Aerodynamic effects of disk size and enclosure gap on power consumption in HDD

Seung-Yop Lee, Sung-Oug Cho, Y. Rhim
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引用次数: 2

Abstract

In this paper, the aerodynamically dissipated power loss in hard disk drives is studied. The effects of rotational speed and form factor on the dissipation power loss are analyzed and compared to experimental results using 3.5", 2.5" and 1" disks. The torque coefficients for laminar and turbulent models are derived for various enclosure conditions. We implement experiments using a vacuum chamber and calculate frictional power loss by disk rotation. For a 1-inch disk, the power dissipation agrees well with the laminar model, which is inversely proportional to the half power of Reynolds number. The frictional power consumption by 3.5-inch disk is similar to the air turbulent model. Finally, we propose the drive enclosure geometry to minimize the aerodynamic power loss based on the experimental results.
磁盘尺寸和外壳间隙对HDD功耗的气动影响
本文对硬盘驱动器的气动耗散功率损耗进行了研究。分析了转速和形状因子对耗散功率损耗的影响,并与使用3.5"、2.5"和1"圆盘的实验结果进行了比较。推导了不同封闭条件下层流和湍流模型的转矩系数。我们利用真空室进行了实验,并计算了圆盘旋转时的摩擦功率损失。对于1英寸的圆盘,其功耗与层流模型吻合良好,且与雷诺数的半功率成反比。3.5英寸圆盘的摩擦功耗与空气湍流模型相似。最后,根据实验结果提出了使气动功率损失最小的驱动外壳几何形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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