Aerodynamic investigations of ventilated brake discs

被引:13
|
作者
Parish, D [1 ]
MacManus, DG [1 ]
机构
[1] Cranfield Univ, Dept Aerosp Sci, Sch Engn, Cranfield MK43 0AL, Beds, England
关键词
brake disc; ventilated; aerodynamics; heat transfer; unsteady flow; turbulence;
D O I
10.1243/095440705X11121
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The heat dissipation and performance of a ventilated brake disc strongly depends on the aerodynamic characteristics of the flow through the rotor passages. The aim of this investigation was to provide an improved understanding of ventilated brake rotor flow phenomena, with a view to improving heat dissipation, as well as providing a measurement data set for validation of computational fluid dynamics methods. The flow fields at the exit of four different brake rotor geometries, rotated in free air, we. e measured using a five-hole pressure probe and a hot-wire anemometry system. The principal measurements were taken using two-component hot-wire techniques and were used to determine mean and unsteady flow characteristics at the exit of the brake rotors. Using phase-locked data processing, it was possible to reveal the spatial and temporal flow variation within individual rotor passages. The effects of disc geometry and rotational speed on the mean flow, passage turbulence intensity, and mass flow were determined. The rotor exit jet and wake flow were clearly observed as characterized by the passage geometry as well as definite regions of high and low turbulence. The aerodynamic flow characteristics were found to be reasonably independent of rotational speed but highly dependent upon rotor geometry.
引用
收藏
页码:471 / 486
页数:16
相关论文
共 50 条
  • [21] Anisothermal modelling applied to brake discs
    El Abdi, R
    Samrout, H
    [J]. INTERNATIONAL JOURNAL OF NON-LINEAR MECHANICS, 1999, 34 (05) : 795 - 805
  • [22] Ceramic Brake Discs in Ferrari Cars
    不详
    [J]. TRANSACTIONS OF THE INDIAN CERAMIC SOCIETY, 2008, 67 (03) : 159 - 159
  • [23] Heat convection and design of brake discs
    Sakamoto, H
    [J]. PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART F-JOURNAL OF RAIL AND RAPID TRANSIT, 2004, 218 (03) : 203 - 212
  • [24] Performance analysis of brake discs in trains
    Habeeb, Hiyam Adil
    Mohan, Ahmed Esmael
    Abdullah, Mohd Azman
    Aziz, Mohamad Hanif Abdul
    Dan, Reduan Mat
    Harun, Mohd Hanif
    [J]. JURNAL TRIBOLOGI, 2020, 25 : 1 - 15
  • [25] Aerodynamic performance of flying discs
    Kamaruddin, Noorfazreena
    Potts, Jonathan
    Crowther, William
    [J]. AIRCRAFT ENGINEERING AND AEROSPACE TECHNOLOGY, 2018, 90 (02): : 390 - 397
  • [26] Computational fluid dynamics (CFD) analysis and numerical aerodynamic investigations of automotive disc brake rotor
    Belhocine A.
    Wan Omar W.Z.
    [J]. International Journal on Interactive Design and Manufacturing (IJIDeM), 2018, 12 (2): : 421 - 437
  • [27] Computational fluid dynamics (CFD) analysis and numerical aerodynamic investigations of automotive disc brake rotor
    Belhocine, Ali
    Omar, Wan Zaidi Wan
    [J]. AUSTRALIAN JOURNAL OF MECHANICAL ENGINEERING, 2018, 16 (03) : 188 - 205
  • [28] Commercial vehicle brake cooling - ventilated disc or ventilated wheel carrier?
    Tirovic, M
    Voller, GP
    [J]. BRAKING 2004: VEHICLE BRAKING AND CHASSIS CONTROL, 2004, : 241 - 250
  • [29] Elimination of surface spiral pattern on brake discs
    Adrián Rodríguez
    L. Norberto López de Lacalle
    Asier Fernández
    Stephan Braun
    [J]. Journal of Zhejiang University SCIENCE A, 2014, 15 : 53 - 60
  • [30] MMC - ceramic brake discs raise performance
    Hull, M
    [J]. POWDER METALLURGY, 1997, 40 (02) : 101 - 101