首页> 外文会议>ASME Pacific Rim technical conference and exhibition on packaging and integration of electronic and photonic systems, MEMS and NEMS;IPACK2011 >DEPENDENCE OF FLOW BOILING HEAT TRANSFER COEFFICIENT ON LOCATION AND VAPOR QUALITY IN A MICROCHANNEL HEAT SINK
【24h】

DEPENDENCE OF FLOW BOILING HEAT TRANSFER COEFFICIENT ON LOCATION AND VAPOR QUALITY IN A MICROCHANNEL HEAT SINK

机译:微通道热沉中沸腾传热系数与位置和蒸气质量的相关性

获取原文

摘要

Experiments were conducted to determine the influence of local vapor quality on local heat transfer coefficient in flow boiling in an array of microchannels. Additionally, the variation of local heat transfer coefficient along the length and width of the microchannel heat sink for given operating conditions was investigated over a range of flow parameters. Each test piece includes a silicon parallel microchannel heat sink with 25 integrated heaters and 25 temperature sensors arranged in a 5×5 grid, allowing for uniform heat dissipation and local temperature measurements. Channel dimensions ranged from 100 μm to 400 μm in depth and 100 μm to 5850 μm in width; the working fluid for all cases was the perfluorinated dielectric liquid, FC-77. The heat transfer coefficient is found to increase with increasing vapor quality, reach a peak, and then decrease rapidly due to partial dryout on the channel walls. The vapor quality at which the peak is observed shows a strong dependence on mass flux, occurring at lower vapor qualities with increasing mass flux for fixed channel dimensions. Variations in local heat transfer coefficient across the test piece were examined both along the flow direction and in a direction transverse to it; observed trends included variations due to entrance region effects, two-phase transition, non-uniform flow distribution, and channel wall dryout.
机译:进行实验以确定在一系列微通道中流动沸腾中局部蒸气质量对局部传热系数的影响。另外,在给定的操作条件下,在一定的流量参数范围内研究了局部传热系数沿微通道散热器长度和宽度的变化。每个测试片均包括一个硅平行微通道散热器,该散热器具有以5×5网格排列的25个集成加热器和25个温度传感器,从而实现均匀的散热和局部温度测量。通道尺寸的深度范围为100μm至400μm,宽度范围为100μm至5850μm;所有情况下的工作流体都是全氟化介电液体FC-77。发现传热系数随着蒸气质量的增加而增加,达到峰值,然后由于通道壁上的部分变干而迅速降低。对于固定的通道尺寸,在观察到峰值时的蒸汽质量显示出对质量通量的强烈依赖性,在较低的蒸汽质量下随着质量通量的增加而发生。沿着流动方向和垂直于流动方向的方向检查了整个试样的局部传热系数的变化。观察到的趋势包括由于入口区域效应,两相过渡,流量分布不均匀以及通道壁变干引起的变化。

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