首页> 外文期刊>Thermal science >NUMERICAL INVESTIGATION OF FLUID FLOW AND HEAT TRANSFER CHARACTERISTICS ON THE AERODYNAMICS OF VENTILATED DISC BRAKE ROTOR USING CFD
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NUMERICAL INVESTIGATION OF FLUID FLOW AND HEAT TRANSFER CHARACTERISTICS ON THE AERODYNAMICS OF VENTILATED DISC BRAKE ROTOR USING CFD

机译:基于CFD的通风盘式制动器转子气动的流体流动和传热特性的数值研究。

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摘要

Ventilated brake discs are used in high speed vehicles. The brake disc is an important component in the braking system which is expected to withstand and dissipate the heat generated during the braking event. In the present work, an attempt is made to study the effect of vane-shape on the flow-field and heat transfer characteristics for different configurations of vanes and at different speeds numerically. Three types of rotor configurations circular pillared, modified taper radial and diamond pillar vanes were considered for the numerical analysis. A rotor segment of 20° was considered for the numerical analysis due to its rotational symmetry. The pre processing is carried out with the help of ICEM-CFD and analysis is carried out using ANSYS CFX 12.1. The three dimensional flow through the brake rotor vanes has been simulated by solving the appropriate governing equations viz. conservation of mass, momentum and energy using the commercial CFD tool, ANSYS CFX 12. The predicted results have been validated with the results available in the literature. Circular pillar rotor vanes are found to have more uniform pressure and velocity distribution which results in more uniform temperature drop around the vanes. The effect of number and diameter of vanes in the circular pillared rotor is studied and the geometry is optimized for better mass flow and heat dissipation characteristics.
机译:通风的制动盘用于高速车辆。制动盘是制动系统中的重要组成部分,可以承受和消散制动过程中产生的热量。在当前的工作中,试图研究叶片形状对不同形状和不同速度的叶片对流场和传热特性的影响。数值分析考虑了三种类型的转子配置:圆形圆柱,改进的锥形径向和菱形圆柱叶片。由于其旋转对称性,考虑将20°的转子段用于数值分析。借助ICEM-CFD进行预处理,并使用ANSYS CFX 12.1进行分析。通过求解适当的控制方程viz,模拟了通过制动转子叶片的三维流动。使用商用CFD工具ANSYS CFX 12守恒质量,动量和能量。预测结果已经用文献中的结果验证。发现圆形支柱转子叶片具有更均匀的压力和速度分布,这导致叶片周围的温度降更均匀。研究了圆柱柱状转子中叶片数量和直径的影响,并对几何形状进行了优化,以实现更好的质量流量和散热特性。

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