J]. AICHE JOURNAL, 2021, 67 (11)
  • [33] Three-dimensional computational fluid dynamic analysis of the conventional PEM fuel cell and investigation of prominent gas diffusion layers effect
    N. Ahmadi
    S. Rezazadeh
    I. Mirzaee
    N. Pourmahmoud
    [J]. Journal of Mechanical Science and Technology, 2012, 26 : 2247 - 2257
  • [34] Three-dimensional computational fluid dynamic analysis of the conventional PEM fuel cell and investigation of prominent gas diffusion layers effect
    Ahmadi, N.
    Rezazadeh, S.
    Mirzaee, I.
    Pourmahmoud, N.
    [J]. JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY, 2012, 26 (08) : 2247 - 2257
  • [35] Using a three-dimensional computational fluid dynamics model and an agglomerate model to investigate the effect of varying agglomerate parameters and output voltages on proton exchange membrane fuel cell performance
    Samris, Abdelaziz
    Mounir, Hamid
    [J]. HELIYON, 2024, 10 (11)
  • [36] Study on dynamic performance of a three-dimensional high frame supported U-shaped aqueduct
    Wu, Y
    Mo, HH
    Yang, C
    [J]. ENGINEERING STRUCTURES, 2006, 28 (03) : 372 - 380
  • [37] Study on the effect of current collector structures on the performance of MCFCs using three-dimensional fluid dynamics analysis
    Lee, Chang-Whan
    Lee, Mihui
    Yoon, Sung-Pil
    Ham, Hyung-Chul
    Choi, Sun Hee
    Han, Jonghee
    Nam, Suk Woo
    Yang, Dong-Yol
    [J]. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2017, 51 : 153 - 161
  • [38] Modeling optimizes PEM fuel cell performance using three-dimensional multi-phase computational fluid dynamics model
    Al-Baghdadi, Maher A. R. Sadiq
    Al-Janabi, Haroun A. K. Shahad
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2007, 48 (12) : 3102 - 3119
  • [39] One- and Three-Dimensional Computational Fluid Dynamics Model Comparison of the Treatment Performance of a Full-Scale Oxidation Ditch
    Pierre, Kiesha C.
    Tejada-Martinez, Andres E.
    Pirasaci, Tolga
    Perez, Anthony
    Sunol, Aydin
    [J]. JOURNAL OF ENVIRONMENTAL ENGINEERING, 2022, 148 (09)
  • [40] Three-Dimensional Morphological Study of MnTe-like Structures by Assessment of Tortuosity Tensor Using Computational Fluid Dynamics
    Prenesti, Giuseppe
    Petrassi, Edoardo Walter
    Guzzo, Caterina
    Mannella, Silvia
    Stellato, Francesco
    Crisafulli, Laura
    Azzato, Giulia
    Katovic, Andrea
    Lauria, Agostino
    Caravella, Alessio
    [J]. Processes, 2024, 12 (10)