Numerical Simulation of Flow through a Laboratory Channel Gate using ANSYS Fluent

被引:0
|
作者
Mogollon-Mogollon, Fernando [1 ]
Hernandez-Aviles, Diana Margarita [1 ]
机构
[1] Univ Mil Nueva Granada, Bogota, Colombia
来源
UIS INGENIERIAS | 2024年 / 23卷 / 03期
关键词
ANSYS Fluent; Calibration; Channel gate; Experimental and numerical comparison; Flow analysis in gates; Numerical modeling; Turbulence model; Mesh resolution; Validation;
D O I
10.18273/revuin.v23n3-2024003
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Flow studies in control structures require the development of nonlinear differential equations that have no analytical solution but can be approximated by applying the finite volume method in mathematical models such as Fluent. This article presents a comparative analysis between a numerical model and a physical model of water flow in a laboratory channel using ANSYS Fluent. The scope of the study includes the development of a 2D model of the laboratory channel with a control section of a sliding flat rectangular gate and the mathematical development of the Navier-Stokes equations to model a biphasic flow of water and air throughout the computational domain, using appropriate boundary conditions. The methodology employed numerical simulation techniques using ANSYS Fluent, applying the finite volume method to solve the flow equations, and experimental techniques through direct measurements taken in the laboratory. The results demonstrate a 95.46% similarity between the mathematical modeling, direct measurements, and analytical calculations. Variables such as discharge coefficient, flow profiles, velocities at different points in the channel, and pressure distribution remained consistent throughout the computational domain. In conclusion, the advantages of the numerical model over the physical model are highlighted, emphasizing its efficiency and costeffectiveness by allowing easy and simultaneous modifications in problem configurations, turbulence models, and boundary conditions. Additionally, the importance of the numerical model is highlighted by providing more accurate results than direct measurements made on the physical model, especially in turbulent areas and in the interaction of biphasic flow in the channel and gate. Finally, it is important to include a sensitivity analysis and mesh refinement in the mathematical model in such studies to avoid fluctuations near the gate where the section contracts.
引用
收藏
页数:13
相关论文
共 50 条
  • [21] NUMERICAL MODELING PROCEDURE FOR MICROMACHINED CRYOGENIC COOLER ELEMENTS USING ANSYS FLUENT SOFTWARE AND VISCOUS FLOW IN A SMALL-DIAMETER CHANNEL WITH HEAT TRANSFER AS AN EXAMPLE
    Kulik, V. V.
    Parkin, A. N.
    Navasardyan, E. S.
    CHEMICAL AND PETROLEUM ENGINEERING, 2016, 52 (7-8) : 531 - 538
  • [22] NUMERICAL SIMULATION OF THE GAS FLOW THROUGH THE RECTANGULAR CHANNEL WITH PERFORATED PLATE
    Markovic, Zoran J.
    Eric, Milie D.
    Jovanovic, Rastko D.
    Lazovic, Ivan M.
    THERMAL SCIENCE, 2023, 27 (3B): : 2241 - 2253
  • [23] Numerical simulation of vortical ideal fluid flow through curved channel
    Moshkin, NP
    Mounnamprang, P
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2003, 41 (11) : 1173 - 1189
  • [24] Numerical Simulation of the Rarefied Gas Flow through a Short Channel into a Vacuum
    Sazhin, Oleg
    27TH INTERNATIONAL SYMPOSIUM ON RAREFIED GAS DYNAMICS, 2010, PTS ONE AND TWO, 2011, 1333 : 313 - 318
  • [25] Direct numerical simulation of physiological pulsatile flow through a stenotic channel
    Khair, Abul
    Hossain, Afzal
    Wang, Bing-Chen
    Kuhn, David
    Molla, Mamun
    THMT-12. PROCEEDINGS OF THE SEVENTH INTERNATIONAL SYMPOSIUM ON TURBULENCE, HEAT AND MASS TRANSFER, 2012, : 1226 - 1238
  • [26] Analysis of <sc>ansys</sc> <sc>fluent</sc> for Wall-Modeled Large-Eddy Simulation of Turbulent Channel Flow
    Li, Weiyi
    Giometto, Marco G.
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2025, 147 (01):
  • [27] Numerical simulation of flow in a ribbed channel
    Labbe, O
    Le, TH
    ADVANCED COMPUTATIONAL METHODS IN HEAT TRANSFER IV, 1996, : 23 - 32
  • [28] Numerical Simulation of Characteristics of Sudden Reduction Tube Flow Based on FLUENT
    Ai, Wan-zheng
    Huang, Bai-gang
    ADVANCES IN CIVIL ENGINEERING, PTS 1-6, 2011, 255-260 : 3461 - 3465
  • [29] Numerical Simulation on the Flow Field of External Gear Pump Based on FLUENT
    Guo An-fu
    Jiang Ting-ting
    Wang Tong
    Hu Yun-ping
    Zhang Da-jiang
    MECHATRONICS ENGINEERING, COMPUTING AND INFORMATION TECHNOLOGY, 2014, 556-562 : 1421 - 1425
  • [30] Numerical simulation of the vacuum spray jet flow based on fluent analysis
    Li, Jian-Chang
    Li, Hong-Yu
    Han, Yu
    Ba, De-Chun
    Dongbei Daxue Xuebao/Journal of Northeastern University, 2012, 33 (03): : 422 - 425