A TRANSIENT CFD SIMULATION OF THE FLOW IN A TEST RIG OF AN AEROENGINE BEARING CHAMBER

被引:0
|
作者
Adeniyi, Akinola A. [1 ]
Morvan, Herve P. [1 ]
Simmons, Kathy A. [1 ]
机构
[1] Univ Nottingham, Technol Ctr Gas Turbine Transmiss Syst, Nottingham NG7 2RD, England
关键词
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
In this paper, we present results for the application of an Eulerian-Lagrangian technique to the transient simulation of an oil film formation on the walls of an aeroengine bearing chamber. The flow of oil in an aeroengine bearing chamber consists of high speed oil droplets interacting with the bearing structures and flowing oil film. The situation in the chamber is highly rotational and consisting of sheared flow of air over oil. The bearing chamber may also be located in the vicinity of the combustion chamber. The oil provides lubrication and cooling of the hot structures. Modelling the flow in the bearing chamber is therefore complex. The Volume of Fluid (VoF) technique offers a potential platform to model droplet-film interaction; however, it requires fine mesh details to capture the flow to the droplet level. Such detailed resolution would not be practical for the complete chamber geometry because of the prohibitively expensive computational overhead requirements. A Lagrangian formulation is therefore proposed to represent the droplets as source terms in the Navier-Stokes equation while the film is represented using VoF. This effectively reduces the need to resolve the droplets explicitly. The predicted film formation pattern compares with experimental results.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Transient Simulation on Flow and Heat Transfer Characteristics of Aeroengine Fuel-Oil Thermal Management System
    Yang, Shiyu
    Lin, Yuanfang
    Xu, Xianghua
    Liang, Xingang
    2023 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON AEROSPACE TECHNOLOGY, VOL II, APISAT 2023, 2024, 1051 : 274 - 292
  • [42] CFD simulation of transient velocity filed for wavy vortex flow in a Taylor reactor
    Yang H.
    Yang X.
    Bai Z.
    Wang Y.
    Gao F.
    Huagong Jinzhan/Chemical Industry and Engineering Progress, 2021, 40 (11): : 6009 - 6018
  • [43] 3D CFD simulation and analysis of transient flow in a water pipeline
    Cao, Yun
    Zhou, Ling
    Ou, Chuanqi
    Fang, Haoyu
    Liu, Deyou
    AQUA-WATER INFRASTRUCTURE ECOSYSTEMS AND SOCIETY, 2022, 71 (06) : 751 - 767
  • [44] ON THE UNSTEADY INTERACTION BETWEEN THE LEAKAGE AND THE MAIN PASSAGE FLOW IN A HIGH PRESSURE TURBINE RIG: CFD URANS INVESTIGATIONS AND COMPARISON WITH THE RIG TEST DATA
    Zamboni, Giulio
    Adami, Paolo
    PROCEEDINGS OF THE ASME TURBO EXPO: TURBINE TECHNICAL CONFERENCE AND EXPOSITION, 2016, VOL 2B, 2016,
  • [45] Bearing Test Rig: Setting up and Lesson Learned
    Chmelar, Jakub
    Mossoczy, Pavel
    Dynybyl, Vojtech
    CURRENT METHODS OF CONSTRUCTION DESIGN, 2020, : 67 - 77
  • [46] CFD Simulation and Test of a High Pressure Piston Pump with Pre-Compression Chamber Structure
    Wu, Xiao-Feng
    Chen, Chih-Keng
    Hong, Chih-Wei
    Jiang, Wei
    Journal of the Chinese Society of Mechanical Engineers, Transactions of the Chinese Institute of Engineers, Series C/Chung-Kuo Chi Hsueh Kung Ch'eng Hsuebo Pao, 2019, 40 (01): : 1 - 10
  • [47] CFD Simulation and Test of a High Pressure Piston Pump with Pre-Compression Chamber Structure
    Wu, Xiao-Feng
    Chen, Chih-Keng
    Hong, Chih-Wei
    Jiang, Wei
    JOURNAL OF THE CHINESE SOCIETY OF MECHANICAL ENGINEERS, 2019, 40 (01): : 1 - 10
  • [48] Numerical simulation of a systemic flow test rig (vol 50, pg 54, 2004)
    Shi, Y
    Yeo, TJH
    Zhao, Y
    ASAIO JOURNAL, 2004, 50 (03) : 290 - 290
  • [49] CFD ANALYSIS OF FLOW STRUCTURES IN A MIXING CHAMBER
    Candido, Silvio
    Marques, Jose Pascoa
    Tome, Antonio
    Amorim, Antonio
    Weber, Stefan Karl
    PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2019, VOL 7, 2020,
  • [50] A high-speed rolling bearing test rig supported by sliding bearing
    Li, Hui
    Liu, Heng
    Qi, Shemiao
    Liu, Yi
    INDUSTRIAL LUBRICATION AND TRIBOLOGY, 2020, 72 (07) : 955 - 959