2009
DOI: 10.4271/2009-01-0859
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Convective Heat Transfer Optimization of Automotive Brake Discs

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Cited by 19 publications
(17 citation statements)
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“…The heat dissipation and the performance of ventilated disc brakes depend largely on the air flow over the surface and through the ventilation channels of the discs, which can be studied using computational fluid dynamics (CFD). The design software SolidWorks offers modules for CFD analysis (Chi, He, & Naterer, 2009;Klimenda, Soukup, & Kampo, 2016;Rajagopal, Ramachandran, James, & Gatlewar, 2014;Wu, Xiong, Hu, & Yuan, 2015).…”
Section: García-león and Flórez-solanomentioning
confidence: 99%
“…The heat dissipation and the performance of ventilated disc brakes depend largely on the air flow over the surface and through the ventilation channels of the discs, which can be studied using computational fluid dynamics (CFD). The design software SolidWorks offers modules for CFD analysis (Chi, He, & Naterer, 2009;Klimenda, Soukup, & Kampo, 2016;Rajagopal, Ramachandran, James, & Gatlewar, 2014;Wu, Xiong, Hu, & Yuan, 2015).…”
Section: García-león and Flórez-solanomentioning
confidence: 99%
“…En la etapa del diseño mecánico en frenos de disco ventilados, es muy importante analizar el comportamiento de los termo-fluidos asociados (aire circundante), es decir, observar las características y operación de los fluidos sobre la superficie del disco, siempre garantizando la efectividad del proceso de frenado y de disipación de calor por la superficie y los canales de ventilación [5]. El calor de disipación térmica y el rendimiento de los discos de frenos ventilados depende en gran medida de las características del flujo de aire a través de los canales de ventilación y las configuraciones de geometría de los discos de freno, los cuales se comprueban mediante la implementación de programas de diseño que posean la biblioteca de la Dinámica de Fluidos Computacionales "CFD", como es el caso de SolidWorks Simulation [6][7] [8][9] [10].…”
Section: Introductionunclassified
“…At the starting mechanical stage on ventilated disc brakes, it is vital to analyze thermic flows performance where it is possible to observe flow features and operation upon discs' surface, by always guaranteeing braking process effectiveness and heat dissipation through the surface and ventilation ducts. Thermic heat dissipation and ventilated disc brakes performance mainly depend on aerodynamic features of air-flow, through ventilation ducts and disc brake geometrical configurations, which are proved via design software implementation provided by Computational fluid dynamics (CFD) library, such as: SolidWorks Simulation or ANSYS (Chi;He;Naterer, 2009;Klimenda;Soukup;Kampo, 2016).…”
Section: Simulationsmentioning
confidence: 99%