Numerical analysis of unsteady cavitating flow in an axial inducer

被引:20
|
作者
Campos-Amezcua, Rafael [1 ]
Bakir, Farid [2 ]
Campos-Amezcua, Alfonso [3 ]
Khelladi, Sofiane [2 ]
Palacios-Gallegos, Manuel [4 ]
Rey, Robert [2 ]
机构
[1] Univ Nacl Autonoma Mexico, Inst Energias Renovables, Temixco 62580, Mexico
[2] Arts & Met ParisTech, DynFluid Lab, F-75013 Paris, France
[3] Elect Res Inst, Dept Turbomachinery, Cuernavaca 62490, Morelos, Mexico
[4] Chiapas Polytech Univ, Res Grp Energy & Sustainabil, Tuxtla Gutierrez 29082, Mexico
关键词
Cavitation; Instabilities; CFD; Inducers; MODEL;
D O I
10.1016/j.applthermaleng.2014.07.063
中图分类号
O414.1 [热力学];
学科分类号
摘要
This work presents the results of numerical simulation of unsteady cavitating flow through a two -bladed axial inducer. First, the analysis was carried out in a blade cascade, this two dimensional simplified model, obtained from the studied axial inducer, was used as a test case. Later, the numerical simulations were extended to the original three-dimensional inducer. All numerical calculations were realized in cavitating flow regime. Initially, the results were obtained in steady state, and then in unsteady state. The main purpose of this study is to explore the local cavitation instabilities, such as alternate blade cavitation and rotating blade cavitation, which can appear in this type of devices when they work under certain operating conditions. The numerical results show that the fluid flow in the axial inducer is altered by the emergence of the cavitation. These vapor regions are formed, firstly near to the leading edge of each blade. The behavior of the cavitation depends on the operating conditions of the inducer, mainly by the flow rate and the suction pressure. The numerical simulation was performed using a commercial code based on a cell-centered finite volume method. The cavitation model used for calculations assumes a thermal equilibrium between phases. It is based on the classical conservation equations of the vapor phase and a mixture phase, with mass transfer due to the cavitation appearing as a source and a sink term in the vapor mass fraction equation. The mass transfer rate is derived from a simplified Rayleigh-Plesset model for bubble dynamics. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1302 / 1310
页数:9
相关论文
共 50 条
  • [31] Experiment of Cavitating Flow Characteristics of Inducer
    Xiang L.
    Chen H.
    Tan Y.
    Xu K.
    Liu J.
    Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery, 2019, 50 (12): : 125 - 132
  • [32] Computer-aided design and numerical flow analysis of axial-flow pump with inducer
    Li, Yaojun
    Wang, Fujun
    Proceedings of the 8th Biennial Conference on Engineering Systems Design and Analysis, Vol 2, 2006, : 717 - 722
  • [33] UNSTEADY FLOW IN CAVITATING TURBOPUMPS
    KIM, JH
    ACOSTA, AJ
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 1975, 97 (04): : 412 - 418
  • [34] Numerical analysis of unsteady tip leakage vortex cavitation cloud and unstable suction-side-perpendicular cavitating vortices in an axial flow pump
    Zhang, Desheng
    Shi, Lei
    Shi, Weidong
    Zhao, Ruijie
    Wang, Haiyu
    van Esch, B. P. M.
    INTERNATIONAL JOURNAL OF MULTIPHASE FLOW, 2015, 77 : 244 - 259
  • [35] Numerical Prediction of Erosive Potential of Unsteady Cavitating Flow around Hydrofoil
    Sedlar, Milan
    Zima, Patrik
    Komarek, Martin
    AEROSPACE AND MECHANICAL ENGINEERING, 2014, 565 : 156 - +
  • [36] Preparation of experimental and numerical research on unsteady cavitating flow around hydrofoil
    Komarek, Martin
    Sedlar, Milan
    Vyroubal, Michal
    Zima, Patrik
    Mueller, Milos
    Palka, Tomas
    EFM14 - EXPERIMENTAL FLUID MECHANICS 2014, 2015, 92
  • [37] Numerical study of unsteady cavitating turbulent flow in a tubular turbine runner
    Zhang, Hong-Ming
    Zhang, Li-Xiang
    PROCEEDINGS OF THE 2015 INTERNATIONAL CONFERENCE ON MECHANICS AND MECHATRONICS (ICMM 2015), 2016, : 211 - 218
  • [38] Numerical analysis of unsteady cavitating flow by using a modification based on an assumption of apparent phase equilibrium
    Iga, Y.
    27TH IAHR SYMPOSIUM ON HYDRAULIC MACHINERY AND SYSTEMS (IAHR 2014), PTS 1-7, 2014, 22
  • [39] Numerical Simulation of Turbopump Inducer Cavitating Behavior
    Coutier-Delgosha, O.
    Morel, P.
    Fortes-Patella, R.
    Reboud, J. L.
    INTERNATIONAL JOURNAL OF ROTATING MACHINERY, 2005, 2005 (02) : 135 - 142
  • [40] Numerical Simulation of Unsteady Flow in a Submersible Axial Flow Pump
    Zhang, Xiaoxu
    Zhang, Hongming
    Li, Xiaoping
    ADVANCES IN COMPUTATIONAL MODELING AND SIMULATION, PTS 1 AND 2, 2014, 444-445 : 486 - +