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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 41, 2002 - Issue 6-7
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Original Articles

AIR FLOW AND HEAT TRANSFER IN VENTILATED DISC BRAKE ROTORS WITH DIAMOND AND TEAR-DROP PILLARS

Pages 643-655 | Published online: 30 Nov 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Peng Ji, Fan Wu, Guoliang Zhang, Xiaofang Yin & Dmitri Vainchtein. (2019) A novel numerical approach for investigation of the heat transport in a full 3D brake system of high-speed trains. Numerical Heat Transfer, Part A: Applications 75:12, pages 824-840.
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Ali Belhocine & Wan Zaidi Wan Omar. (2018) Computational fluid dynamics (CFD) analysis and numerical aerodynamic investigations of automotive disc brake rotor. Australian Journal of Mechanical Engineering 16:3, pages 188-205.
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A. A. Yevtushenko & P. Grzes. (2010) The FEM-Modeling of the Frictional Heating Phenomenon in the Pad/Disc Tribosystem (A Review). Numerical Heat Transfer, Part A: Applications 58:3, pages 207-226.
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Tien-Mo Shih, Chandrasekhar Thamire, Chao-Ho Sung & An-Lu Ren. (2010) Literature Survey of Numerical Heat Transfer (2000–2009): Part I. Numerical Heat Transfer, Part A: Applications 57:3-4, pages 159-296.
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Articles from other publishers (51)

Gorazd Bombek & Aleš Hribernik. (2022) Flow behaviour in vented brake discs with straight and airfoil-shaped radial vanes. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 237:14, pages 3448-3464.
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Lu Wang, Xin Lu, Mei He, Chen Huang & Liang-Bi Wang. (2023) Experimental study of convective heat transfer characteristics of ventilated passages formed by uniform diameter circular pin fins of disc brake. Case Studies in Thermal Engineering 44, pages 102862.
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Jie Li, Long Tao, Ying Chen & Xiaoyan Wang. (2022) Heat dissipation optimization of ventilated brake disc recirculation zone based on NSGA-II algorithm. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering, pages 095440702211390.
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Lu Wang, Xin Lu, Haoseng Li, Wei Gong & Liangbi Wang. (2022) A new experimental method to study the convective heat transfer characteristics of the interior passages of ventilated disc brakes. International Journal of Thermal Sciences 179, pages 107675.
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Xiangling Wang & Xiaoling Shi. (2021) Mechanical Properties of SiC Whisker-Reinforced Aluminum Matrix Composite Wheel. Science of Advanced Materials 13:11, pages 2243-2249.
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Michael D. Atkins, Frank W. Kienhöfer, Kiju Kang, Tian Jian Lu & Tongbeum Kim. (2021) Cooling Mechanisms in a Rotating Brake Disc With a Wire-Woven-Bulk Diamond Cellular Core. Journal of Thermal Science and Engineering Applications 13:4.
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R. A. García-León, N. Afanador-García & J. A. Gómez-Camperos. (2021) Numerical Study of Heat Transfer and Speed Air Flow on Performance of an Auto-Ventilated Disc Brake. Fluids 6:4, pages 160.
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Jamshid Valiev Fayzullayevich, Gangfeng Tan, Fushou Lei, Philip Agyeman, Justice Frimpong, Yovkochov Sarvar & Chunyun Yang. Modeling Ventilation System for Minimizing Temperature Amount of the Heat on the Contact Surface of the Brake Disc. Modeling Ventilation System for Minimizing Temperature Amount of the Heat on the Contact Surface of the Brake Disc.
Athanasios Mamakos, Katharina Kolbeck, Michael Arndt, Thomas Schröder & Matthias Bernhard. (2021) Particle Emissions and Disc Temperature Profiles from a Commercial Brake System Tested on a Dynamometer under Real-World Cycles. Atmosphere 12:3, pages 377.
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Akshay Mhaske & Sampattakumar Gunadal. (2020) Aero-Thermal Analysis of Ventilated Passage in a Brake Disc. SAE International Journal of Advances and Current Practices in Mobility 3:1, pages 621-627.
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. (2021) TRANSIENT THERMAL ANALYSIS OF DOUBLE DISK BRAKE ROTOR OF DIFFERENT MATERIALS USING HYBRID MECHANISM. International Journal of Engineering Sciences & Research Technology 10:3, pages 22-27.
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Michael D. Atkins, Frank W. Kienhöfer & Tongbeum Kim. (2019) Flow Behavior in Radial Vane Disk Brake Rotors at Low Rotational Speeds. Journal of Fluids Engineering 141:8.
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Byung Ju Lee, Jin Taek Chung, Yunho Jung, Honglae Kim, Seungpyo Lee & Hee Yeol Kim. Numerical Study on Fluid Flow and Heat Transfer Characteristics of a Ventilated Brake Disc Connected to a Wheel. Numerical Study on Fluid Flow and Heat Transfer Characteristics of a Ventilated Brake Disc Connected to a Wheel.
Marko Tirovic & Kevin Stevens. (2017) Heat dissipation from a stationary brake disc, Part 2: CFD modelling and experimental validations. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 232:10, pages 1898-1924.
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Hongbin Yan, Wei-Tao Wu, Shangsheng Feng & Gongnan Xie. (2018) Role of vane configuration on the heat dissipation performance of ventilated brake discs. Applied Thermal Engineering 136, pages 118-130.
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Ali Belhocine & Wan Zaidi Wan Omar. (2017) Computational fluid dynamics (CFD) analysis and numerical aerodynamic investigations of automotive disc brake rotor. International Journal on Interactive Design and Manufacturing (IJIDeM) 12:2, pages 421-437.
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Ali Belhocien & Wan Zaidi Wan Omar. (2018) CFD Modeling and Simulation of Aeorodynamic Cooling of Automotive Brake Rotor. Journal of Multiscale Modelling 09:01, pages 1750008.
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Javid Karbalaei Mehdi, Amir Nejat & Masoud Shariat Panahi. (2018) Heat Transfer Improvement in Automotive Brake Disks Via Shape Optimization of Cooling Vanes Using Improved TPSO Algorithm Coupled With Artificial Neural Network. Journal of Thermal Science and Engineering Applications 10:1.
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Hongbin Yan, Shangsheng Feng, Tianjian Lu & Gongnan Xie. (2017) Experimental and numerical study of turbulent flow and enhanced heat transfer by cross-drilled holes in a pin-finned brake disc. International Journal of Thermal Sciences 118, pages 355-366.
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Ahmad Syahid Fawzal, Remus M. Cirstea, Konstantinos N. Gyftakis, Tim J. Woolmer, Mike Dickison & Mike Blundell. (2017) Fan Performance Analysis for Rotor Cooling of Axial Flux Permanent Magnet Machines. IEEE Transactions on Industry Applications 53:4, pages 3295-3304.
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T Raja, G Mathiselvan, M Sreenivasulureddy & X. Goldwin Xavier. (2017) Design and analysis of Air flow duct for improving the thermal performance of disc brake rotor. IOP Conference Series: Materials Science and Engineering 197, pages 012086.
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M. Chopade & A. Valavade. (2017) Experimental investigation using CFD for thermal performance of ventilated disc brake rotor. International Journal of Automotive Technology 18:2, pages 235-244.
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W. M. Zurin W. S.R. J. Talib & N. I. Ismail. Thermal analysis on motorcycle disc brake geometry. Thermal analysis on motorcycle disc brake geometry.
A. S. Fawzal, R. M. Cirstea, K. N. Gyftakis, T. J. Woolmer, M. Dickison & M. Blundell. (2016) The fan design impact on the rotor cooling of axial flux permanent magnet machines. The fan design impact on the rotor cooling of axial flux permanent magnet machines.
H.B. Yan, Q.C. Zhang & T.J. Lu. (2016) Heat transfer enhancement by X-type lattice in ventilated brake disc. International Journal of Thermal Sciences 107, pages 39-55.
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Chopade Mahesh & A. P. Valavade. (2016) Flow and heat transfer analysis of variable diameter circular pillar disc brake rotor using CFD. Flow and heat transfer analysis of variable diameter circular pillar disc brake rotor using CFD.
S.C. Wu, S.Q. Zhang & Z.W. Xu. (2016) Thermal crack growth-based fatigue life prediction due to braking for a high-speed railway brake disc. International Journal of Fatigue 87, pages 359-369.
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C. A. Jiménez García, G. J. Gutiérrez Paredes, J. E. Rivera López, A. López Villa & J. M. Casillas Navarrete. 2016. Recent Advances in Fluid Dynamics with Environmental Applications. Recent Advances in Fluid Dynamics with Environmental Applications 323 332 .
H.B. Yan, S.S. Feng, X.H. Yang & T.J. Lu. (2015) Role of cross-drilled holes in enhanced cooling of ventilated brake discs. Applied Thermal Engineering 91, pages 318-333.
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Zhiqiang Li, Jianmin Han, Zhiyong Yang & Weijing Li. (2015) Analyzing the mechanisms of thermal fatigue and phase change of steel used in brake discs. Engineering Failure Analysis 57, pages 202-218.
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B. Ghadimi, F. Kowsary & M. Khorami. (2015) Heat flux on-line estimation in a locomotive brake disc using artificial neural networks. International Journal of Thermal Sciences 90, pages 203-213.
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H.B. Yan, Q.C. Zhang & T.J. Lu. (2015) An X-type lattice cored ventilated brake disc with enhanced cooling performance. International Journal of Heat and Mass Transfer 80, pages 458-468.
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ByeongUk Jeong, Hoon Kim, Woochul Kim & Sang Do Kwak. Optimization of Cooling Air Duct and Dust Cover Shape for Brake Disc Best Cooling Performance. Optimization of Cooling Air Duct and Dust Cover Shape for Brake Disc Best Cooling Performance.
Ning Kang, Weiqi Zheng & Xiandong Liu. (2013) An investigation of the influence of the wheel spoke type on the convective cooling of the brake disc using the computational fluid dynamics method. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 227:11, pages 1578-1589.
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Ali-Belhocine & Mostefa-Bouchetara. (2013) Thermo-mechanical coupled analysis of automotive brake disc. International Journal of Precision Engineering and Manufacturing 14:9, pages 1591-1600.
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Ali Belhocine & Mostefa Bouchetara. (2013) Thermal–mechanical coupled analysis of a brake disk rotor. Heat and Mass Transfer 49:8, pages 1167-1179.
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B. Ghadimi, F. Kowsary & M. Khorami. (2013) Thermal analysis of locomotive wheel-mounted brake disc. Applied Thermal Engineering 51:1-2, pages 948-952.
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A. Nejat, M. Aslani, E. Mirzakhalili & R. Najian Asl. (2011) Heat Transfer Enhancement in Ventilated Brake Disk Using Double Airfoil Vanes. Journal of Thermal Science and Engineering Applications 3:4.
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Adam Adamowicz & Piotr Grzes. (2011) Influence of convective cooling on a disc brake temperature distribution during repetitive braking. Applied Thermal Engineering 31:14-15, pages 2177-2185.
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M. Kuciej. (2011) Accounting changes of pressure in time in one-dimensional modeling the process of friction heating of disc brake. International Journal of Heat and Mass Transfer 54:1-3, pages 468-474.
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A.A. Yevtushenko, M. Kuciej & O. Yevtushenko. (2010) The contact heat transfer during frictional heating in a three-element tribosystem. International Journal of Heat and Mass Transfer 53:13-14, pages 2740-2749.
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E Palmer, R Mishra & J Fieldhouse. (2009) An optimization study of a multiple-row pin-vented brake disc to promote brake cooling using computational fluid dynamics. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 223:7, pages 865-875.
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Marko Tirović. (2009) Energy thrift and improved performance achieved through novel railway brake discs. Applied Energy 86:3, pages 317-324.
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Pyung Hwang, Xuan Wu & YoungBae Jeon. Repeated Brake Temperature Analysis of Ventilated Brake Disc on the Downhill Road. Repeated Brake Temperature Analysis of Ventilated Brake Disc on the Downhill Road.
M Tirovic & C H Galindo-Lopez. (2008) Convective heat dissipation from a wheel-hub-mounted railway brake disc. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit 222:4, pages 355-365.
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E Palmer, R Mishra & J Fieldhouse. (2008) A computational fluid dynamic analysis on the effect of front row pin geometry on the aerothermodynamic properties of a pin-vented brake disc. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 222:7, pages 1231-1245.
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G P Ostermeyer & M Müller. (2008) New insights into the tribology of brake systems. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 222:7, pages 1167-1200.
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C H Galindo-Lopez & M Tirovic. (2008) Understanding and improving the convective cooling of brake discs with radial vanes. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering 222:7, pages 1211-1229.
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Pyung Hwang, Xuan Wu, Sang-Woon Cho & Young-Bae Jeon. Temperature and Coning Analysis of Ventilated Brake Disc Based on Finite Element Technique. Temperature and Coning Analysis of Ventilated Brake Disc Based on Finite Element Technique.
S. Manohar Reddy, J. M. Mallikarjuna & V. Ganesan. (2006) Flow and Heat Transfer Analysis Through a Brake Disc: A CFD Approach. Flow and Heat Transfer Analysis Through a Brake Disc: A CFD Approach.
L D MacLennan. (2016) Analysis of brake assembly with floating disc. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 218:9, pages 1021-1032.
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