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Flow Visualization of The Buoyancy-induced Convective Heat Transfer in Electronics Cooling

机译:电子冷却中浮力引起的对流换热的流动可视化

摘要

The aim of this work is to develop a simple optical method for the visualization of the natural convection flow generated in an electronic system during its normal operation. The presented experimental set-up allows to reveal local refractive index changes in a phase objects. A fringe pattern is acquired, through the cooling fluid under analysis, with a digital camera two times : the first one with the fluid at rest, the second one with the thermal load due to the electronic device normal operation. By the means of the MATLAB processing of the acquired images it's possible to reveal the shape and the directions of the thermal flow lines for the cooling fluid. In this way we can obtain a deeper understanding of the optimal convection working volume or information for the optimization of the relative spatial positioning of the several electronic components in a complex electronic system, like a printed circuit board (PCB). The proposed technique has been tested on two typical heat extraction situations recurrent in the electronic devices. In this paper are presented the experimental results of the visualization of the convective flow, in air, for an heat sink and a power resistor.
机译:这项工作的目的是开发一种简单的光学方法,以可视化电子系统正常运行期间所产生的自然对流。提出的实验设置可以揭示相位物体中的局部折射率变化。通过分析中的冷却液,用数码相机两次获得条纹图案:第一次是静止的流体,第二次是由于电子设备正常运行而产生的热负荷。通过对获取的图像进行MATLAB处理,可以揭示冷却流体的热流线的形状和方向。通过这种方式,我们可以更深入地了解最佳对流工作量或信息,以优化复杂电子系统(如印刷电路板(PCB))中多个电子组件的相对空间位置。所提出的技术已经在电子设备中经常发生的两种典型的散热情况下进行了测试。本文介绍了可视化的对流在空气中的热沉和功率电阻的实验结果。

著录项

  • 作者

    Sapia C.;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
  • 中图分类

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