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Numerical Modeling for the Characterization of Flow Excitation for the HDD Disk Vibration Control

机译:HDD磁盘振动控制流动激励特征的数值模型

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This article presents a modeling method for air flow analysis of a hard disk drive. Air flow excitation causes disk vibration that aggravates TMR budget of the design of modern high performance hard drives. And it is the most expensive budget consumer so that controlling of the flutter becomes the primary design issue of the data storage industry. In the presented work, air flow excitation forces are characterized by LES modeling and the results are verified with experiments. A squeeze-film-type disk damper is employed in the experiments and it is applied for a hardware design improvement for disk flutter reduction. LES and RANS are compared and alternately used in a calculation in order to minimize computational efforts.
机译:本文介绍了硬盘驱动器的空气流量分析的建模方法。空气流动励磁导致磁盘振动加剧了现代高性能硬盘设计的TMR预算。它是最昂贵的预算消费者,以便控制颤动成为数据存储行业的主要设计问题。在所呈现的工作中,空气流动激发力的特征在于LES建模,并通过实验验证结果。实验中采用挤压膜型盘阻尼器,并且应用于磁盘颤动的硬件设计改进。比较LES和RAN,并在计算中交替使用,以便最大限度地减少计算工作。

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