首页> 外文会议>ASME international mechanical engineering congress and exposition >NOISE MEASUREMENTS AND REDUCTION FOR HIGH-FREQUENCY VIBRATING DEVICES IN THE APPLICATION OF COOLING ELECTRONICS
【24h】

NOISE MEASUREMENTS AND REDUCTION FOR HIGH-FREQUENCY VIBRATING DEVICES IN THE APPLICATION OF COOLING ELECTRONICS

机译:冷却电子设备中高频振动装置的噪声测量与降低

获取原文

摘要

Traditional heat sinks for electronics cooling have become ever more difficult to design to meet the high dissipation rate of modern high-heat-flux electronics. Active devices, especially devices operating at a high frequency, show promise toward enhancing heat transfer performance. However, active devices generate noise that may not be acceptable to personnel. The present work studies acoustic characteristics of piezoelectrically-driven synthetic jets and oscillating plate agitators operating at high frequency (around 1000 Hz) employed in an electronics cooling module for heat transfer enhancement purposes. The A-weighted noise level from such actuators is measured and found to increase with increases of driving voltage and operational frequency. The measured sound pressure level of the active devices used in our present enhanced heat transfer module can be as high as 100 dB. Through a power spectrum analysis, we find that most acoustic energy is in a narrow frequency band close to the operating frequency of the active device. To decrease the noise level, a muffler, which also allows cooling air to recirculate through the equipment cabinet, has been designed and tested. An analytical model is employed to select the geometry of the muffler for optimal performance based on acoustic characteristics of the active devices and the through-flow pressure drop. The muffler having this optimal design is fabricated and tested and found to be able to decrease the noise level generated by two actuators from 83 dB to 64 dB.
机译:为了满足现代高热通量电子产品的高耗散率,用于电子产品冷却的传统散热器变得越来越难以设计。有源器件,特别是高频工作的器件,显示出增强传热性能的希望。但是,有源设备会产生人员无法接受的噪声。本工作研究了压电驱动的合成射流和振荡板式搅拌器的声学特性,该电子搅拌器在电子冷却模块中以高频(约1000 Hz)工作,以增强传热效果。测量来自这种致动器的A加权噪声水平,并发现其随着驱动电压和工作频率的增加而增加。我们目前的增强型传热模块中使用的有源设备的测得声压级可以高达100 dB。通过功率谱分析,我们发现大多数声能都在接近有源器件工作频率的窄频带内。为了降低噪音水平,消声器也已设计和测试,该消声器还允许冷却空气再循环通过设备机柜。根据有源装置的声学特性和通流压降,采用分析模型来选择消音器的几何形状,以实现最佳性能。具有这种最佳设计的消声器经过制造和测试,发现能够将两个执行器产生的噪音水平从83 dB降低到64 dB。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号