磁纳米流体在电子设备冷却的迷你通道散热器中的磁性-水力动力学行为
Suvanjan Bhattacharyya1, Nada Al Taisan2, Sumit Khatri1
1Department of Mechanical Engineering, Birla Institute of Technology and Science Pilani, Pilani Campus, Vidya Vihar, Pilani, Rajasthan, 333 031, India.
Scientific reports
|August 7, 2025
概括
这项研究增强了使用肋骨和磁场的迷你通道散热器冷却. 肋状配置显著提高了热传输,为电子产品的热管理提供了一个有前途的解决方案.
科学领域:
- 热管理 热管理
- 流体动力学 流体动力学
- 纳米流体 纳米流体
背景情况:
- 高密度电子产品需要先进的冷却解决方案.
- 传统的方法在紧的空间中难以应对高热量流.
- 纳米流体和被动结构可以改善传热.
研究的目的:
- 为了数值地研究微频道散热器中的传热增强.
- 为了评估被动旋发生器 (肋) 和磁场的联合效应.
- 为了优化高性能电子设备的冷却.
主要方法:
- 使用2%Fe3O4-水纳米流体对40毫米×4毫米迷你通道进行2D模拟.
- 使用战略位置的磁铁应用不均的磁场 (800-2000 G).
- 在各种雷诺兹数 (50-210) 中评估三种肋骨配置 (平行,分层,肋骨).
主要成果:
- 肋状配置实现了高达65%的热传递增加.
- 平行肋骨排列产生了最高的绝对努塞尔特数.
- 摩擦因子随着磁场强度的增加而增加,但随着雷诺兹数的增加而减少.
- 热增强因子超过了统一,在肋状布局中达到2.06的峰值.
结论:
- 结合肋带诱导的流与磁场的产生,有效地提高了迷你通道散热器的性能.
- 这种综合方法为下一代电子设备和数据中心的热量管理提供了可行的策略.
- 肋状配置显示出优异的热传递改进,而平行配置则最大限度地提高了努塞尔特数.
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